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Appropriate precautions in the case of flood occurrence often require long lead times (several days) in hydrological forecasting. This in turn implies large uncertainties that are mainly inherited from the meteorological precipitation forecast. Here we present a case study of the extreme flood event of August 2005 in the Swiss part of the Rhine catchment (total area 34 550 km2). This event caused tremendous damage and was associated with precipitation amounts and flood peaks with return periods beyond 10 to 100 years. To deal with the underlying intrinsic predictability limitations, a probabilistic forecasting system is tested, which is based on a hydrological-meteorological ensemble prediction system. The meteorological component of the system is the operational limited-area COSMO-LEPS that downscales the ECMWF ensemble prediction system to a horizontal resolution of 10 km, while the hydrological component is based on the semi-distributed hydrological model PREVAH with a spatial resolution of 500 m. We document the setup of the coupled system and assess its performance for the flood event under consideration. We show that the probabilistic meteorological-hydrological ensemble prediction chain is quite effective and provides additional guidance for extreme event forecasting, in comparison to a purely deterministic forecasting system. For the case studied, it is also shown that most of the benefits of the probabilistic approach may be realized with a comparatively small ensemble size of 10 members.
The main objective of the study presented in this paper was to develop an evaluation scheme which is suitable for spatially explicit groundwater vulnerability assessment according to the Water Framework Directive (WFD). Study area was the Hase river catchment, an area of about 3 000 km2 in north-west Germany which is dominated by livestock farming, in particular pig and poultry production. For the Hase river catchment, the first inventory of the WFD led to the conclusion that 98% of the catchment area is "unclear/unlikely" to reach a good groundwater status due to diffuse nitrogen emissions from agriculture. The groundwater vulnerability assessment was embedded in the PartizipA project ("Participative modelling, Actor and Ecosystem Analysis in Regions with Intensive Agriculture", www.partizipa.net), within which a so-called actors´ platform was established in the study area. The objective of the participatory process was to investigate the effects of the WFD on agriculture as well as to discuss groundwater protection measures which are suitable for an integration in the programme of measures. The study was conducted according to the vulnerability assessment concept of the Intergovernmental Panel on Climate Change, considering sensitivity, exposure and adaptive capacity. Sensitivity was computed using the DRASTIC index of natural groundwater pollution potential. Exposure (for a reference scenario) was computed using the STOFFBILANZ nutrient model. Several regional studies were analysed to evaluate the adaptive capacity. From these studies it was concluded that the adaptive capacity in the Hase river catchment is very low due to the economic importance of the agricultural sector which will be significantly affected by groundwater protection measures. As a consequence, the adaptive capacity was not considered any more in the vulnerability assessment. A groundwater vulnerability evaluation scheme is presented which enjoys the advantage that both exposure and sensitivity can be operationalized in a spatially resolved manner (500×500 m grid) by the two models mentioned above. The evaluation scheme was applied in the Hase river catchment. 21% of the catchment was classified as highly vulnerable, another 73% as medium vulnerable. Only 6% of the Hase river catchment has low vulnerability. Grid cells of the high vulnerability class are considered as priority areas for groundwater protection measures in the programme of measures of the WFD. Measures will be particularly effective in the north-eastern part of the catchment where groundwater vulnerability is mainly due to high nitrogen emissions.
Strong perturbations of the Arctic stratosphere during the winter 2002/2003 by planetary waves led to enhanced stretching and folding of the vortex. On two occasions the vortex in the lower stratosphere split into two secondary vortices that re-merged after some days. As a result of these strong disturbances the role of transport in and out of the vortex was stronger than usual. An advection and mixing simulation with the Chemical Lagrangian Model of the Stratosphere (CLaMS) utilising a suite of inert tracers tagging the original position of the air masses has been carried out. The results show a variety of synoptic and small scale features in the vicinity of the vortex boundary, especially long filaments peeling off the vortex edge and being slowly mixed into the mid latitude environment. The vortex folding events, followed by re-merging of different parts of the vortex led to strong filamentation of the vortex interior. During January, February, and March 2003 flights of the Russian high-altitude aircraft Geophysica were performed in order to probe the vortex, filaments and in one case the merging zone between the secondary vortices. Comparisons between CLaMS results and observations obtained from the Geophysica flights show in general good agreement. Several areas affected by both transport and strong mixing could be identified, allowing explanation of many of the structures observed during the flights. Furthermore, the CLaMS simulations allow for a quantification of the air mass exchange between mid latitudes and the vortex interior. The simulation suggests that after the formation of the vortex was completed, its interior remaind relatively undisturbed. Only during the two re-merging events were substantial amounts of extra-vortex air transported into the polar vortex. When in March the vortex starts weakening additional influence from lower latitudes becomes apparent in the model results. In the lower stratosphere export of vortex air leads only to a fraction of about 5% polar air in mid latitudes by the end of March. An upper limit for the contribution of ozone depleted vortex air on mid-latitude ozone loss is derived, indicating that the maximum final impact of dilution is on the order of 50%.
From July 2002 to March 2004 the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) aboard the European Space Agency´s Environmental Satellite (Envisat) measured nearly continuously mid infrared limb radiance spectra. These measurements are utilised to retrieve the global distribution of the chlorofluorocarbon CFC-11 by applying a new fast forward model for Envisat MIPAS and an accompanying optimal estimation retrieval processor. A detailed analysis shows that the total retrieval errors of the individual CFC-11 volume mixing ratios are typically below 10% in the altitude range 10 to 25 km and that the systematic components dominate. Contribution of a priori information to the retrieval results are less than 5 to 10% and the vertical resolution of the observations is about 3 to 4 km in the same vertical range. The data are successfully validated by comparison with several other space experiments, an air-borne in-situ instrument, measurements from ground-based networks, and independent Envisat MIPAS analyses. The retrieval results from 425 000 Envisat MIPAS limb scans are compiled to provide a new climatological data set of CFC-11. The climatology shows significantly lower CFC-11 abundances in the lower stratosphere compared with the Reference Atmospheres for MIPAS (RAMstan V3.1) climatology. Depending on the atmospheric conditions the differences between the climatologies are up to 30 to 110 ppt (45 to 150%) at 19 to 27 km altitude. Additionally, time series of CFC-11 mean abundance and variability for five latitudinal bands are presented. The observed CFC-11 distributions can be explained by the residual mean circulation and large-scale eddy-transports in the upper troposphere and lower stratosphere. The new CFC-11 data set is well suited for further scientific studies.
Global distributions of profiles of sulphur hexafluoride (SF6) have been retrieved from limb emission spectra recorded by the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) on Envisat covering the period September 2002 to March 2004. Individual SF6 profiles have a precision of 0.5 pptv below 25 km altitude and a vertical resolution of 4–6 km up to 35 km altitude. These data have been validated versus in situ observations obtained during balloon flights of a cryogenic whole-air sampler. For the tropical troposphere a trend of 0.230±0.008 pptv/yr has been derived from the MIPAS data, which is in excellent agreement with the trend from ground-based flask and in situ measurements from the National Oceanic and Atmospheric Administration Earth System Research Laboratory, Global Monitoring Division. For the data set currently available, based on at least three days of data per month, monthly 5° latitude mean values have a 1 o standard error of 1%. From the global SF6 distributions, global daily and monthly distributions of the apparent mean age of air are inferred by application of the tropical tropospheric trend derived from MIPAS data. The inferred mean ages are provided for the full globe up to 90° N/S, and have a 1 o standard error of 0.25 yr. They range between 0 (near the tropical tropopause) and 7 years (except for situations of mesospheric intrusions) and agree well with earlier observations. The seasonal variation of the mean age of stratospheric air indicates episodes of severe intrusion of mesospheric air during each Northern and Southern polar winter observed, long-lasting remnants of old, subsided polar winter air over the spring and summer poles, and a rather short period of mixing with midlatitude air and/or upward transport during fall in October/November (NH) and April/May (SH), respectively, with small latitudinal gradients, immediately before the new polar vortex starts to form. The mean age distributions further confirm that SF6 is destroyed in the mesosphere to a considerable degree. Model calculations with the Karlsruhe simulation model of the middle atmosphere (KASIMA) chemical transport model agree well with observed global distributions of the mean age only if the SF6 sink reactions in the mesosphere are included in the model.
