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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Entomologia experimentalis et applicata 75 (1995), S. 159-164 
    ISSN: 1570-7458
    Keywords: Epirrita autumnata ; Lepidoptera ; Geometridae ; (Z,Z,Z)-1,3,6,9-heneicosatetraene ; sex pheromone ; GC-EAD ; chemical synthesis ; field trapping
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract (Z,Z,Z)-1,3,6,9-Heneicosatetraene was identified as a sex pheromone component ofEpirrita autumnata (Borkhausen), (Lepidoptera: Geometridae). Gas chromatography coupled with electroantennographic detection revealed one active peak from female pheromone gland extracts. The chemical identification of the compound was based on gas chromatography-mass spectrometry, chemical micro-reactions and unambiguous synthesis. In a field test, a rubber septum loaded with 3000 μg of this compound showed highest attraction of maleE. autumnata moths compared to lower doses and the control. The attraction of males to a 300 μg bait was equivalent to that obtained using live virgin females.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1437-5613
    Keywords: Key words Cyclic population dynamics ; Host plant quality ; Inducible resistance ; Parasitism ; Predation ; Winter mortality
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Creating multiyear cycles in population density demands, in traditional models, causal factors that operate on local populations in a density-dependent way with time lags. However, cycles of the geometrid Epirrita autumnata in northern Europe may be regional, not local; i.e., successive outbreaks occur in different localities. We review possible causes of cycles of E. autumnata under both local and regional scenarios, including large-scale synchrony. Assuming cyclicity is a local phenomenon, individual populations of E. autumnata display peaks but populations all over the outbreak range fluctuate in synchrony. This concept assumes that the peaks at most localities are so low that they do not lead to visible defoliation and easily remain unnoticed. In this scenario, populations are able to start recovery a few years after the crash, i.e., at the time of the mitigation of detrimental delayed density-dependent factors, such as delayed inducible resistance of the host plant or parasitism. In that case, the same factors that lead to crashes also explain the periodicity of cyclic fluctuations. According to the regional cyclicity scenario, different factors can be important in different phases of the cycle. The key is to identify the factors that tend to produce outbreaks with a periodicity of about 10 years. Initiation of the increase phase seems to coincide with maxima in sunspot activity, but causal connections remain unclear. Climatic factor(s) associated with the solar cycle could contribute to the large-scale geographic synchrony.
    Type of Medium: Electronic Resource
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