An ecological overview of seven years investigation of Braconidae, a family of parasitoid wasps (Hymenoptera: Ichneumonoidea) and a tyrpho-classification of parasitoids in peatbog areas of South Bohemia, Czech Republic are given. A total of 350 species were recorded in investigated sites, but only five tyrphobionts (1.4%) are proposed: Microchelonus basalis, Microchelonus koponeni, Coloneura ate, Coloneura danica and Myiocephalus niger. All of these species have a boreal-alpine distribution that, in Central Europe, is associated only with peatbogs. Tyrphophilous behaviour is seen in at least four (1.1%) species: Microchelonus pedator, Microchelonus subpedator, Microchelonus karadagi and Microchelonus gravenhorstii; however, a number of other braconids prefer peatbogs because they were more frequently encountered within, rather than outside, the bog habitat. The rest of the braconids (342 species, 97.5%) are tyrphoneutrals, many of them being eurytopic components of various habitats throughout their current ranges. Lists of tyrphobiontic braconids and a brief commentary on species composition, distributional picture of actual ranges, and parasitoid association to bog landscape are provided. Being true refugial habitats for populations in an ever-changing world, peatbogs play a significant role in harboring insect communities.
Island-endemic species can be particularly vulnerable to alien invasion. There are many examples of introduced insect parasitoids having a serious impact on endemic butterflies and moths. In 2006, a population of parasitic wasps was reared from larvae of the Canary Island Large White butterfly (Pieris cheiranthi), an endemic inhabitant of laurel forests unique to the Canary Islands of Macaronesia. Parasitoids were tentatively identified as Cotesia glomerata (Braconidae, Hymenoptera), a widely introduced agricultural bioagent. To corroborate this finding we sequenced 632 bp of mitochondrial cox1 from parasitoids and hosts from La Palma and from the native range of C. glomerata in continental Europe. These were combined with GenBank sequences and a character-based, phylogenetic approach was used to assess the species status of parasites and hosts. The La Palma parasitoid could unambiguously be assigned to C. glomerata under the criterion of diagnosibility with corroboration from multiple lines of evidence (DNA, morphology). We suggest that this opportunistic, non-native parasitoid wasp will be a threat to P. cheiranthi and other endemic Canarian butterflies. Parasitoid populations were recorded from P. cheiranthi in marginal forest habitats but not in central forest areas, suggesting that comprehensive habitat conservation of the Canarian laurel forests could prevent penetration of the alien parasitoid wasps and subsequent mortality of endemic butterfly populations.
Central European isolated peat bog habitats (paleorefugia) harbour a unique diversity of cold adapted plants and insects. Stenotopic Lepidoptera that feed on the most typical relict bog plant Vaccinium uliginosum were extensively parasitized by families Braconidae and Ichneumonidae. Contrary to their highly specific hosts, all associated parasitoids do not seem to be selective. The most conservationally important peat bog tyrphobiontic fauna of Lepidoptera (e.g. Colias palaeno or Anarta cordigera as model examples) is always connected with generalist-parasitoids. In a disturbed peat bog and under impact of biological invasions, the penetration of alien biota (including insects) is obvious. An example is a weedy plant Frangula alnus, its obligatorily associated 'weedy' butterfly Gonepteryx rhamni, and two highly host specialized but habitat-generalist parasitoids of the genus Cotesia. Such food chains seem to be characteristic of peat bog disturbance. Host specificity of parasitoids is typical for widely distributed, easy available and abundant hosts, but paleorefugial, local and rare host-Lepidoptera seem to be associated with parasitoids of relatively wide ecological amplitude.
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