This study presents an evaluation of a pulse height condensation particle counter (PH-CPC) and an expansion condensation particle counter (E-CPC) in terms of measuring ambient and laboratory-generated molecular and ion clusters. Ambient molecular cluster concentrations were measured with both instruments as they were deployed in conjunction with an ion spectrometer and other aerosol instruments in Hyytiälä, Finland at the SMEAR II station between 1 March and 30 June 2007. The observed cluster concentrations varied and ranged from some thousands to 100 000 cm -3. Both instruments showed similar (within a factor of ~5) concentrations. An average size of the detected clusters was approximately 1.8 nm. As the atmospheric measurement of sub 2-nm particles and molecular clusters is a challenging task, we conclude that most likely we were unable to detect the smallest clusters. Nevertheless, the reported concentrations are the best estimates to date for minimum cluster concentrations in a boreal forest environment.
We report the first atmospheric observations of the Chlorofluorocarbons (CFCs) trifluorochloroethene, 3-chloropentafluoropropene and 4,4-dichlorohexafluoro-1-butene by means of Gas Chromatography with Electron Capture and Mass Spectrometric detection (GC-ECD-MS) in air samples taken at the Taunus Observatory operated by the University of Frankfurt (Main) and the Jungfraujoch High Altitude Research Station in Switzerland. These substances belong to a class of CFCs containing a double bond and are suspected to originate from the production and thermal degradation of widely used fluoropolymers like polychlorotrifluoroethene (PCTFE). Their atmospheric lifetimes are expected to be rather short. A quantitative calibration could only be derived for trifluorochloroethene but not for the other species by now. Thus, we use a relative sensitivity method to get a first indication of the observed atmospheric abundances. Identification was possible because of an air plume containing high concentrations of these substances. We suggest that the abundances found on this occasion originated from a local source. However, we have also observed the novel CFCs in air masses representative of background conditions, though with much lower concentrations. These species and some of their degradation products are toxic and could also be relevant for stratospheric and tropospheric ozone depletion.
Assessment of ecologically relevant hydrological change in China due to water use and reservoirs
(2008)
As China’s economy booms, increasing water use has significantly affected hydro-geomorphic processes and thus the ecology of surface waters. A large variety of hydrological changes arising from human activities such as reservoir construction and management, water abstraction, water diversion and agricultural land expansion have been sustained throughout China. Using the global scale hydrological and water use model WaterGAP, natural and anthropogenically altered flow conditions are calculated, taking into account flow alterations due to human water consumption and 580 large reservoirs. The impacts resulting from water consumption and reservoirs have been analyzed separately. A modified “Indicators of Hydrologic Alteration” approach is used to describe the human pressures on aquatic ecosystems due to anthropogenic alterations in river flow regimes. The changes in long-term average river discharge, average monthly mean discharge and coefficients of variation of monthly river discharges under natural and impacted conditions are compared and analyzed. The indicators show very significant alterations of natural river flow regimes in a large part of northern China and only minor alterations in most of southern China. The detected large alterations in long-term average river discharge, the seasonality of flows and the inter-annual variability in the northern half of China are very likely to have caused significant ecological impacts.
Transcriptional activation involves the ordered recruitment of coactivators via direct interactions between distinct binding domains and recognition motifs. The p160/SRC/NCoA coactivator family comprises three members (NCoA-1, -2 and -3), which are organized in multiprotein coactivator complexes. We had identified the PAS-B domain of NCoA-1 as an LXXLL motif binding domain. Here we show that NCoA family members are able to interact with other full-length NCoA proteins via their PAS-B domain and they specifically interact with the CBP-interaction domain (CID/AD1) of NCoA-1. Peptide competition, binding experiments and mutagenesis of LXXLL motifs point at distinct binding motif specificities of the NCoA PAS-B domains. NMR studies of different NCoA-1-PAS-B/LXXLL peptide complexes revealed similar although not identical binding sites for the CID/AD1 and STAT6 transactivation domain LXXLL motifs. In mechanistic studies, we found that overexpression of the PAS-B domain is able to disturb the binding of NCoA-1 to CBP in cells and that a CID/AD1 peptide competes with STAT6 for NCoA-1 in vitro. Moreover, the expression of an endogenous androgen receptor target gene is affected by the overexpression of the NCoA-1 or NCoA-3 PAS-B domains. Our study discloses a new, complementary mechanism for the current model of coactivator recruitment to target gene promoters.
In a combined NMR/MD study, the temperature-dependent changes in the conformation of two members of the RNA YNMG-tetraloop motif (cUUCGg and uCACGg) have been investigated at temperatures of 298, 317 and 325 K. The two members have considerable different thermal stability and biological functions. In order to address these differences, the combined NMR/MD study was performed. The large temperature range represents a challenge for both, NMR relaxation analysis (consistent choice of effective bond length and CSA parameter) and all-atom MD simulation with explicit solvent (necessity to rescale the temperature). A convincing agreement of experiment and theory is found. Employing a principle component analysis of the MD trajectories, the conformational distribution of both hairpins at various temperatures is investigated. The ground state conformation and dynamics of the two tetraloops are indeed found to be very similar. Furthermore, both systems are initially destabilized by a loss of the stacking interactions between the first and the third nucleobase in the loop region. While the global fold is still preserved, this initiation of unfolding is already observed at 317 K for the uCACGg hairpin but at a significantly higher temperature for the cUUCGg hairpin.
Einzelne Erzwespenarten aus der Familie Eulophidae haben sich mittlerweile als fester Bestandteil des Parasitoidenkomplexes von C. ohridella etabliert. In Berlin wurden im Rahmen eines geförderten Projekts (EFRE- Europäischer Fond für regionale Entwicklung der EU und der Senatsverwaltung für Stadtentwicklung) 21 Schlupfwespen-Arten als natürliche Gegenspieler nachgewiesen (Jäckel & al. 2007). Nach wie vor sind die natürlichen Parasitierungsraten mangelhaft. Dazu wurden während der Projektlaufzeit unterschiedliche Erhebungen mit dem Ziel durchgeführt, Ursachenkomplexe herauszuarbeiten. Die Parasitierungsraten wurden in Abhängigkeit vom Erfassungszeitpunkt, vom Standort der Kastanien in der Stadt, von der Dichte der Kastanien je Flächeneinheit und von der Diversität der Umgebungsvegetation bestimmt. Parallel wurde das Parasitoidenspektrum im Untersuchungszeitraum unter verschiedenen Bedingungen ermittelt. Da keine parasitierungsbegünstigenden Faktoren herausgearbeitet werden konnten, um daraus nützlingsfördende Maßnahmen abzuleiten, wurde eine geeignete Schlupfwespe aus dem natürlichen Parasitoidenkomplex ausgewählt, um die Möglichkeiten eines gezielten Einsatzes zur Dezimierung der Motte im Freiland zu erarbeiten. Die Biologie von P. agraules wurde im Labor und im Freiland untersucht. Weiterhin wurde durch Freilassung markierter Tiere im Freiland deren Verhalten studiert.
Fraßschäden des Erbsenwicklers Cydia nigricana (Lepidoptera: Tortricidae) verursachen im Anbau von Gemüse- und Saaterbsen erhebliche wirtschaftliche Schäden. Im Gemüseerbsenanbau waren in ganzen Regionen Erbsenflächen aufgrund der Überschreitung der Toleranzschwelle von 0,5 % angefressenen Erbsen nicht vermarktungsfähig. Im Saaterbsenanbau verursacht C. nigricana verminderte Keim- und Triebkraft, das Anhaften von Unkrautsamen am Saatgut und Mykosen wie Ascochyta und Fusarium. Zur Befallsreduzierung wurden in den Versuchsjahren 2004-2006 Untersuchungen zum Einsatz von Pheromon zur Paarungsstörung des Schädlings durchgeführt.
Das nordostdeutsche Tiefland ist historisch und aktuell ein Massenwechselgebiet für eine Reihe von Forstschadinsekten. Das gilt, bedingt durch die standörtlichen Verhältnisse und die gegenwärtige Dominanz der Kiefer, insbesondere für Brandenburg. Auf Grund des sehr hohen Risikos von irreversiblen Bestandesschäden durch nadelfressende Schmetterlinge und Blattwespen existieren flächige, dem aktuellen Gefährdungsstatus angepasste, standardisierte Überwachungsverfahren als Voraussetzung für die Prognose und Kontrolle.
