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In the summers of 2006 and 2007 presumed bites of Cheiracanthium spiders triggered mass hysteria in Austria and some regions of Germany, including northern Saxonia. Here we report the first records of Cheiracanthium mildei L. Koch, 1864 from Saxony and new records of C. punctorium (Villers, 1789) from Saxony and Brandenburg. C. punctorium is probably a native species in southern Germany. It shows a moderate area expansion that could be driven by global warming. Further records in north-western Saxony are to be expected. By contrast, C. mildei has to be regarded an invasive alien species that has rapidly spread into Central Europe from the Mediterranean. Leipzig is the north-easternmost locality in Europe reached so far, a further 230 km away from Nuremberg, the leading edge in 2006. A number of records in different districts of Leipzig suggest that the species is already established in the town. We also report verified bites of both species. The mild to moderate symptoms are in accordance with recent literature reviews.
Anfang Mai 2004 wurden die ersten Anzeichen für die Einschleppung einer invasiven gebietsfremden Art, des baumschädigenden Bockkäfers Anoplophora glabripennis, nach Bayern festgestellt. Ein Ahornbaum am Rande des Parkplatzes vom Friedhof in Neukirchen am Inn (Gemeinde Neuburg am Inn, Landkreis Passau) wies verdächtige Symptome wie Fehlstellen in der Belaubung und kraterförmige Vertiefungen (Eiablagegruben?) in seiner Rinde auf. In unmittelbarer Nachbarschaft zum Friedhof liegt zudem eine Spedition, bei der Granitsteine und andere Granitwaren, teilweise aus dem asiatischen Raum, umgeschlagen bzw. auf Holzpaletten auf dem Betriebsgelände längere Zeit gelagert werden. Von diesem Ahorn wurden verdächtige Aststücke entnommen und im Labor an der Landesanstalt für Landwirtschaft (LfL) in Freising vorsichtig aufgespalten. Es fanden sich Bohrgänge und Bockkäferlarven, die jedoch eine unterschiedliche Größe aufwiesen. Die dorsale Chitinplatte der Vorderbrust hatte aber die typische burgzinnenartige Form, die als morphologisches Bestimmungskriterium von A. glabripennis in der Literatur angegeben wird (HOYER et al. 2003). Zur eindeutigen Absicherung wurden die Larven an das Bundesamt und Forschungszentrum für Wald (BFW) in Wien geschickt. Die Kolleginnen und Kollegen aus Österreich hatten aufgrund des aufsehenerregenden Fundes von A. glabripennis in Braunau am Inn (Erstfund für Europa, 2001) inzwischen die größte Erfahrung in der sicheren Diagnose des Asiatischen Laubholzbockkäfers. Da bereits damals eine erhöhte Gefahr des „unerlaubten Grenzübertrittes“ ins 300 m entfernte bayerische Simbach am Inn bestand, waren schon Kontakte geknüpft und es wurde auch kollegiale Hilfe angeboten. Die schnelle und unbürokratische Hilfe führte beim Verdachtsfall in Neukirchen am Inn zu einer raschen Aufklärung. Über eine DNA-Analyse mittels PCR konnte in Wien innerhalb kürzester Zeit bestätigt werden, dass es sich bei den Larven um A. glabripennis handelte. Mit hoher Wahrscheinlichkeit stand auch fest, dass der Einschleppungsweg über die asiatischen Holzpaletten der Spedition abgelaufen sein musste. Wenn man eine einjährige Generationsdauer des Käfers in Mitteleuropa voraussetzt, dann war das Einschleppungsjahr 2003. Da aber bei den meisten Wirtsbäumen inzwischen sogar ein zweijähriger Zyklus angedacht wird, war die Einschleppung vermutlich schon 2002.
