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秀丽隐杆线虫及其他线虫基因得失的比较基因组学

Comparative Genomics of Gene Loss and Gain in Caenorhabditis and Other Nematodes.

作者信息

Rödelsperger Christian

机构信息

Department for Evolutionary Biology, Max Planck Institute for Developmental Biology, Spemannstr. 35, 72076, Tübingen, Germany.

出版信息

Methods Mol Biol. 2018;1704:419-432. doi: 10.1007/978-1-4939-7463-4_16.

Abstract

Nematodes, such as Caenorhabditis elegans, form one of the most species-rich animal phyla. By now more than 30 nematode genomes have been published allowing for comparative genomic analyses at various different time-scales. The majority of a nematode's gene repertoire is represented by either duplicated or so-called orphan genes of unknown origin. This indicates the importance of mechanisms that generate new genes during the course of evolution. While it is certain that nematodes have acquired genes by horizontal gene transfer from various donors, this process only explains a small portion of the nematode gene content. As evolutionary genomic analyses strongly support that most orphan genes are indeed protein-coding, future studies will have to decide, whether they are result from extreme divergence or evolved de novo from previously noncoding sequences. In this contribution, I summarize several studies investigating gene loss and gain in nematodes and discuss the strengths and weaknesses of individual approaches and datasets. These approaches can be used to ask nematode-specific questions such as associated with the evolution of parasitism or with switches in mating systems, but also can complement studies in other animal phyla like vertebrates and insects to broaden our general view on genome evolution.

摘要

线虫,如秀丽隐杆线虫,是物种最为丰富的动物门类之一。到目前为止,已发表了30多个线虫基因组,这使得在不同时间尺度上进行比较基因组分析成为可能。线虫的大多数基因库由重复基因或来源不明的所谓孤儿基因组成。这表明了进化过程中产生新基因的机制的重要性。虽然可以确定线虫通过水平基因转移从各种供体获得了基因,但这一过程仅解释了线虫基因含量的一小部分。由于进化基因组分析有力地支持大多数孤儿基因确实是蛋白质编码基因,未来的研究将不得不确定它们是极端分化的结果,还是从以前的非编码序列从头进化而来。在本论文中,我总结了几项研究线虫基因丢失和获得情况的研究,并讨论了个别方法和数据集的优缺点。这些方法可用于提出线虫特有的问题,如与寄生进化或交配系统转换相关的问题,也可补充对其他动物门类(如脊椎动物和昆虫)的研究,以拓宽我们对基因组进化的总体认识。

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