Gewöhnliche Ausschnitte unserer Kulturlandschaft sind oft schlechter untersucht als unter Schutz stehende Landschaftsbestandteile. So war z.B. die Artenausstattung mancher Naturwälder eher bekannt als die Artenausstattung der umliegenden Nutzwälder. Durch die Initiativen und Forschungsprojekte u.a. von Ammer & al. (1995) wurde dann deutlich, dass auch Nutzwälder einen wertvollen Beitrag zur Artenvielfalt leisten können. Bei der Erforschung der Nutzwälder sind jedoch Kiefernforste nach wie vor vernachlässigt worden. Nur Arbeiten von Möller (2000) und Möller & Jakobitz (2003) in Brandenburg stellten hier wichtige Schritte dar, neuerdings ergänzt durch z.B. Reike & al. (2005). Im Folgenden werden neu ausgewertete Daten aus einem vom BMBF geförderten Forschungsprojekt vorgestellt, in dem sehr umfassende Grunderhebungen der in genutzten Kiefernforsten Brandenburgs vorkommenden Arthropoden durchgeführt wurden (Schulz & al. 2004, Majunke & al. 2005). Die folgenden Auswertungen konzentrieren sich auf die Artendiversität der an Kiefern (Pinus sylvestris L.) erfassten Käfer in Kiefernreinbeständen und auf die stratenspezifische Verteilung.
In Western Europe pedunculate oak (Quercus robur L.) is the forest tree with the highest number of phytophagous insect species (Yela & Lawton 1997). One of these, the green oak leaf roller Tortrix viridana L. is an oligophagous herbivorous moth with a host range limited to the genus Quercus (Hunter 1990, Du Merle 1999). During outbreaks, T. viridana often leads to defoliation of oaks in spring. The abundance of T. viridana is subject to the population size fluctuations typical for herbivorous insects, where periods of small population sizes (latent periods) alternate with periods of high population sizes (outbreak) (e.g. Schütte 1957, Horstmann 1984). Apart from many experimental studies on population dynamics of the moth (e.g. Hunter 1990, Du Merle 1999, Ivashov & al. 2002) so far little attention has been paid to the genetic variation within the species as an important aspect of the genetics of this host-parasite interaction. Simchuk & al. (1999) found changes in the heterozygosity level of different isozyme loci during outbreaks in T. viridana and molecular markers for T. viridana have been developed for analyses of genetic variation within and among populations (Schroeder & Scholz 2005). But, investigations of genetic variation within and among populations of forest pest species are important to predict future pest outbreaks. So far the processes outbreaks based on are not entirely clarified, however it is known that migration plays a major role. Using molecular markers investigations of the genetic variation are possible and offer the opportunity to analyse distribution events. In this paper first results are presented concerning the genetic variation of the green oak leaf roller at three geographic scales: (1) among trees within a population, (2) among populations at a small spatial scale of about 150 km and (3) among populations at a broader geographic scale up to 3000 km. Furthermore results of the genetic variation of oaks at the small spatial scale are represented.
Im Rahmen des Interreg III A DeLux – Projektes „Entwicklung von Strategien zur Sicherung von Buchenwäldern“ wurden im Zeitraum 2003 bis 2005 in 16 rheinland-pfälzischen Buchenwäldern Borkenkäferfänge mit Lockstoff-Fallen durchgeführt. Zielart dieses Borkenkäfer-Monitorings war der Laubnutzholzborkenkäfer (Trypodendron domesticum L.), der ab 2001 im nordwestlichen Rheinland-Pfalz einen Stehendbefall an augenscheinlich vitalen Buchen verursachte. Die Auswertung der Beifänge lieferte einen interessanten Einblick in das Artenspektrum der rheinland-pfälzischen Buchenwälder im Hinblick auf die vorkommenden Borkenkäferarten und potentieller Antagonisten aus der Ordnung Coleoptera.
C. nigricana verursachte in den letzten Jahren erhebliche Schäden in der Gemüseerbsenproduktion. Da es bisher im ökologischen Anbau keine wirksame Regulierungsoption für C. nigricana gibt, sollte die Direktbekämpfung mit dem Apfelwicklergranulosevirus (CpGV) geprüft werden. Payne (1981) stellte bereits in Laborversuchen eine Empfindlichkeit von C. nigricana gegen das Apfelwicklergranulosevirus CpGV fest, der LC50 Wert von CpGV gegen Erstlarven lag hierbei bei Fraßtests im Labor bei der 10-fachen Konzentration gegen C. pomonella (1,90 × 105 im Vergleich zu 1,54 × 104 Partikel/ml). Geissler (1994) erreichte in Freilandversuchen durch den Einsatz des Virus Befallsreduktionen von 72% mit den im Apfelanbau üblichen Konzentrationen.
Since the late 1990s, the oak processionary moth, Thaumetopoea processionea (L.), has been occurring at high population densities in eastern Austria. Particularly, infestations in areas of human settlement have created increasing interest in this insect due to health problems caused by the urticating hairs of the larvae. New methods for biological control are desirable. Like essentially all forest Lepidoptera, T. processionea is host for entomopathogenic microsporidia. These obligatory parasitic protists have been evaluated as biocontrol agents against an other oak pest, Lymantria dispar (Weiser & Novotny, 1987; Jeffords & al., 1988). Life history traits of T. processionea make this insect an even more promising target for the use of microsporidia. The larvae are highly gregarious and stay together in nests made of larval silk for resting periods and molting. Microsporidia utilize several pathways for horizontal transmission that would be aided by these features: spores can be released after host death from cadavers as well as from living larvae via silk or feces. Additionally, many microsporidia are vertically transmitted (summarized in Maddox & al., 1998). In this project, T. processionea larvae from various regions in eastern Austria were screened for the natural occurrence of microsporidia. One isolate, Endoreticulatus sp., was further studied and mass produced in a laboratory host, L. dispar, that is easy to rear and does not pose a health hazard for people working with the insects. An inoculative release was attempted on isolated trees infested with T. processionea.
Nach der Wiederentdeckung der Mendelschen Regeln Anfang des 20. Jahrhunderts waren es unter anderem Theodosius Dobzhansky und Ernst Mayr, die Evolution erstmals durch die Analyse von Populationen untersuchten. Bis 1980 wurden für diese populationsgenetischen Analysen morphologische, cytologische und enzymelektrophoretische Marker verwendet. Durch die Entdeckung der PCR wurde das Arbeiten mit DNA wesentlich erleichtert. Im Laufe der Zeit setzte sich der Begriff Molekulare Ökologie durch, mit dem man jenen Bereich beschreiben will, der molekulare Methoden der Populationsgenetik und der Genomanalyse mit ökologischen Fragestellungen verbindet. Genetische Marker können vergangene als auch zur Zeit ablaufende Prozesse aufzeigen. Mit Hilfe solcher Marker kann man einerseits Hinweise auf die Refugialgebiete von Organismen während der letzten Eiszeiten erhalten, anderseits Prozesse wie Genfluß, Selektion oder genetische Drift aufzeigen. Bei den meisten der von uns im Folgenden vorgestellten Arbeiten steht das Sequenzieren mitochondrialer Abschnitte im Vordergrund. Die mitochondriale DNA hat durch ihre im Vergleich zu nuklearer DNA erhöhte Mutationsrate und vereinfachte Genstruktur den Vorteil, bei intraspezifischen Fragestellungen gute Resultate zu erzielen.
Die Auswirkungen des globalen Klimawandels werden zunehmend sichtbar. In Deutschland haben sich die Jahresdurchschnittstemperatur im vergangenen Jahrhundert um 1 °C und die jährliche Niederschlagsmenge um + 9 % erhöht. Bezogen auf die Jahreszeiten ergeben sich jedoch deutliche Unterschiede, während die Sommermonate zunehmend niederschlagsärmer werden, erhöht sich die Niederschlagsmenge in den Wintermonaten überproportional (Schönwiese, 2002; Schönwiese & Janoschitz, 2005). Welche Folgen diese Veränderungen für die Waldökosysteme haben werden, wird in der Forstwirtschaft zu nehmend diskutiert. Allerdings gibt es bisher nur ökophysiologische, autökologische Ansätze. Synökologische Ansätze, die insbesondere auch die potenziellen Schadinsekten und damit die indirekten Auswirkungen des Klimawandels berücksichtigen, fehlen zumeist. Dies gilt auch für die Rotbuche deren waldbauliche Zukunft in jüngster Zeit diskutiert wurde (Rennenberg & al., 2004; Ammer & al., 2005; Kölling, & al., 2005).
