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从复杂微生物群落中组装无尾线虫的基因组。

Genome Assembly of the Nematode Rhabditoides Inermis From a Complex Microbial Community.

机构信息

Department for Integrative Evolutionary Biology, Max Planck Institute for Biology, Tübingen 72076, Germany.

出版信息

Genome Biol Evol. 2024 Nov 1;16(11). doi: 10.1093/gbe/evae230.

Abstract

Free-living nematodes such as Caenorhabditis elegans and Pristionchus pacificus are powerful model systems for linking specific traits to their underlying genetic basis. To trace the evolutionary history of specific traits or genes, a robust phylogenomic framework is indispensable. In the context of the nematode family Diplogastridae to which P. pacificus belongs, the identity of a sister group has long been debated. In this work, we generated a pseudochromosome level genome assembly of the nematode Rhabditoides inermis, which has previously been proposed as the sister taxon. The genome was assembled from a complex microbial community that is stably associated with R. inermis isolates and that consists of multiple bacteria and a fungus, which we identified as a strain of Vanrija albida. The R. inermis genome spans 173.5Mb that are largely assembled into five pseudochromosomes. This chromosomal configuration likely arose from two recent fusions of different Nigon elements. Phylogenomic analysis did not support a sister group relationship between R. inermis and diplogastrids, but rather supports a sister group relationship between the monophyletic Diplogastridae and a group of genera of Rhabditidae including C. elegans and R. inermis. Thus, our work addresses for the first time the long lasting question about the sister group to diplogastrids at the phylogenomic level and provides with the genomes of R. inermis and the associated fungus V. albida valuable resources for future genomic comparisons.

摘要

自由生活的线虫,如秀丽隐杆线虫和太平洋真涡虫,是将特定特征与其潜在遗传基础联系起来的强大模型系统。为了追踪特定特征或基因的进化历史,一个强大的系统发生基因组框架是不可或缺的。在真涡虫科(Diplogastridae)这根线虫家族中,太平洋真涡虫所属的一个姐妹群的身份长期以来一直存在争议。在这项工作中,我们生成了一种名为 Rhabditoides inermis 的线虫的伪染色体水平基因组组装,此前它被提议为姐妹分类群。该基因组是从与 R. inermis 分离株稳定相关的复杂微生物群落中组装的,该群落由多种细菌和一种真菌组成,我们将其鉴定为 Vanrija albida 的一个菌株。R. inermis 基因组跨越 173.5Mb,主要组装成五个伪染色体。这种染色体构型可能是由两个不同 Nigon 元件的最近融合产生的。系统发生基因组分析不支持 R. inermis 和真涡虫之间的姐妹群关系,而是支持单系真涡虫科和包括秀丽隐杆线虫和 R. inermis 在内的 Rhabditidae 属群的一个姐妹群关系。因此,我们的工作首次在系统发生基因组水平上解决了真涡虫科的姐妹群长期存在的问题,并为未来的基因组比较提供了 R. inermis 和相关真菌 V. albida 的基因组资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3452/11542624/be32442fe4e9/evae230f1.jpg

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