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从一种新的两代方法看寄主转换模拟对群居性外寄生蜂平腹小蜂适应性的影响。

Effect of host switching simulation on the fitness of the gregarious parasitoid Anaphes flavipes from a novel two-generation approach.

机构信息

Department of Plant Protection, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Kamýcká 129, 165 00, Prague 6-Suchdol, Czech Republic.

Department of Zoology, Faculty of Science, Charles University, Viničná 7, 128 43, Prague 2, Czech Republic.

出版信息

Sci Rep. 2021 Sep 30;11(1):19473. doi: 10.1038/s41598-021-98393-y.

Abstract

Herbivorous insects can escape the strong pressure of parasitoids by switching to feeding on new host plants. Parasitoids can adapt to this change but at the cost of changing their preferences and performance. For gregarious parasitoids, fitness changes are not always observable in the F1 generation but only in the F2 generation. Here, with the model species and gregarious parasitoid Anaphes flavipes, we examined fitness changes in the F1 generation under pressure from the simulation of host switching, and by a new two-generation approach, we determined the impact of these changes on fitness in the F2 generation. We showed that the parasitoid preference for host plants depends on hatched or oviposited learning in relation to the possibility of parasitoid decisions between different host plants. Interestingly, we showed that after simulation of parasitoids following host switching, in the new environment of a fictitious host plant, parasitoids reduced the fictitious host. At the same time, parasitoids also reduced fertility because in fictitious hosts, they are not able to complete larval development. However, from a two-generation approach, the distribution of parasitoid offspring into both native and fictitious hosts caused lower parasitoid clutch size in native hosts and higher individual offspring fertility in the F2 generation.

摘要

食草昆虫可以通过转而食用新的宿主植物来逃避寄生蜂的强烈压力。寄生蜂可以适应这种变化,但代价是改变它们的偏好和性能。对于群居寄生蜂来说,适应的变化在 F1 代中并不总是可见,而只在 F2 代中可见。在这里,我们使用模型物种和群居寄生蜂 Anaphes flavipes,在模拟宿主转换的压力下,检查了 F1 代中的适应变化,并通过一种新的两代方法,确定了这些变化对 F2 代适应的影响。我们表明,寄生蜂对宿主植物的偏好取决于孵化或产卵学习与寄生蜂在不同宿主植物之间做出决定的可能性之间的关系。有趣的是,我们表明,在模拟寄生蜂跟随宿主转换后,在虚构宿主植物的新环境中,寄生蜂会减少虚构宿主的数量。同时,寄生蜂也降低了生殖力,因为在虚构的宿主中,它们无法完成幼虫发育。然而,从两代方法来看,寄生蜂后代在本地和虚构宿主之间的分布导致本地宿主中的寄生蜂产卵量减少,而 F2 代中个体后代的生殖力增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/619e/8484349/452a7f0dd47b/41598_2021_98393_Fig1_HTML.jpg

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