Current globalization and technological progress has facilitated and increased the international trade of plant products worldwide and has promoted the long-distance movement of immobile sucking pests such as whiteflies attached on plants. Therefore, being able to compile and update information on intercepted insect pests will help to improve the inspection procedures, to detect, identify and mitigate the damage caused by exotic invasive pests. Records of whiteflies (Hemiptera: Aleyrodidae) intercepted on import plants from 2013 to 2021 in the Pest Information System (PIS) database of South Korea were analyzed. A total of 32 species belonging to 19 genera were intercepted on plants imported into South Korea from 20 countries, mostly located in the Oriental region including China. Brief diagnoses, an identification key and photographs of the 32 species intercepted on agricultural commodities and the countries from which they were detected on plants are given to assist in their identification. In addition, this information provides background data and scientific rationale for decisions regarding the management of whiteflies intercepted at the South Korean ports on imported plant products to prevent the introduction and establishment of exotic whiteflies into South Korea.
ZooBank registration. urn:lsid:zoobank.org:pub:D0889D43-F905-4CCD-A6A2-D4E376E5FC79
Seit 1890 wird die aus dem westlichen Nordamerika stammende Fabacee Lupinus polyphyllus Lindl. (Stauden-Lupine) in Deutschland beobachtet. Ihre großflächigsten Vorkommen in Deutschland finden sich derzeit in der Hohen Rhön im Gebiet Leitgraben/Elsgellen (407 ha: 1998 10,6 % Lupinus-Bedeckung). Dort werden fast alle Wiesen mit Auflagen des Bayerischen Vertragsnaturschutzprogramms bewirtschaftet. Dies bedeutet, zeitlich gestaffelte Pflegetermine zwischen 10. Juli und 31. Oktober (Abschluss der Pflegearbeiten), die den Zeitraum der Samenbildung von Lupinus vollständig erschließen. Nachweisbar ist, dass dort, wo innerhalb der Vertragsnaturschutzflächen Heugewinnung die primäre Motivation für die Nutzung ist - dies bedeutet Nutzung zum frühest möglichen Zeitpunkt - keine Lupinus-Etablierung nachweisbar ist! Neben rechtzeitiger Mahd ist Beweidung mit (Rhön-)Schafen geeignet, die Ver- und Ausbreitung von Lupinus einzudämmen. Auch dafür gilt, dass sie vor der Samenreife (ab Anfang Juli) von Lupinus durchzuführen ist, da reife Lupinus-Samen durch Schafe endozooisch ausgebreitet werden. Vegetationsaufnahmen von Kleinseggenrieden (Caricetum fuscae), Borstgrasrasen (Polygalu-Nardetum) und Goldhaferwiesen (Geranio-Trisetetum), in denen Lupinus polyphyllus mit höheren Deckungsgraden (> 25 %) vorkommt, belegen, dass die niedrigwüchsigen Arten der Krautschicht zurückgedrängt werden. Parallel dazu nehmen die kräftige Horste ausbildenden Gräser Poa chaixii und Deschampsia cespitosa zu. Eine Trennartengruppe mit den Ruderalarten Cerastium glomeratum, Galium aparine agg., Galeopsis tetrahit, Cirsium arvense und Urtica dioica charakterisiert die Lupinus-Fazies. Die Konkurrenzkraft der Dominanzbestände mit Lupinus erklärt sich über die Biomasseverteilung in Form einer umgekehrten Pyramide, die über Bestandeshöhe (zwischen 70 und 110 cm) und dichte Belaubung stark beschattend auf tiefere Vegetationsschichten (< 30 cm) wirkt, so dass deren Arten ausdünnen, wenn sie nicht die ausreichende Plastizität im Höhenwachstum besitzen, um mit Lupinus mitzuhalten. Auch andere Dominanzbestände-aufbauende Arten wie Impatiens glandulifera, Heracleum mantegazzianum und Reynoutria ssp. besitzen diese Eigenschaft und können aufgrund ihrer Wuchshöhe sogar die Funktion einer fehlenden Strauchschicht übernehmen.