Innerhalb der sozialen Insekten haben viele Gruppen die faszinierende Fähigkeit entwickelt, Nestgenossinnen zu rekrutieren. Rekrutierung beruht auf einer Kommunikation, die angewandt wird, um Mitglieder des Nestes zu einem bestimmten Ort zu bringen, wo Arbeit von Nöten ist (Wilson 1971). Daher beinhaltet die Rekrutierungskommunikation sowohl die Aktivierung von Nestgenossinnen innerhalb des Nestes, als auch die Orientierungshilfen für das Auffinden des Zielortes (Traniello & Robson 1995). Die stachellosen Bienen (Hymenoptera, Meliponini) sind unter den sozialen Insekten eine hoch diverse Tiergruppe (über 400 Arten, Michener 2000). Sie eignen sich ausgezeichnet für die Untersuchung der ebenso diversen Rekrutierungs- und Kommunikationsmechanismen. Bei stachellosen Bienen, wie bei anderen sozialen Insekten, beeinflusst die Güte der Futterquelle die Rekrutierung. Bisher wurde an Arten, die keinen Duftpfad legen, gezeigt, dass zu ertragreichen Futterquellen mehr Bienen rekrutiert werden als zu weniger ertragreichen (Biesmeijer & Ermers 1999). In der vorliegenden Arbeit wurde erstmals untersucht, wie die Zuckerkonzentration des Futters die Rekrutierung einer Art (Scaptotrigona aff. depilis) beeinflusst, welche Rekruten durch das Auslegen eines Duftpfades zur Futterquelle führt (Schmidt & al. 2006b).
Sexualpheromone sind im gesamten Tierreich weit verbreitet. Vor allem Insekten nutzen diese Art der Partnerfindung. Im Vergleich zu vielen Insektenarten, bei welchen die Art der pheromonbildenden Drüsenzellen, ihre Lage im Körper sowie die chemische Zusammensetzung ihrer Pheromone identifiziert wurde (s. Review von Blomquist & Vogt 2003) ist bei Schnellkäfern (Elateridae) noch sehr wenig bekannt. Die verschiedenen mitteleuropäischen Schnellkäferarten lassen sich anhand ihrer Pheromonspeicherung in zwei unterschiedliche Gruppen unterteilen. Die Weibchen der Unterfamilie Elaterinae, besitzen im letzten von außen sichtbaren Abdominalsegment ein paariges Drüsenreservoir in welchem das produzierte Sexualpheromon gespeichert wird. Im Gegensatz dazu fehlt bei den Weibchen der übrigen Unterfamilien ein solches Pheromonreservoir und es ist unklar, wo bei diesen Arten die Pheromone produziert werden. Beobachtungen von Ivastschenko & Adamenko (1980) deuten darauf hin, dass sich bei diesen Arten die pheromonproduzierenden Zellen im Bereich der Intersegmentalmembran zwischen dem Abdominalsegment VIII und IX befinden. Um zu klären, ob die Pheromondrüsen tatsächlich in diesem Bereich zu finden sind, wurden im Rahmen der vorliegenden Arbeit die Intersegmentalmembranen bei Weibchen und Männchen von Athous haemorrhoidalis und A. subfuscus auf mögliche Drüsenzellvorkommen untersucht.
Die Schlupfwespe Pimpla turionellae parasitiert versteckte Lepidopterenpuppen und orientiert sie sich bei der Wirtssuche multisensorisch mittels visueller Reize und aktiver Vibrationsortung mit selbst produzierten Schwingungen (Vibrational-Sounding). Die Studie untersucht, inwieweit die Wespen bei Änderung der Umgebungstemperaturen von 8-26°C (1) zwischen der temperatur-sensitiven vibratorischen und der -insensitiven visuellen Orientierung wechseln und (2) gegebenenfalls selbst die Körpertemperatur regulieren können, um die sehr präzise Vibrationsortung bei niedrigen Temperaturen aufrechtzuerhalten. Messungen mit Infrarot-Thermographie zeigen, dass suchende Wespen leicht erhöhte Körpertemperaturen während der vibratorischen Wirtssuche aufweisen, welche auf metabolische Wärmeproduktion zurückzuführen sind. Wahlexperimente unter kontrollierten Temperaturen zeigen zudem, dass die Nutzung der temperatur-sensitiven vibratorischen Reize bei pessimalen Temperaturen abnimmt und die Wespen auf fast ausschließliche visuelle Orientierung wechseln. Folglich wird die Relevanz einzelner Reize bei der multisensorischen Orientierung direkt vom Faktor Temperatur beeinflusst. Solange ein zuverlässiger Reiz vorhanden ist, nimmt dabei auch die Präzision der Lokalisation insgesamt nicht ab.
Erkenntnisse über das Wirt-Parasit-Verhältnis zwischen Hopfen Humulus lupulus L. und Hopfenblattlaus Phorodon humuli (Schrank) sind von entscheidender Bedeutung für die Selektion blattlausresistenter Sorten. Die Besiedelung des Wirts durch Blattläuse wird durch in den Pflanzen befindliche Substanzen erheblich beeinflusst (Nault & Styer 1972; Leath & al. 1974; Klingauf & al. 1978; Kendall & al. 1980; Singh 1980; Powell & al. 1999; Campo & al. 2003). Die in dieser Hinsicht wichtigsten Bestandteile des Hopfens sind die Bittersäuren, welche für den Parasit die Funktion von Signalstoffen haben können. In frischem Hopfen liegen sie überwiegend in Form der alpha-Bittersäuren (Humulon, co-Humulon, ad-Humulon) und der beta-Bittersäuren (Lupulon, co-Lupulon, ad-Lupulon) vor (Backleh 2001). Die Gehalte an Bitterstoffen im Pflanzengewebe des Hopfens schwanken stark im Lauf der Vegetationsperiode. Da ein Insekt sich an quantitative wie auch qualitative Unterschiede im Nährstoffangebot anzupassen vermag, sollten sich Änderungen im Wirtswahlverhalten bei der Nahrungsaufnahme von Blattläusen durch die saisonbedingten Stoffwechselschwankungen der Pflanzen ergeben. Um diese Veränderungen im Verhalten der Aphiden zu erfassen, war es notwendig, die Verhaltensbeobachtungen im Verlauf der Vegetationsperiode mehrfach zu wiederholen. Die Methode der Wahl zur Untersuchung quantitativer Unterschiede im Verhalten bei der Nahrungsaufnahme von Aphiden ist der Electrical Penetration Graph (EPG) (McLean & Kinsey 1964; Spiller 1988; Prado & Tjallingii 1994; Calatayud & al. 2001; 1978, 1988, 2006). In der vorliegenden Studie wurde diese Methode mit gleichzeitigen HPLC - Analysen der Bittersäurezusammensetzung des Gewebes relevanter Organe (Blätter und Zapfen) von Hopfen im Verlauf der Vegetationsperiode kombiniert.
Thysanopteren wehren sich gegen Prädatoren und Parasiten, indem sie einen Analtropfen mit einem Wehrsekret produzieren. Dieser Tropfen wird in einigen Fällen hoch gehalten, meist jedoch auf den Angreifer aufgetupft (Lewis 1973). Über die Wehrsekrete von Thripsen der Unterordnung Terebrantia ist bisher wenig bekannt. Von der einzigen chemisch genauer untersuchten Art Frankliniella occidentalis weiß man, dass deren Larven hauptsächlich mit einem Gemisch aus Decyl- und Dodecylacetat arbeiten (Teerling & al. 1993a, MacDonald & al. 2003). Diese Substanzen sind nur in beschränktem Umfange als Allomon wirksam. Hauptsächlich wirken sie als Alarmpheromon (Bakker & Sabelis 1987, 1989), indem sie die Aufmerksamkeit der Larven erhöhen. Nachteilig ist die relativ hohe Flüchtigkeit dieser Acetate. Sie können dadurch zusätzlich als Kairomon wirken und Prädatoren anlocken (Teerling & al. 1993b). Ein weiteres Problem ist, dass solche Acetate schnell verdunsten und nur für kurze Zeit auf der Oberfläche der Sinnesorgane potenzieller Angreifer verbleiben. Nicht untersucht ist, ob sie eventuell durch Umesterung, durch Freisetzung von Essigsäure oder durch andere Mechanismen schädigend wirken. Denkbar wäre hier auch eine ungünstige Beeinflussung der Epicuticula der Sensillen oder der im Sensilleninneren enthaltenen Pheromon-Bindungsproteine. Bei den Vertretern der Unterordnung Tubulifera wird die Handhabung des Wehrsekrettropfens besonders unterstützt durch einen Tubus, der in Extremfällen (beispielsweise bei Leeuwenia gladiatrix) fast die Hälfte der Körperlänge ausmachen kann. Mit diesem Tubus kann der Wehrsekrettropfen sehr geschickt über den Kopf hinweg gerichtet, auf sichere Entfernung, appliziert werden. Eigene Beobachtungen und die anderer Autoren (beispielsweise Howard & al. 1987) zeigen, dass bei allen bisher untersuchten Tubulifera der Sekrettropfen, wenn er nicht genutzt wurde, sorgfältig wieder „eingezogen“ wird.
