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Molecular Interrogation of the Feeding Behaviour of Field Captured Individual Insects for Interpretation of Multiple Host Plant Use

机译:现场取食行为的分子审问被俘个别昆虫为多台主机使用植物解读

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摘要

The way in which herbivorous insect individuals use multiple host species is difficult to quantify under field conditions, but critical to understanding the evolutionary processes underpinning insect–host plant relationships. In this study we developed a novel approach to understanding the host plant interactions of the green mirid, Creontiades dilutus, a highly motile heteropteran bug that has been associated with many plant species. We combine quantified sampling of the insect across its various host plant species within particular sites and a molecular comparison between the insects' gut contents and available host plants. This approach allows inferences to be made as to the plants fed upon by individual insects in the field. Quantified sampling shows that this “generalist” species is consistently more abundant on two species in the genus Cullen (Fabaceae), its primary host species, than on any other of its numerous listed hosts. The chloroplast intergenic sequences reveal that C. dilutus frequently feeds on plants additional to the one from which it was collected, even when individuals were sampled from the primary host species. These data may be reconciled by viewing multiple host use in this species as an adaptation to survive spatiotemporally ephemeral habitats. The methodological framework developed here provides a basis from which new insights into the feeding behaviour and host plant relationships of herbivorous insects can be derived, which will benefit not only ecological interpretation but also our understanding of the evolution of these relationships.
机译:食草昆虫个体使用多种寄主物种的方式在田间条件下难以量化,但对于理解支撑昆虫与寄主植物关系的进化过程至关重要。在这项研究中,我们开发了一种新颖的方法来了解绿色灵丹科植物Creontiades dilutus的宿主植物相互作用,Croitiades dilutus是一种能动性很高的异翅类昆虫,已与许多植物物种相关。我们将昆虫在特定站点内各种寄主植物物种的定量采样与昆虫肠道内容物和可用寄主植物之间的分子比较结合起来。这种方法可以推断出田间单个昆虫摄食的植物。定量抽样显示,该“属类”物种在库伦(Fabaceae)属的两个物种(其主要寄主物种)上始终比其众多其他所列宿主中的其他物种更为丰富。叶绿体基因间序列显示,即使从主要宿主物种中取样个体,稀有梭状芽胞杆菌也经常以植物为食。通过查看该物种中的多种宿主用途以适应在时空短暂的生境中生存,可以对这些数据进行核对。此处开发的方法框架提供了一个基础,可以从中得出对草食性昆虫的摄食行为和寄主植物关系的新见解,这不仅将有利于生态学解释,而且将有益于我们对这些关系的演变的理解。

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  • 总页数 7
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