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44种早期分化真菌中的跨界水平基因转移增强了它们的代谢、适应和免疫能力。

The interkingdom horizontal gene transfer in 44 early diverging fungi boosted their metabolic, adaptive, and immune capabilities.

作者信息

Ciach Michał Aleksander, Pawłowska Julia, Górecki Paweł, Muszewska Anna

机构信息

Faculty of Mathematics, Informatics and Mechanics, University of Warsaw, Warsaw, Poland.

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Evol Lett. 2024 Mar 5;8(4):526-538. doi: 10.1093/evlett/qrae009. eCollection 2024 Aug.

Abstract

Numerous studies have been devoted to individual cases of horizontally acquired genes in fungi. It has been shown that such genes expand the hosts' metabolic capabilities and contribute to their adaptations as parasites or symbionts. Some studies have provided an extensive characterization of the horizontal gene transfer (HGT) in Dikarya. However, in the early diverging fungi (EDF), a similar characterization is still missing. In order to fill this gap, we have designed a computational pipeline to obtain a statistical sample of reliable HGT events with a low false discovery rate. We have analyzed 44 EDF proteomes and identified 829 xenologs in fungi ranging from to . We have identified several patterns and statistical properties of EDF HGT. We show that HGT is driven by bursts of gene exchange and duplication, resulting in highly divergent numbers and molecular properties of xenologs between fungal lineages. Ancestrally aquatic fungi are generally more likely to acquire foreign genetic material than terrestrial ones. Endosymbiotic bacteria can be a source of useful xenologs, as exemplified by NOD-like receptors transferred to . Closely related fungi have similar rates of intronization of xenologs. Posttransfer gene fusions and losses of protein domains are common and may influence the encoded proteins' functions. We argue that there is no universal approach for HGT identification and inter- and intra-kingdom transfers require tailored identification methods. Our results help to better understand how and to what extent HGT has shaped the metabolic, adaptive, and immune capabilities of fungi.

摘要

许多研究致力于真菌中水平获得基因的个别案例。研究表明,此类基因扩展了宿主的代谢能力,并有助于它们作为寄生虫或共生体的适应过程。一些研究对双核菌门中的水平基因转移(HGT)进行了广泛的特征描述。然而,在早期分化真菌(EDF)中,类似的特征描述仍然缺失。为了填补这一空白,我们设计了一个计算流程,以获得具有低错误发现率的可靠HGT事件的统计样本。我们分析了44个EDF蛋白质组,并在从……到……的真菌中鉴定出829个异同源基因。我们确定了EDF HGT的几种模式和统计特性。我们表明,HGT是由基因交换和复制的爆发驱动的,导致真菌谱系之间异同源基因的数量和分子特性高度不同。祖先为水生的真菌通常比陆生真菌更有可能获得外来遗传物质。内共生细菌可能是有用异同源基因的来源,如转移到……的NOD样受体所示。亲缘关系密切的真菌具有相似的异同源基因内含子化速率。转移后基因融合和蛋白质结构域的丢失很常见,可能会影响编码蛋白质的功能。我们认为,对于HGT的鉴定没有通用方法,跨王国和王国内部的转移需要量身定制的鉴定方法。我们的结果有助于更好地理解HGT如何以及在多大程度上塑造了真菌的代谢、适应和免疫能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e173/11291939/767520ddea27/qrae009_fig1.jpg

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