Das Wirtswahlverhalten von Blattläusen wird neben primären Nahrungskomponenten auch durch sekundäre Pflanzeninhaltsstoffe gesteuert (Klingauf & al. 1978; Singh 1980; Powell & al. 1999; Campo & al. 2003). Häufig entziehen sich diese jedoch einer gezielten Untersuchung ihrer Wirkung auf die Aphiden, da sie als Substanzgemisch vorliegen. Beziehungen zwischen Substanzkonzentration und Verhaltensmustern aus Electrical Penetration Graphs (EPG) sind nur mit mäßigem Erfolg über statistische Verfahren darzustellen. Eine Versuchsanordnung zur gezielten Prüfung verhaltensbeeinflussender Substanzen mittels EPG wäre in diesem Falle hilfreich. Ein geeignetes einfaches Testsystem müsste mindestens folgende Komponenten beinhalten: – eine von den Aphiden akzeptierte Oberfläche, welche die Kutikula / Epidermis eines natürlichen Systems nachbildet – diese Oberfläche sollte evtl. durch den Versuchsansteller manipulierbar sein – eine dem Parenchym entsprechende Schicht, in welche die Testsubstanzen einzubringen wären – eine flüssige Phase, die dem Phloem entspricht und ebenfalls in ihrer Zusammensetzung variiert werden kann.
Cantharidin, which is mainly found in blister beetles (Coleoptera: Meloidae), is one of the most intensively studied natural products of insect (Dettner, 1997; McCormick & Carrel, 1987). The involvement of cantharidin in courtship behaviour has been already confirmed for certain canthariphilous insects (Eisner & al. 1996a,b; Frenzel & Dettner 1994; Frenzel & al. 1992; Schütz & Dettner, 1992; Hemp & al. 1999). The function and intrinsinc role of cantharidin in the courtship behaviour of Meloids has been never fully established. McCormick & Carrel (1987) only suggested that cantharidin might be used by female meloids when selecting a mate at close range. Pinto (1974, 1975) was, in fact, the first to consider male cuticular pores as being involved in the courtship behaviour of species from the genus Linsleya and Tegrodera (Meloidae). Based on morphology and chemical analyses of Cyaneolytta sp. (Coleoptera: Meloidae), we have hereby provided some further evidences that cantharidin may act as an infochemical in courtship behaviour of meloid beetles.
Sexual deception of male bees is one of the most remarkable mechanisms of pollination (Ackermann 1986, Proctor & al. 1996). Flowers of the orchid genus Ophrys mimic females of their pollinator species, usually bees and wasps, to attract males, which try to copulate with the flowers. During this so-called “pseudocopulation” the male removes the pollinia and transfers them to another flower to ensure pollination. Apart from visual and tactile cues, floral scent was shown to be most important for eliciting mating behaviour in males (Kullenberg 1961, Schiestl & al. 1999, Ayasse & al. 2003). Pollination in Ophrys is highly specific and usually each Ophrys species attracts only one pollinator species (Paulus & Gack 1990). The high degree of specialization provides the means of reproductive isolation between the intercrossable Ophrys-species (Ehrendorfer 1980). The complex odour-bouquets released by the flowers are species-specific and often consist of more than 100 different chemical compounds (Borg-Karlson & al. 1985, Ayasse 2006). Speciation in Ophrys-orchids may be brought about by changes in the pollinator attracting floral scent. The attraction of a new pollinator may act as a pre-zygotic isolation barrier (Stebbins 1970, Paulus & Gack 1990, Soliva & al. 2001). We investigated three sympatrically occuring Ophrys-species on Sardinia. O. chestermanii and O. normanii are endemic and are both pollinated by males of the bumblebee B. vestalis. O. tenthredinifera is pollinated by Eucera nigrilabris. There are different opinions concerning the taxonomic status of O. normanii. It has been described as an actual hybrid between O. chestermanii and O. tenthredinifera (Wood 1983). Paulus & Gack (1995) suggested that it is an own species, that either has developed from a hybrid between O. chestermanii and O. normanii or that has evolved by radiation from O. tenthredinifera. By conducting behavioural-tests with B. vestalis males, performing gas chromatographic analyses and electrophysiological studies we wanted to identify pollinator attracting scent and to clarify the taxonomic status of O. normanii.
The orchid genus Epipactis is represented by 25 species in Europe (Richards 1982). Epipactis helleborine (L.) Crantz is the most common and widely distributed species of the genus (Wiefelspütz 1970), and is a prime example for wasp-flowers, because it is mainly pollinated by social wasps (Hymenoptera: Vespidae), like Vespula vulgaris and V. germanica (Müller 1873). Darwin (1888) already noticed that E. helleborine is almost exclusively ignored by bees and bumblebees, an observation that was confirmed in recent investigations (Keppert 2001). The flowers of E. helleborine show morphological, physiological and phenological adaptations to the visit and the pollination by Vespidae (Keppert 2001). They possess a reddish-brown or dirty purple coloration of the inflorescence (Keppert 2001), have relatively small, mostly bulbous blossoms with a broad entrance and bulbous widened, nectar-rich juice holders (Müller 1873, 1881; Schremmer 1962). Although there is much reported about wasp-pollinated flowers there is little known about the signals that are responsible for the attraction of wasps. Wiefelspütz (1970) proclaimed the statement that only the visual stimulus is responsible for the wasp attraction. Recently studies, however, assumed that odour is involved in the wasp attraction (Keppert 2001). Hölzler (2003) showed that the main attraction of the wasp-flower Epipactis for pollinators is its olfactory stimulus. It remains an unanswered question why E. helleborine flowers almost exclusively attracts social wasps, as opposed to bees and bumblebees. In this study we analysed the role of floral volatiles which are responsible for the specific attraction of social wasps. We supposed a mimicry-system in E. helleborine for the specific attraction of pollinators for the following reasons. So-called “green leaf volatiles” (GLVs) are emitted by plants while herbivorous insects, for example caterpillars, feed on them. GLVs thereby attract predators or parasitoids of the herbivorous insects (Dicke & Sabelis 1988; Turlings & al. 1990, 1995; Dicke & Vet 1999). Among the GLVs so far identified in former studies there are aldehydes, compounds that were also found in flower extracts of E. helleborine (Hölzler 2003). Therefore, we postulated that E. helleborine flowers produce GLVs in order to attract prey hunting social wasps for pollination. We performed bioassays and analysed flower odour gained to headspace-sampling using gas chromatography (GC), mass spectrometry (GC-MS) and gas chromatography coupled with electrophysiological analysis (GC-EAD) to investigate the hypothesis that E. helleborine flowers mimic “green leaf volatiles” (GLVs) to attract their pollinators.