Increasing trends in global trade make it extremely difficult to prevent the entry of all potential invasive species (IS). Establishing early detection strategies thus becomes an important part of the continuum used to reduce the introduction of invasive species. One part necessary to ensure the success of these strategies is the determination of priority survey areas based on invasion pressure. We used a pathway-centred conceptual model of pest invasion to address these questions: what role does global trade play in invasion pressure of plant ecosystems and how could an understanding of this role be used to enhance early detection strategies? We concluded that the relative level of invasion pressure for destination ecosystems can be influenced by the intensity of pathway usage (import volume and frequency), the number and type of pathways with a similar destination, and the number of different ecological regions that serve as the source for imports to the same destination. As these factors increase, pressure typically intensifies because of increasing a) propagule pressure, b) likelihood of transporting pests with higher intrinsic invasion potential, and c) likelihood of transporting pests into ecosystems with higher invasibility. We used maritime containerized imports of live plants into the contiguous U.S. as a case study to illustrate the practical implications of the model to determine hotspot areas of relative invasion pressure for agricultural and forest ecosystems (two ecosystems with high potential invasibility). Our results illustrated the importance of how a pathway-centred model could be used to highlight potential target areas for early detection strategies for IS. Many of the hotspots in agricultural and forest ecosystems were within major U.S. metropolitan areas. Invasion ecologists can utilize pathway-centred conceptual models to a) better understand the role of human-mediated pathways in pest establishment, b) enhance current methodologies for IS risk analysis, and c) develop strategies for IS early detection-rapid response programs.
The relevance of using various scoring schemes revealed by an impact assessment of feral mammals
(2018)
Impact scoring schemes are useful for identifying to what extent alien species cause damage. Quantifying the similarity and differences between impact scoring schemes can help determine how to optimally use these tools for policy decisions. Using feral mammals (including rats and mice) as a case study, environmental and socio-economic impacts were assessed using three schemes, namely the Generic Impact Scoring System (GISS), Environmental Impact Classification for Alien Taxa (EICAT) and Socio-Economic Impact Classification for Alien Taxa (SEICAT). The results show that socio-economic impacts scores differ between the respective schemes (GISS and SEICAT) possibly because they assess different aspects of social life and economy. This suggests that both scoring schemes should ideally be applied in concert to get a complete picture of socio-economic impacts. In contrast, environmental impact scores are correlated between GISS and EICAT assessments and this similarity is consistent over most mechanisms except for predation and ecosystems, suggesting that one scoring scheme is sufficient to capture all the environmental impacts. Furthermore, we present evidence for the island susceptibility hypothesis as impacts of feral mammals were found to be higher on islands compared to mainlands.
Members of the genus Centris Fabricius (Hymenoptera: Apoidea: Anthophila) constitute a significant component of the Neotropical (including insular) bee fauna, exhibiting high species richness, a moderate to large body size, and extensive interactions with various important plant groups. Females of most species possess specialized morphology adapted for collecting oils from flowers. This study documents the presence of the genus in Cuba, recognizing six species: C. aethiops Cresson, C. cornuta Cresson, C. fulviventris Cresson, C. poecila Lepeletier, C. taina Genaro and Breto new species, and C. tarsata F. Smith. Detailed information is provided for each species, encompassing a diagnosis, natural history, floral associations, seasonal occurrence, and distribution. Centris taina new species is described from Cuba, based on both sexes, which were previously misidentified as C. versicolor (Fabr.) for females and C. fasciatus F. Smith for males due to sexual dimorphism. Centris tarsata is reported as a new national record for Cuba, possibly introduced by humans from South America and now established and widely distributed across the entire island. A key to differentiate the Cuban species of Centris is presented.
ZooBank registration. urn:lsid:zoobank.org:pub:257916DF-2129-4694-876C-49C858046BF6
Dog-strangling vine (Vincetoxicum rossicum) is an exotic plant originating from Central and Eastern Europe that is becoming increasingly invasive in southern Ontario, Canada. Once established, it successfully displaces local native plant species but mechanisms behind this plant’s high competitive ability are not fully understood. It is unknown whether cooler temperatures will limit the range expansion of V. rossicum, which has demonstrated high tolerance for other environmental variables such as light and soil moisture. Furthermore, if V. rossicum can establish outside its current climatic limit it is unknown whether competition with native species can significantly contribute to reduce fitness and slow down invasion. We conducted an experiment to test the potential of V. rossicum to spread into northern areas of Ontario using a set of growth chambers to simulate southern and northern Ontario climatic temperature regimes. We also tested plant-plant competition by growing V. rossicum in pots with a highly abundant native species, Solidago canadensis, and comparing growth responses to plants grown alone. We found that the fitness of V. rossicum was not affected by the cooler climate despite a delay in reproductive phenology. Growing V. rossicum with S. canadensis caused a significant reduction in seedpod biomass of V. rossicum. However, we did not detect a temperature x competition interaction in spite of evidence for adaptation of S. canadensis to cooler temperature conditions. We conclude that the spread of V. rossicum north within the tested range is unlikely to be limited by climatic temperature but competition with an abundant native species may contribute to slow it down.
