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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Housing microbial symbionts: evolutionary origins and diversification of symbiotic organs in animals
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Housing microbial symbionts: evolutionary origins and diversification of symbiotic organs in animals

机译:住房微生物共生:动物中的进化起源和动物共生器官的多样化

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In many animal hosts, microbial symbionts are housed within specialized structures known as symbiotic organs, but the evolutionary origins of these structures have rarely been investigated. Here, I adopt an evolutionary developmental (evo-devo) approach, specifically to apply knowledge of the development of symbiotic organs to gain insights into their evolutionary origins and diversification. In particular, host genetic changes associated with evolution of symbiotic organs can be inferred from studies to identify the host genes that orchestrate the development of symbiotic organs, recognizing that microbial products may also play a key role in triggering the developmental programme in some associations. These studies may also reveal whether higher animal taxonomic groups (order, class, phylum, etc.) possess a common genetic regulatory network for symbiosis that is latent in taxa lacking symbiotic organs, and activated at the origination of symbiosis in different host lineages. In this way, apparent instances of convergent evolution of symbiotic organs may be homologous in terms of a common genetic blueprint for symbiosis. Advances in genetic technologies, including reverse genetic tools and genome editing, will facilitate the application of evo-devo approaches to investigate the evolution of symbiotic organs in animals. This article is part of the theme issue 'The role of the microbiome in host evolution'.
机译:在许多动物宿主中,微生物共生容纳在称为共生器官的专用结构内,但这些结构的进化起源很少被研究。在这里,我采用了进化发展(Evo-Devo)方法,专门针对共生器官的发展了解,以获得对其进化起源和多样化的见解。特别地,可以从研究中推断出与共生器官的演化相关的宿主遗传变化,以鉴定协调共生器官的发展的宿主基因,认识到微生物产品也可能在触发某些协会中的发展方案方面发挥关键作用。这些研究还可以揭示更高的动物分类群(秩序,类,场,门等)是否具有共同的遗传调节网络,用于缺乏共生器官的分类群,并在不同宿主谱系中的起源激活。以这种方式,在共生的共生遗传蓝图方面,共生器官的聚合演化的明显实例可能是同源的。遗传技术的进展,包括逆向遗传工具和基因组编辑,将促进Evo-Devo方法的应用,探讨动物中共生器官的演变。本文是主题问题的一部分问题“微生物组在宿主演变中的作用”。

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