Mitteilungen der Deutschen Gesellschaft für Allgemeine und Angewandte Entomologie, Band 16 (2008)
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Taxonomic, systematic, and biogeography knowledge on the Palaearctic species of Pristaulacus Kieffer 1900 is summarized. Twenty-one valid species are recognized. The most important morphological characters taken into consideration are: shape, cuticular sculpture, and pubescence of head; index length/width of antennomeres; shape, sculpture and cuticular processes of mesosoma, especially of pronotum and mesonotum; number and shape of teeth on claw; shape and sculpture of metasoma; ovipositor length compared with wing and antenna length; and colour pattern (e.g., the dark spots on fore wing, and the colour of hind tarsus). Several characters of the genital capsule of the male were proved to be very useful for species identification, e.g., the shape of the paramere, volsella, cuspis, and digitus. Based on analysis of twenty-five morphological characters, eight species groups are recognized. The critical revision of the chorological data, including many new records, introduced relevant changes of the geographical distribution pattern of most species. Twelve species are restricted to the western part of the Palaearctic Region and eight species are restricted to its eastern part; only one species, P. gibbator, has a wider distribution, including both western and eastern parts of the Palaearctics.
Es wird die Verschiedenheit der einzelnen Larvenstadien hervorgehoben, die in der Hypermetamorphose ihren Gipfel erreicht. Am Beispiel der Coleoptera wird der Stand der taxonomischen Kenntnisse erörtert und in seiner z.T. krassen Differenzierung erläutert. Es werden Möglichkeiten der Determination von Larven vorgestellt. Einige Ordnungen der Holometabola können auch durch apomorphe Merkmale der Larven als Monophyla wahrscheinlich gemacht werden, z. B. Neuroptera, Trichoptera und Siphonaptera, bei anderen gestatten dies die gegenwärtigen Kenntnisse nicht, z. B. Coleoptera und Hymenoptera. Auch die Monophylie subordinierter Taxa kann anhand von abgeleiteten Merkmalen der Larven dargestellt werden, wie am Beispiel der Familie Scirtidae (Coleoptera) erläutert wird. Es wird darauf hingewiesen, dass Inkongruenzen von Larval- und Imaginalsystemen wertvolle Hinweise auf Forschungsbedarf zur Auflösung paraphyletischer Gruppen liefern können. Die Bedeutung der Larven für die Taxonomie, Systematik und Phylogenetik ist sehr groß, und es wird eine verstärkte Aufmerksamkeit zur Erforschung der „Holomorphe“ im Sinne Hennigs angemahnt.
Rising atmospheric CO2 is regarded as the main driver of global warming (Crowley, 2000). While temperature changes directly affect plants and animals (Root et al., 2003; Parmesan, 2006), the effects of CO2 on herbivores are mediated through changes in nutrient quality. Elevated concentrations of atmospheric CO2 are likely to increase photosynthetic activity and thus provide more C-based compounds which may alter plant chemical profiles and plant–herbivore–natural enemy interactions. There are several scenarios how insects will react when confronted with a different food quality. A nutrient poor diet, induced by nitrogen dilution, may result in compensatory feeding with either no adverse effects on insect performance or with negative effects on insect growth due to low digestibility of plant structural compounds (e.g. lignin) or toxic effects of secondary metabolites (e.g. tannins). Here we present data from on-tree feeding trials with larvae of the generalist herbivore Lymantria dispar and one of its natural enemies, the hymenopteran endoparasitoid Glyptapanteles liparidis, studied in 2005. The experiments were conducted at the Swiss free-air CO2 enrichment (FACE) site near Basel, in an approximately 80-100-yr-old, mixed-species forest. The data link changes in foliar chemistry of three tree species (Quercus petraea, Fagus sylvatica, Carpinus betulus) exposed to 540 ppm CO2 with herbivore and parasitoid performance.
Arthropoden fanden in Tirol schon früh in Wissenschaft und Lehre Berücksichtigung und bis heute eine kontinuierliche Schule. Die Entomo-Arachnologie wurde im Wesentlichen von der Leopold-Franzens-Universität und dem Landesmuseum Ferdinandeum in Innsbruck, den Klöstern und Gymnasien sowie vom Innsbrucker Entomologenverein und dem Naturwissenschaftlich-medizinischen Verein in Innsbruck getragen. Der folgende Streifzug durch die entomologische Vergangenheit von Tirol konzentriert sich auf die ältere Periode, während die rezenten Repräsentanten im Rückblick selektiv und weniger ausführlich erfasst sind. Wir folgen dabei der derzeit liberalen Auslegung der Entomologie als Synonym mit einer sensu latissimo Arthropodenkunde.