Invasive alien American bullfrog populations are commonly identified as a pernicious influence on the survival of native species due to their adaptability, proliferation and consequent ecological impacts through competition and predation. However, it has been difficult to determine conclusively their destructive influence due to the fragmentary and geographically dispersed nature of the historical database. An expanding meta-population of invasive American bullfrogs, Rana catesbeiana (= Lithobates catesbeianus), became established on southern Vancouver Island, British Columbia, Canada in the mid- to late 1980s. An on-going bullfrog control program begun in 2006 offered a unique opportunity to examine the stomach contents removed from 5,075 adult and juvenile bullfrogs collected from 60 sites throughout the active season (April to October). Of 15 classes of organisms identified in the diet, insects were numerically dominant, particularly social wasps and odonates (damselflies and dragonflies). Seasonality and site-specific habitat characteristics influenced prey occurrence and abundance. Native vertebrates in the diet included fish, frogs, salamanders, snakes, lizards, turtles, birds, and mammals, including some of conservation concern. Certain predators of bullfrog tadpoles and juveniles are commonly preyed upon by adult bullfrogs, thereby suppressing their effectiveness as biological checks to bullfrog population growth. Prey species with antipredator defences, such as wasps and sticklebacks, were sometimes eaten in abundance. Many prey species have some type of anti-predator defence, such as wasp stingers or stickleback spines, but there was no indication of conditioned avoidance to any of these. Results from this study reinforce the conclusion that, as an invasive alien, the American bullfrog is an opportunistic and seemingly unspecialized predator that has a uniquely large and complex ecological footprint both above and below the water surface.
This study introduces a simple generic model, the Generic Pest Forecast System (GPFS), for simulating the relative populations of non-indigenous arthropod pests in space and time. The model was designed to calculate the population index or relative population using hourly weather data as influenced by evelopmental rate, high and low temperature mortalities and wet soil moisture mortality. Each module contains biological parameters derived from controlled experiments. The hourly weather data used for the model inputs were obtained from the National Center of Environmental Prediction Climate Forecast System Reanalysis (NCEP-CFSR) at a 38 km spatial resolution. A combination of spatial and site-specific temporal data was used to validate the GPFS models. The oriental fruit fly, Bactrocera dorsalis (Hendel), was selected as a case study for this research because it is climatically driven and a major pest of fruit production. Results from the GPFS model were compared with field B. dorsalis survey data in three locations: 1) Bangalore, India; 2) Hawaii, USA; and 3) Wuhan, China. The GPFS captured the initial outbreaks and major population peaks of B. dorsalis reasonably well, although agreement varied between sites. An index of agreement test indicated that GPFS model simulations matched with field B. dorsalis observation data with a range between 0.50 and 0.94 (1.0 as a perfect match). Of the three locations, Wuhan showed the highest match between the observed and simulated B. dorsalis populations, with indices of agreement of 0.85. The site-specific temporal comparisons implied that the GPFS model is informative for prediction of relative abundance. Spatial results from the GPFS model were also compared with 161 published observations of B. dorsalis distribution, mostly from East Asia. Since parameters for pupal overwintering and survival were unknown from the literature, these were inferred from the distribution data. The study showed that GPFS has promise for estimating suitable areas for B. dorsalis establishment and potentially other non-indigenous pests. It is concluded that calibrating prediction models with both spatial and sitespecific temporal data may provide more robust and reliable results than validations with either data set alone.