Die Glucosinolate (GS) sind charakteristische sekundäre Pflanzeninhaltsstoffe, vorkommend in der Gruppe der Brassicaceae und anderen Familien der Ordnung Brassicales (Halkier & Gershenzon 2006). Bisher sind mehr als 120 verschiedene GS beschrieben, welche eine gemeinsame Grundstruktur mit variablem Seitenkettenrest kennzeichnet (Fahey et al. 2001). Je nach chemischer Natur der Seitenkette werden die GS in aliphatische, aromatische und Indolyl-GS unterteilt. Alle GS-enthaltenden Pflanzen besitzen zusätzlich räumlich getrennt von den GS hydrolysierende Enzyme, so genannte Myrosinasen. Erst nach Zellbeschädigung kommen die beiden Komponenten in Kontakt zueinander und weitere biologisch aktive Verbindungen wie z. B. Isothiocyanate und Nitrile werden freigesetzt (Rask et al. 2000). Das GS-Myrosinase-System ist ein effektives Abwehrsystem insbesondere gegenüber generalistischen Insekten, Pathogenen und Bakterien, allerdings dienen vielen spezialisierten Insekten diese Stoffe zur Wirtspflanzenfindung und -akzeptanz (Renwick 2002, Halkier & Gershenzon 2006). Die Modellpflanze Arabidopsis thaliana L. enthält als Vertreter der Brassicaceae GS als Fraßabwehrstoffe. In A. thaliana als auch in Brassica ist das aliphatische GS-Muster sehr variabel, wohingegen die Indolyl-GS weit verbreitet sind (Kliebenstein 2001, Li & Quiros 2002). Allerdings fehlen Studien zur Funktion dieser GS-Klassen innerhalb der Pflanzenresistenz gegenüber Phytophagenfraß. Deshalb wurden zwei A. thaliana -Mutanten mit verändertem aliphatischen bzw. Indolyl-GS-Profil im Vergleich zu Columbia WT auf die Wirtspflanzeneignung für drei verschieden spezialisierte Lepidoptera-Arten getestet.
Solitary bees are important pollinators of flowers. Besides nectar they collect pollen at flowers mainly to provide their larvae with food. Many bee species collect pollen only on a few closely related plant species (oligolecty) (Müller & al. 1997). Little is known about the visual and olfactorial signals they use for host-plant finding (Wcislo & Cane 1996). However, bees can olfactorily distinguish between different pollen species (von Frisch 1923), and a species-specific chemistry of pollen odour is known for some plant species (Bergström & al. 1995, Dobson & al. 1999). Further, it was shown that naïve oligolectic bees recognize their host-plant on the basis pollen volatiles (Dobson & Bergström 2000) and that flower-experienced bees could use pollen odours to assess pollen availability (Dobson & al. 1999). Besides scent, also visual cues are of relevance for host-plant finding, and bees orientate especially spectral contrasts. Biotests with dummy flowers revealed that colour contrast and not intensity and dominant wavelengths are influencing innate behavioural responses (Lunau 1990). Further it was shown that naïve bumblebees were most motivated to land on a flower when visual stimuli from the antheres are combined with olfactorial stimuli from the pollen (1992). We choose Osmia adunca P., which is highly specialized on Echium L., as a model to investigate the importance of floral cues for an oligolectic bee. Because bees learn to associate odours with reward more rapidly than visual cues (Menzel 1985), we hypothesize that scent plays a major role in attraction flower-experienced O. adunca females. We used gas chromatography to compare the scent of three Echium species with the scent of a closely related Anchusa species, and a spectrometer to compare the colour of the three Echium species. Additionally we conducted a biotest to determine the importance of visual and olfactorial signals of Echium for host-plant finding of experienced O. adunca females.
Die Entwicklung einer Population des Kalifornischen Blütenthrips (Frankliniella occidentalis) in neuen oder ungewohnten Kulturpflanzenbeständen ist häufig anfangs sehr verhalten, um dann schlagartig zu kulminieren. Nicht selten werden dadurch Bekämpfungsmaßnahmen zu spät eingeleitet, was sich nachteilig auf deren Erfolg auswirkt. Anhand eines standardisierten Biotests im Labor sollte der Einfluss von verschiedenen Wirtspflanzen auf die Populationsentwicklung des Schädlings betrachtet werden.
In agroecological research it has been appreciated only fairly recently that plant-insect interactions and other ecological processes depend on scales much larger than a single habitat (Wiens et al. 1997). Crop-pest interactions have mainly been studied on single pest species by focusing either on the impact of field parameters or on landscape structure but only rarely included both factors (Östman et al. 2001). Here we investigated how the abundances of three major insect pest species in oilseed rape (OSR) responded to field parameters and landscape characteristics at various spatial scales. Pest species considered in the current study include (i) ceutorhynchid stem weevils that lay eggs in leaf petioles or midribs of OSR plants while the larvae tunnel in the stems; (ii) pollen beetles that feed on pollen and destroy flower buds and (iii) brassica pod midge that lay eggs into OSR pods where the hatched larvae consume the seeds as well as tissue of the pod walls and cause the pods to split prematurely (Alford et al. 2003). Studying these different groups of pests is especially important because they attack different parts of the crop, use different habitats as overwintering sites and also differ in their mobility; with the exception of pollen beetles these pest species have never been studied in a landscape context. The specific objectives of this study were to determine (i) whether the major OSR pest species differ in their relation to field and landscape characteristics and (ii) at which spatial scales landscape variables are effective.
Agricultural intensification is a major threat to biological diversity worldwide. Land management activities enhancing landscape diversity are therefore regarded as a key strategy to halt species loss in cultural landscapes. Diverse and abundant communities of predatory arthropods, e.g. spiders (Araneae), have a high potential to suppress pest populations (Symondson et al. 2002) and could therefore contribute to allow reductions of pesticide use. Crop fields alone are usually not able to sustain diverse and individual-rich populations of predatory arthropods, because agricultural management results in disturbances and habitat deteriorations (harvest, soil cultivation, pesticide application) that kill or drive away large parts of the populations. Therefore semi-natural and perennial habitats in agricultural landscapes are considered to be of great importance for beneficial arthropods. On the one hand they offer refuge habitats in times when arable fields are hostile, e.g. fields with bare grounds during winter (Schmidt & Tscharntke 2005). On the other hand, viable populations of predatory arthropods in semi-natural habitats can serve as sources for (re-) colonisation of arable fields (Schmidt & Tscharntke 2005). Because of these exchanges between crop and non-crop areas it is important to include the surrounding landscape when investigating field-scale processes. We investigated the relations between spider assemblages in arable fields and the surrounding landscape in 29 fields of winter oilseed rape (OSR) in an agricultural landscape in eastern Austria. The objectives of this study were to estimate (1) how much spider assemblages in oilseed rape fields are influenced by the surrounding landscape, (2) the relative influence of landscape variables compared to field-scale variables and (3) at which spatial scales landscape variables are effective.
The lower wood-feeding Australian termite Mastotermes darwiniensis Froggatt (Fig. 1) is the only living member of the family Mastotermitidae. The complex symbiotic hindgut flora consists of protozoa (formerly named Archaezoa; Cleveland & Grimstone 1964; Brugerolle & al. 1994; Berchtold & König 1995; Fröhlich & König 1999a, b), bacteria (Berchtold & König 1996; Berchtold & al. 1999), archaea (Fröhlich & König 1999a, b) and yeasts (Prillinger & al. 1996; Schäfer & al. 1996). The digestive system of Mastotermes darwiniensis consists of the foregut with the crop and the gizzard, the midgut, and the hindgut (Noirot & Noirot-Timothée 1969; 1995). The hindgut consists of five segments (P1 – P5): the proctodeal segment, the enteric valve, the paunch, the colon and the rectum. The paunch is the main microbial fermentation chamber, but the colon also contains microorganisms. The paunch is subdivided into a dilated thin-walled region (P3a) and a thick walled more tubular region (P3b) (Fig. 1c). In the case of Mastotermes darwiniensis oxygen diffusion gradients could be detected up to 100 μm below the epithelium (Berchtold & al., 1999).
Verbreitung, Nestdichten und Ökologie hügelbauender Waldameisen der Gattung Formica im Tiroler Wald
(2008)
Trotz der erheblichen waldökologischen und naturschutzfachlichen Bedeutung hügelbauender Formica-Arten waren Informationen über aktuelle Verbreitung, ökologische Einnischung und eventuelle Gefährdung in Tirol als lückenhaft zu bezeichnen. Aus diesem Grund wurde in enger Zusammenarbeit mit der Landesforstdirektion Tirol und im Auftrag der Tiroler Landesregierung, Abtlg. Umweltschutz, eine landesweite Erhebung des Waldameisenbestandes im Zuge routinemäßig durchgeführter forstlicher Inventuren von 2004 bis 2006 durchgeführt (Glaser 2004, 2005, 2006). Dabei ergab die Analyse der Waldameisenbesiedlung in Abhängigkeit zu ebenfalls erhobenen forstlicher Parameter Hinweise auf die Habitatpräferenzen einzelner Arten.
