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宏基因组学和结构化非编码RNA分析揭示土壤细菌的初期同域物种形成与进化

Incipient Sympatric Speciation and Evolution of Soil Bacteria Revealed by Metagenomic and Structured Non-Coding RNAs Analysis.

作者信息

Mukherjee Sumit, Kuang Zhuoran, Ghosh Samrat, Detroja Rajesh, Carmi Gon, Tripathy Sucheta, Barash Danny, Frenkel-Morgenstern Milana, Nevo Eviatar, Li Kexin

机构信息

State Key Laboratory of Grassland Agro-Ecosystem, College of Ecology, Lanzhou University, Lanzhou 730050, China.

Department of Computer Science, Ben-Gurion University, Beer-Sheva 8410501, Israel.

出版信息

Biology (Basel). 2022 Jul 26;11(8):1110. doi: 10.3390/biology11081110.

Abstract

Soil bacteria respond rapidly to changes in new environmental conditions. For adaptation to the new environment, they could mutate their genome, which impacts the alternation of the functional and regulatory landscape. Sometimes, these genetic and ecological changes may drive the bacterial evolution and sympatric speciation. Although sympatric speciation has been controversial since Darwin suggested it in 1859, there are several strong theoretical or empirical evidences to support it. Sympatric speciation associated with soil bacteria remains largely unexplored. Here, we provide potential evidence of sympatric speciation of soil bacteria by comparison of metagenomics from two sharply contrasting abutting divergence rock and soil types (Senonian chalk and its rendzina soil, and abutting Pleistocene basalt rock and basalt soil). We identified several bacterial species with significant genetic differences in the same species between the two soil types and ecologies. We show that the bacterial community composition has significantly diverged between the two soils; correspondingly, their functions were differentiated in order to adapt to the local ecological stresses. The ecologies, such as water availability and pH value, shaped the adaptation and speciation of soil bacteria revealed by the clear-cut genetic divergence. Furthermore, by a novel analysis scheme of riboswitches, we highlight significant differences in structured non-coding RNAs between the soil bacteria from two divergence soil types, which could be an important driver for functional adaptation. Our study provides new insight into the evolutionary divergence and incipient sympatric speciation of soil bacteria under microclimatic ecological differences.

摘要

土壤细菌对新环境条件的变化反应迅速。为了适应新环境,它们可能会使基因组发生突变,这会影响功能和调控格局的改变。有时,这些遗传和生态变化可能会推动细菌进化和同域物种形成。尽管自1859年达尔文提出同域物种形成以来一直存在争议,但有一些有力的理论或实证证据支持这一观点。与土壤细菌相关的同域物种形成在很大程度上仍未得到探索。在这里,我们通过比较两种截然不同的相邻分化岩石和土壤类型(晚白垩世白垩及其黑色石灰土,以及相邻的更新世玄武岩岩石和玄武岩土壤)的宏基因组学,提供了土壤细菌同域物种形成的潜在证据。我们在两种土壤类型和生态环境中的同一物种内鉴定出了几种具有显著遗传差异的细菌物种。我们表明,两种土壤中的细菌群落组成已经显著分化;相应地,它们的功能也有所不同,以适应当地的生态压力。诸如水分有效性和pH值等生态环境塑造了土壤细菌的适应性和物种形成,这通过明显的遗传分化得以体现。此外,通过一种新颖的核糖开关分析方案,我们突出了两种分化土壤类型的土壤细菌之间结构化非编码RNA的显著差异,这可能是功能适应的一个重要驱动因素。我们的研究为微气候生态差异下土壤细菌的进化分化和初始同域物种形成提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e87/9331176/6aee6dc2aff6/biology-11-01110-g001.jpg

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