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毒液通过基因重复进化。

Venom evolution through gene duplications.

机构信息

Faculty of Veterinary Sciences, University of Sydney, NSW 2006, Australia.

出版信息

Gene. 2012 Mar 15;496(1):1-7. doi: 10.1016/j.gene.2012.01.009. Epub 2012 Jan 18.

Abstract

Venoms contain highly complex mixtures that typically include hundreds of different components and have evolved independently in a diverse range of animals including platypuses, shrews, snakes, lizards, fishes, echinoderms, spiders, wasps, centipedes, sea snails, cephalopods, jellyfish and sea anemones. Many venom genes evolved through gene duplication. Gene duplication occurs in all domains of life and provides the raw substrate from which novel function arise. In this review, we focus on the role that gene duplication has played in the origin and diversification of venom genes. We outline the selective advantages of venom gene duplicates and the role that selection has played in the retention of these duplicates. We use toxin gene intermediates to help trace the evolution of toxin innovation. We also focus on other genomic processes, such as exon and domain duplications, in venom evolution. Finally, we conclude by focusing on the use of high throughput sequencing technology in understanding venom evolution.

摘要

毒液包含高度复杂的混合物,通常包含数百种不同的成分,并在包括鸭嘴兽、鼩鼱、蛇、蜥蜴、鱼类、棘皮动物、蜘蛛、黄蜂、蜈蚣、海蜗牛、头足类动物、水母和海葵在内的各种动物中独立进化。许多毒液基因是通过基因复制进化而来的。基因复制发生在生命的所有领域,为新功能的出现提供了原始底物。在这篇综述中,我们重点讨论了基因复制在毒液基因的起源和多样化中所起的作用。我们概述了毒液基因重复的选择优势,以及选择在保留这些重复中的作用。我们使用毒素基因中间产物来帮助追踪毒素创新的进化。我们还关注毒液进化中的其他基因组过程,如外显子和结构域重复。最后,我们重点介绍了高通量测序技术在理解毒液进化中的应用。

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