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嗜热蓝藻的基因流与生态分歧。

Ecological Divergence with Gene Flow in a Thermophilic Cyanobacterium.

机构信息

Division of Biological Sciences, The University of Montana, 32 Campus Dr. #4824, Missoula, MT, 59812, USA.

出版信息

Microb Ecol. 2019 Jul;78(1):33-41. doi: 10.1007/s00248-018-1267-0. Epub 2018 Sep 28.

DOI:10.1007/s00248-018-1267-0
PMID:30267129
Abstract

How ecological diversity is maintained and distributed within populations is a longstanding question in microbial ecology. In the thermophilic cyanobacterium Synechococcus B', high observed levels of recombination are predicted to maintain ecological variation despite the simultaneous action of diverse selective pressures on different regions of the genome. To investigate ecological diversity in these bacteria, we directly isolated laboratory strains of Synechococcus B' from samples collected along the thermal gradients of two geothermal environments in Yellowstone National Park. Extensive recombination was evident for a multi-locus sequence data set, and, consequently, our sample did not exhibit the sequence clustering expected for distinct ecotypes evolving by periodic clonal selection. Evidence for local selective sweeps at specific loci suggests that sweeps may be common but that recombination is effective for maintaining diversity of unlinked genomic regions. Thermal performance for strain growth was positively associated with the temperature of the environment, indicating that Synechococcus B' populations consist of locally adapted ecological specialists that occupy specific thermal niches. Because this ecological differentiation is observed despite the absence of dispersal barriers among sites, we conclude that these bacteria may freely exchange much of the genome but that barriers to gene flow exist for loci under direct temperature selection.

摘要

在微生物生态学中,种群内的生态多样性是如何维持和分布的,这是一个长期存在的问题。在嗜热蓝细菌 Synechococcus B'中,尽管基因组的不同区域同时受到多种选择压力的作用,但观察到的高水平重组预计将维持生态变异。为了研究这些细菌的生态多样性,我们直接从黄石国家公园两个地热环境的样本中分离出实验室培养的 Synechococcus B'菌株。对多基因座序列数据集的广泛重组表明,我们的样本没有表现出由周期性克隆选择进化而来的不同生态型所预期的序列聚类。特定基因座上局部选择清扫的证据表明,清扫可能很常见,但重组对于维持不相关基因组区域的多样性是有效的。菌株生长的热性能与环境温度呈正相关,这表明 Synechococcus B'种群由局部适应特定热生境的生态专家组成。由于尽管在地点之间没有扩散障碍,但仍观察到这种生态分化,我们得出结论,这些细菌可能自由地交换大部分基因组,但存在直接受温度选择的基因流障碍的基因座。

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本文引用的文献

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Genome sequences of lower Great Lakes Microcystis sp. reveal strain-specific genes that are present and expressed in western Lake Erie blooms.大湖下游微囊藻属的基因组序列揭示了在伊利湖西部水华中存在并表达的菌株特异性基因。
PLoS One. 2017 Oct 11;12(10):e0183859. doi: 10.1371/journal.pone.0183859. eCollection 2017.
2
Evidence for microbial local adaptation in nature.自然界中微生物局部适应性的证据。
Mol Ecol. 2017 Apr;26(7):1860-1876. doi: 10.1111/mec.13958. Epub 2017 Jan 27.
3
Microbial diversity. Fine-scale diversity and extensive recombination in a quasisexual bacterial population occupying a broad niche.
杂交在蓝藻菌群的长期共同进化中打破了物种屏障。
bioRxiv. 2023 Jun 7:2023.06.06.543983. doi: 10.1101/2023.06.06.543983.
4
Distribution and Genomic Variation of Thermophilic Cyanobacteria in Diverse Microbial Mats at the Upper Temperature Limits of Photosynthesis.在光合作用温度上限的不同微生物席中嗜热蓝细菌的分布和基因组变异。
mSystems. 2022 Oct 26;7(5):e0031722. doi: 10.1128/msystems.00317-22. Epub 2022 Aug 18.
微生物多样性。占据广泛生态位的准性细菌种群中的精细尺度多样性和广泛重组。
Science. 2015 May 29;348(6238):1019-23. doi: 10.1126/science.aaa4456.
4
Divergence with gene flow in a population of thermophilic bacteria: a potential role for spatially varying selection.具有基因流的嗜热菌种群的分歧:空间变化选择的潜在作用。
Mol Ecol. 2014 Jul;23(14):3371-83. doi: 10.1111/mec.12812. Epub 2014 Jun 27.
5
Single-cell genomics reveals hundreds of coexisting subpopulations in wild Prochlorococcus.单细胞基因组学揭示了野生聚球藻中数百个共存的亚群。
Science. 2014 Apr 25;344(6182):416-20. doi: 10.1126/science.1248575.
6
A tribute to disorder in the genome of the bloom-forming freshwater cyanobacterium Microcystis aeruginosa.向形成水华的淡水蓝藻铜绿微囊藻基因组中的紊乱致敬。
PLoS One. 2013 Aug 12;8(8):e70747. doi: 10.1371/journal.pone.0070747. eCollection 2013.
7
Community structure and function of high-temperature chlorophototrophic microbial mats inhabiting diverse geothermal environments.栖息在不同地热环境中的高温嗜氯光养微生物席的群落结构和功能。
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8
The YNP Metagenome Project: Environmental Parameters Responsible for Microbial Distribution in the Yellowstone Geothermal Ecosystem.黄石国家公园宏基因组计划:导致黄石地热生态系统微生物分布的环境参数
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9
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PLoS Biol. 2012 Feb;10(2):e1001265. doi: 10.1371/journal.pbio.1001265. Epub 2012 Feb 21.