Ökologischer Vergleich der Spinnenfauna (Arachnida: Araneae) von Energiewäldern und Ackerland
(2008)
Kurzumtriebsflächen, oder auch Energiewälder bzw. Schnellwuchsplantagen genannt, sind Flächen mit schnellwachsenden Baumarten (z. B. Hybridpappeln), die in kurzen Umtriebszeiten von 2 bis 10 Jahren bewirtschaftet werden. Nach der zyklischen Ernte treiben die Bäume wieder aus (Stockausschlag) und können nach einigen Jahren erneut genutzt werden. Das Prinzip der schnellwüchsigen Baumarten ist dem früher weit verbreiteten Niederwald ähnlich, allerdings mit dem Unterschied, dass der Energiewald in der Regel auf stillgelegten landwirtschaftlichen Flächen angebaut wird und bei der Begründung züchterisch bearbeitetes Material von Pappel, Aspe und Weide verwendet wird. Kurzumtriebsflächen dienen vorwiegend der Holzproduktion (v. a. Hackschnitzel) zur Gewinnung von (Wärme-)Energie. Spinnen (Arachnida: Araneae) kommen in allen terrestrischen Lebensräumen in großer Artenzahl vor. Allein auf dem Gebiet Deutschlands sind derzeit über 1000 verschiedene Spinnenarten bekannt (Blick & al. 2004). Spinnen ernähren sich räuberisch, wobei ihre Beutetiere meist andere Arthropoden darstellen. Aufgrund der spezifischen Ansprüche vieler Arten an bestimmte (Mikro-)Habitate und damit an spezielle Lebensraumanforderungen eignen sie sich besonders für die qualitative Charakterisierung von Groß- und Kleinlebensräumen. Auch die Veränderung von Lebensräumen durch verschiedene Einflüsse (z. B. Änderung der Nutzungsintensität, Schadstoffimmissionen, Entwässerung, Sukzession, etc.) kann durch Spinnen gut bewertet und dokumentiert werden. Sie werden deshalb häufig bei der Beurteilung der Schutzwürdigkeit von Flächen, bei Eingriffsgutachten, Erfolgskontrollen, Umweltverträglichkeitsuntersuchungen sowie zum Biotopmonitoring herangezogen und zunehmend als Indikatorgruppe für die Bewertung von Habitaten verwendet (z. B. Clausen 1986, Gack & al. 1999). Bisher gibt es nur wenige publizierte Studien zum Vorkommen und zu den Entwicklungstendenzen der epigäischen Arthropodenfauna auf Energiewaldflächen (Blick & Burger 2002, Blick & al. 2003). Mit der vorliegende Untersuchung sollen daher exemplarisch die Auswirkungen solcher Kurzumtriebs-Versuchsflächen auf die epigäische Raubarthropodenfauna beleuchtet werden. Als eine der wichtigsten Prädatorengruppen wurde die Ordnung der Spinnen (Araneae) gewählt, die aufgrund der hohen Arten- und Individuenzahl sowie oft spezifischer Biotopansprüche der einzelnen Arten besonders geeignet erscheint. Besonderes Interesse erweckt bei vorliegender Untersuchung die Fragestellung, ob sich innerhalb weniger Jahre waldtypische Spinnenarten einstellen und inwieweit sich die Spinnenfauna bezüglich des Ausgangsstadiums „Acker“ verändert (Sukzession). Darüber hinaus wurde ermittelt, welche Auswirkungen die Ernte eines aufstockenden Energiewaldes auf die Spinnenzönose haben kann.
Offenlandschaften, insbesondere vegetationsarme bzw. von Sandmagerrasen bewachsene Binnendünen stellen seltene Lebensräume dar, die einer Vielzahl spezialisierter Arten einen Lebensraum bieten. Solche Ökosysteme sind in der Oberlausitz unter anderem durch Truppenübungsplätze entstanden und gehen nach Nutzungsaufgabe durch Sukzession verloren. Dadurch verlieren verschiedene stenöke Tierarten ihren Lebensraum. Dies gilt im besonderen Maße für Myrmeleon bore, eine Art, die nach Gepp & Hölzel (1996) offene Sandflächen benötigt. In gewissem Maße profitiert auch Euroleon nostras, der aber auch andere Biotope besiedelt, so lange genügend offene Fläche mit rieselfähigem Substrat, sowie Witterungsschutz vorliegt. Hier soll der Einfluss der Sukzession auf die Verbreitung der Arten untersucht werden, um somit insbesondere Hinweise zum Erhalt der Populationen zu gewinnen.
In our present-day landscape in Central Europe major parts of the xylobiontic especially of the saproxylic beetle fauna belong to the group of endangered species assemblages (Speight 1989, Geiser 1994). Oaks, in Central Europe mainly Quercus robur and Q. petraea, are well known for their large number of associated insect species and harbour the highest beetle diversity, especially for dead wood inhabiting species, of all broadleaved tree species in this region (e.g. Palm 1959). A characteristic species associated with oaks in its life-cycle is the endangered Great Capricorn Cerambyx cerdo. C. cerdo is one of the protected species explicitly named in the Habitats Directive of the European Union with the goal of maintaining existing populations and establishing long-term survival (Council of the European Communities 1992). The last remaining colonised areas of this longhorn beetle in Central Europe are well known for the enormous number of very rare xylobiontic beetle species. Thus, we are interested in the following research questions: 1) Are there typical species associated with C. cerdo? 2) If so, what kind of relationship do these associated species have to C. cerdo from a nature conservation point of view?
A high-precision pressure probe is described which allows non-invasive online-monitoring of the water relations of intact leaves. Real-time recording of the leaf water status occurred by data transfer to an Internet server. The leaf patch clamp pressure probe measures the attenuated pressure, Pp, of a leaf patch in response to a constant clamp pressure, Pclamp. Pp is sensed by a miniaturized silicone pressure sensor integrated into the device. The magnitude of Pp is dictated by the transfer function of the leaf, Tf, which is a function of leaf patch volume and ultimately of cell turgor pressure, Pc, as shown theoretically. The power function Tf=f(Pc) theoretically derived was experimentally confirmed by concomitant Pp and Pc measurements on intact leaflets of the liana Tetrastigma voinierianum under greenhouse conditions. Simultaneous Pp recordings on leaflets up to 10 m height above ground demonstrated that changes in Tf induced by Pc changes due to changes of microclimate and/or of the irrigation regime were sensitively reflected in corresponding changes of Pp. Analysis of the data show that transpirational water loss during the morning hours was associated with a transient rise in turgor pressure gradients within the leaflets. Subsequent recovery of turgescence during the afternoon was much faster than the preceding transpiration-induced water loss if the plants were well irrigated. Our data show the enormous potential of the leaf patch clamp pressure probe for leaf water studies including unravelling of the hydraulic communication between neighbouring leaves and over long distances within tall plants (trees).
Chloroplast function depends on the translocation of cytosolically synthesized precursor proteins into the organelle. The recognition and transfer of most precursor proteins across the outer membrane depend on a membrane inserted complex. Two receptor components of this complex, Toc34 and Toc159, are GTPases, which can be phosphorylated by kinases present in the hosting membrane. However, the physiological function of phosphorylation is not yet understood in detail. It is demonstrated that both receptors are phosphorylated within their G-domains. In vitro, the phosphorylation of Toc34 disrupts both homo- and heterodimerization of the G-domains as determined using a phospho-mimicking mutant. In endogenous membranes this mutation or phosphorylation of the wild-type receptor disturbs the association of Toc34, but not of Toc159 with the translocation pore. Therefore, phosphorylation serves as an inhibitor for the association of Toc34 with other components of the complex and phosphorylation can now be discussed as a mechanism to exchange different isoforms of Toc34 within this ensemble.
Gene trapping is used to introduce insertional mutations into genes of mouse embryonic stem cells (ESCs). It is performed with gene trap vectors that simultaneously mutate and report the expression of the endogenous gene at the site of insertion and provide a DNA tag for rapid identification of the disrupted gene. Gene traps have been employed worldwide to assemble libraries of mouse ESC lines harboring mutations in single genes, which can be used to make mutant mice. However, most of the employed gene trap vectors require gene expression for reporting a gene trap event and therefore genes that are poorly expressed may be under-represented in the existing libraries. To address this problem, we have developed a novel class of gene trap vectors that can induce gene expression at insertion sites, thereby bypassing the problem of intrinsic poor expression. We show here that the insertion of the osteopontin enhancer into several conventional gene trap vectors significantly increases the gene trapping efficiency in high-throughput screens and facilitates the recovery of poorly expressed genes.
