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水平基因转移促进节肢动物食草性的进化。

Horizontal Gene Transfer Contributes to the Evolution of Arthropod Herbivory.

作者信息

Wybouw Nicky, Pauchet Yannick, Heckel David G, Van Leeuwen Thomas

机构信息

Department of Evolutionary Biology, Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, Amsterdam, the Netherlands

Department of Entomology, Max Planck Institute for Chemical Ecology, Jena, Germany.

出版信息

Genome Biol Evol. 2016 Jun 27;8(6):1785-801. doi: 10.1093/gbe/evw119.

Abstract

Within animals, evolutionary transition toward herbivory is severely limited by the hostile characteristics of plants. Arthropods have nonetheless counteracted many nutritional and defensive barriers imposed by plants and are currently considered as the most successful animal herbivores in terrestrial ecosystems. We gather a body of evidence showing that genomes of various plant feeding insects and mites possess genes whose presence can only be explained by horizontal gene transfer (HGT). HGT is the asexual transmission of genetic information between reproductively isolated species. Although HGT is known to have great adaptive significance in prokaryotes, its impact on eukaryotic evolution remains obscure. Here, we show that laterally transferred genes into arthropods underpin many adaptations to phytophagy, including efficient assimilation and detoxification of plant produced metabolites. Horizontally acquired genes and the traits they encode often functionally diversify within arthropod recipients, enabling the colonization of more host plant species and organs. We demonstrate that HGT can drive metazoan evolution by uncovering its prominent role in the adaptations of arthropods to exploit plants.

摘要

在动物界,向食草性的进化转变受到植物不利特性的严重限制。然而,节肢动物克服了植物施加的许多营养和防御障碍,目前被认为是陆地生态系统中最成功的动物食草者。我们收集了大量证据表明,各种以植物为食的昆虫和螨类的基因组拥有一些基因,其存在只能通过水平基因转移(HGT)来解释。HGT是生殖隔离物种之间遗传信息的无性传递。虽然已知HGT在原核生物中具有重大的适应性意义,但其对真核生物进化的影响仍不清楚。在这里,我们表明横向转移到节肢动物中的基因是许多对植食性适应的基础,包括对植物产生的代谢物的有效同化和解毒。水平获得的基因及其编码的性状在节肢动物受体中常常在功能上多样化,从而能够定殖更多的寄主植物物种和器官。我们通过揭示HGT在节肢动物利用植物的适应过程中的突出作用,证明了HGT可以推动后生动物的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0425/4943190/8b86b2527e2d/evw119f1p.jpg

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