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随机性、决定性和偶然性塑造了内共生细菌的基因组进化。

Stochasticity, determinism, and contingency shape genome evolution of endosymbiotic bacteria.

机构信息

Center for Biological Data Science, Virginia Commonwealth University, Richmond, VA, US.

School of Biological Sciences, University of Utah, Salt Lake City, UT, US.

出版信息

Nat Commun. 2024 May 29;15(1):4571. doi: 10.1038/s41467-024-48784-2.

Abstract

Evolution results from the interaction of stochastic and deterministic processes that create a web of historical contingency, shaping gene content and organismal function. To understand the scope of this interaction, we examine the relative contributions of stochasticity, determinism, and contingency in shaping gene inactivation in 34 lineages of endosymbiotic bacteria, Sodalis, found in parasitic lice, Columbicola, that are independently undergoing genome degeneration. Here we show that the process of genome degeneration in this system is largely deterministic: genes involved in amino acid biosynthesis are lost while those involved in providing B-vitamins to the host are retained. In contrast, many genes encoding redundant functions, including components of the respiratory chain and DNA repair pathways, are subject to stochastic loss, yielding historical contingencies that constrain subsequent losses. Thus, while selection results in functional convergence between symbiont lineages, stochastic mutations initiate distinct evolutionary trajectories, generating diverse gene inventories that lack the functional redundancy typically found in free-living relatives.

摘要

进化是由随机和确定性过程相互作用的结果,这些过程形成了历史偶然性的网络,从而塑造了基因内容和生物体的功能。为了了解这种相互作用的范围,我们研究了随机性、决定性和偶然性在塑造内共生细菌 Sodalis 中基因失活的相对贡献,Sodalis 存在于寄生虱子 Columbicola 中,这些细菌正在独立进行基因组退化。在这里,我们表明,该系统中基因组退化的过程在很大程度上是确定性的:参与氨基酸生物合成的基因丢失,而那些为宿主提供 B 族维生素的基因保留。相比之下,许多编码冗余功能的基因,包括呼吸链和 DNA 修复途径的组成部分,受到随机丢失的影响,产生了限制后续丢失的历史偶然性。因此,虽然选择导致共生体谱系之间的功能趋同,但随机突变会引发不同的进化轨迹,产生缺乏通常在自由生活的近亲中发现的功能冗余的不同基因组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbb9/11137140/a015d4c8d3d9/41467_2024_48784_Fig1_HTML.jpg

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