Comparative studies suggest that at least some bird species have evolved mental skills similar to those found in humans and apes. This is indicated by feats such as tool use, episodic-like memory, and the ability to use one´s own experience in predicting the behavior of conspecifics. It is, however, not yet clear whether these skills are accompanied by an understanding of the self. In apes, self-directed behavior in response to a mirror has been taken as evidence of self-recognition. We investigated mirror-induced behavior in the magpie, a songbird species from the crow family. As in apes, some individuals behaved in front of the mirror as if they were testing behavioral contingencies. When provided with a mark, magpies showed spontaneous mark-directed behavior. Our findings provide the first evidence of mirror self-recognition in a non-mammalian species. They suggest that essential components of human self-recognition have evolved independently in different vertebrate classes with a separate evolutionary history.
Ribosome biogenesis in eukaryotes requires the participation of a large number of ribosome assembly factors. The highly conserved eukaryotic nucleolar protein Nep1 has an essential but unknown function in 18S rRNA processing and ribosome biogenesis. In Saccharomyces cerevisiae the malfunction of a temperature-sensitive Nep1 protein (nep1-1ts) was suppressed by the addition of S-adenosylmethionine (SAM). This suggests the participation of Nep1 in a methyltransferase reaction during ribosome biogenesis. In addition, yeast Nep1 binds to a 6-nt RNA-binding motif also found in 18S rRNA and facilitates the incorporation of ribosomal protein Rps19 during the formation of pre-ribosomes. Here, we present the X-ray structure of the Nep1 homolog from the archaebacterium Methanocaldococcus jannaschii in its free form (2.2 Å resolution) and bound to the S-adenosylmethionine analog S-adenosylhomocysteine (SAH, 2.15 Å resolution) and the antibiotic and general methyltransferase inhibitor sinefungin (2.25 Å resolution). The structure reveals a fold which is very similar to the conserved core fold of the SPOUT-class methyltransferases but contains a novel extension of this common core fold. SAH and sinefungin bind to Nep1 at a preformed binding site that is topologically equivalent to the cofactor-binding site in other SPOUT-class methyltransferases. Therefore, our structures together with previous genetic data suggest that Nep1 is a genuine rRNA methyltransferase.
Many new gene copies emerged by gene duplication in hominoids, but little is known with respect to their functional evolution. Glutamate dehydrogenase (GLUD) is an enzyme central to the glutamate and energy metabolism of the cell. In addition to the single, GLUD-encoding gene present in all mammals (GLUD1), humans and apes acquired a second GLUD gene (GLUD2) through retroduplication of GLUD1, which codes for an enzyme with unique, potentially brain-adapted properties. Here we show that whereas the GLUD1 parental protein localizes to mitochondria and the cytoplasm, GLUD2 is specifically targeted to mitochondria. Using evolutionary analysis and resurrected ancestral protein variants, we demonstrate that the enhanced mitochondrial targeting specificity of GLUD2 is due to a single positively selected glutamic acid-to-lysine substitution, which was fixed in the N-terminal mitochondrial targeting sequence (MTS) of GLUD2 soon after the duplication event in the hominoid ancestor ~18–25 million years ago. This MTS substitution arose in parallel with two crucial adaptive amino acid changes in the enzyme and likely contributed to the functional adaptation of GLUD2 to the glutamate metabolism of the hominoid brain and other tissues. We suggest that rapid, selectively driven subcellular adaptation, as exemplified by GLUD2, represents a common route underlying the emergence of new gene functions.
C2-symmetric bisamidines : chiral Brønsted bases catalysing the Diels-Alder reaction of anthrones
(2008)
C2-symmetric bisamidines 8 have been tested as chiral Brønsted bases in the Diels- Alder reaction of anthrones and N-substituted maleimides. High yields of cycloadducts and significant asymmetric inductions up to 76% ee are accessible. The proposed mechanism involves proton transfer between anthrone and bisamidine, association of the resulting ions and finally a cycloaddition step stereoselectively controlled by the chiral ion pair.
Oscillatory activity in human electro- or magnetoencephalogram has been related to cortical stimulus representations and their modulation by cognitive processes. Whereas previous work has focused on gamma-band activity (GBA) during attention or maintenance of representations, there is little evidence for GBA reflecting individual stimulus representations. The present study aimed at identifying stimulus-specific GBA components during auditory spatial short-term memory. A total of 28 adults were assigned to 1 of 2 groups who were presented with only right- or left-lateralized sounds, respectively. In each group, 2 sample stimuli were used which differed in their lateralization angles (15° or 45°) with respect to the midsagittal plane. Statistical probability mapping served to identify spectral amplitude differences between 15° versus 45° stimuli. Distinct GBA components were found for each sample stimulus in different sensors over parieto-occipital cortex contralateral to the side of stimulation peaking during the middle 200–300 ms of the delay phase. The differentiation between "preferred" and "nonpreferred" stimuli during the final 100 ms of the delay phase correlated with task performance. These findings suggest that the observed GBA components reflect the activity of distinct networks tuned to spatial sound features which contribute to the maintenance of task-relevant information in short-term memory.
Cytotoxic T-lymphocytes play an important role in the protection against viral infections, which they detect through the recognition of virus-derived peptides, presented in the context of MHC class I molecules at the surface of the infected cell. The transporter associated with antigen processing (TAP) plays an essential role in MHC class I–restricted antigen presentation, as TAP imports peptides into the ER, where peptide loading of MHC class I molecules takes place. In this study, the UL49.5 proteins of the varicelloviruses bovine herpesvirus 1 (BHV-1), pseudorabies virus (PRV), and equine herpesvirus 1 and 4 (EHV-1 and EHV-4) are characterized as members of a novel class of viral immune evasion proteins. These UL49.5 proteins interfere with MHC class I antigen presentation by blocking the supply of antigenic peptides through inhibition of TAP. BHV-1, PRV, and EHV-1 recombinant viruses lacking UL49.5 no longer interfere with peptide transport. Combined with the observation that the individually expressed UL49.5 proteins block TAP as well, these data indicate that UL49.5 is the viral factor that is both necessary and sufficient to abolish TAP function during productive infection by these viruses. The mechanisms through which the UL49.5 proteins of BHV-1, PRV, EHV-1, and EHV-4 block TAP exhibit surprising diversity. BHV-1 UL49.5 targets TAP for proteasomal degradation, whereas EHV-1 and EHV-4 UL49.5 interfere with the binding of ATP to TAP. In contrast, TAP stability and ATP recruitment are not affected by PRV UL49.5, although it has the capacity to arrest the peptide transporter in a translocation-incompetent state, a property shared with the BHV-1 and EHV-1 UL49.5. Taken together, these results classify the UL49.5 gene products of BHV-1, PRV, EHV-1, and EHV-4 as members of a novel family of viral immune evasion proteins, inhibiting TAP through a variety of mechanisms.
The degradation of the poly(A) tail is crucial for posttranscriptional gene regulation and for quality control of mRNA. Poly(A)-specific ribonuclease (PARN) is one of the major mammalian 3’ specific exo-ribonucleases involved in the degradation of the mRNA poly(A) tail, and it is also involved in the regulation of translation in early embryonic development. The interaction between PARN and the m7GpppG cap of mRNA plays a key role in stimulating the rate of deadenylation. Here we report the solution structures of the cap-binding domain of mouse PARN with and without the m7GpppG cap analog. The structure of the cap-binding domain adopts the RNA recognition motif (RRM) with a characteristic a-helical extension at its C-terminus, which covers the b-sheet surface (hereafter referred to as PARN RRM). In the complex structure of PARN RRM with the cap analog, the base of the N7-methyl guanosine (m7G) of the cap analog stacks with the solvent-exposed aromatic side chain of the distinctive tryptophan residue 468, located at the C-terminal end of the second b-strand. These unique structural features in PARN RRM reveal a novel cap-binding mode, which is distinct from the nucleotide recognition mode of the canonical RRM domains.
We performed a bioinformatical analysis of protein export elements (PEXEL) in the putative proteome of the malaria parasite Plasmodium falciparum. A protein family-specific conservation of physicochemical residue profiles was found for PEXEL-flanking sequence regions. We demonstrate that the family members can be clustered based on the flanking regions only and display characteristic hydrophobicity patterns. This raises the possibility that the flanking regions may contain additional information for a family-specific role of PEXEL. We further show that signal peptide cleavage results in a positional alignment of PEXEL from both proteins with, and without, a signal peptide.