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首页> 外文期刊>Oikos: A Journal of Ecology >The joint effect of temperature and host species induce complex genotype-by-environment interactions in the larval parasitoid of Drosophila, Leptopilina heterotoma (Hymenoptera : Figitidae)
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The joint effect of temperature and host species induce complex genotype-by-environment interactions in the larval parasitoid of Drosophila, Leptopilina heterotoma (Hymenoptera : Figitidae)

机译:温度和寄主物种的共同作用在果蝇幼虫的副寄生虫,钩端螺旋体异形瘤(膜翅目:蝶形科)中诱导复杂的基因型-环境相互作用。

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摘要

Phenotypic plasticity and genotype-by-environment interactions are usually studied by testing environmental factors separately. However, several environmental factors may vary simultaneously across the geographic range of a species, and thus interact to drive phenotypic and genotypic evolution. Here, we address the question of the interaction between two environmental factors in the case of a koinobiont parasitoid of Drosophila, Leptopilina heterotoma (Hymenoptera: Figitidae). Using two allopatric parasitoid lines, we analysed the joint effect of developmental temperature and host species on two major fitness components (pre-imaginal survival and fecundity) of emerged parasitoids. Our results indicate that both environmental factors strongly interact to shape the parasitoid phenotype. Moreover, complex genotype-by-environment interactions appeared that can even invert the relative fitness of the two parasitoid lines.
机译:通常通过分别测试环境因素来研究表型可塑性和基因型-环境相互作用。但是,几个环境因素可能会在一个物种的地理范围内同时发生变化,从而相互作用以驱动表型和基因型进化。在这里,我们解决了在果蝇的拟生物体寄生类寄生虫,钩端螺旋体(Hymenoptera:Figitidae)的情况下两个环境因素之间相互作用的问题。我们使用两条异体寄生寄生线,分析了发育温度和寄主物种对出现的寄生寄生的两个主要适应度(假想存活率和繁殖力)的联合影响。我们的结果表明,两个环境因素都强烈相互作用,形成了拟寄生物表型。此外,出现了复杂的基因型与环境之间的相互作用,甚至可以反转两个寄生虫系的相对适应性。

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