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本文引用的文献

1
Salinispora pacifica sp. nov., an actinomycete from marine sediments.太平洋沙雷氏菌,一种来自海洋沉积物中的放线菌。
Antonie Van Leeuwenhoek. 2013 May;103(5):1069-78. doi: 10.1007/s10482-013-9886-4. Epub 2013 Jan 30.
2
Targeted search for actinomycetes from nearshore and deep-sea marine sediments.从近岸和深海海洋沉积物中寻找放线菌的靶向搜索。
FEMS Microbiol Ecol. 2013 Jun;84(3):510-8. doi: 10.1111/1574-6941.12082. Epub 2013 Mar 11.
3
Microdiversity and evidence for high dispersal rates in the marine actinomycete 'Salinispora pacifica'.海洋放线菌“盐生拟诺卡氏菌”的微观多样性和高分散率的证据。
Environ Microbiol. 2012 Feb;14(2):480-93. doi: 10.1111/j.1462-2920.2011.02641.x. Epub 2011 Nov 28.
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Contrasting recombination patterns and demographic histories of the plant pathogen Ralstonia solanacearum inferred from MLSA.从 MLSA 推断出植物病原菌茄青枯雷尔氏菌的重组模式和种群历史的差异。
ISME J. 2012 May;6(5):961-74. doi: 10.1038/ismej.2011.160. Epub 2011 Nov 17.
5
Evolution of secondary metabolite genes in three closely related marine actinomycete species.三种亲缘关系密切的海洋放线菌中次生代谢基因的进化。
Appl Environ Microbiol. 2011 Oct;77(20):7261-70. doi: 10.1128/AEM.05943-11. Epub 2011 Aug 26.
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Recombination and population structure in Salmonella enterica.肠沙门氏菌的重组与种群结构。
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Allelic diversity and population structure of Bacillus sphaericus as revealed by multilocus sequence typing.利用多位点序列分型揭示球形芽孢杆菌的等位基因多样性和种群结构。
Appl Environ Microbiol. 2011 Aug;77(15):5553-6. doi: 10.1128/AEM.00207-11. Epub 2011 Jun 17.
8
MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods.MEGA5:用于最大似然法、进化距离法和最大简约法的分子进化遗传学分析。
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9
Detection of recombination breakpoints in the genomes of human enterovirus 71 strains isolated in the Netherlands in epidemic and non-epidemic years, 1963-2010.检测 1963 年至 2010 年间在荷兰流行年和非流行年分离的人肠道病毒 71 型毒株基因组中的重组断点。
Infect Genet Evol. 2011 Jul;11(5):886-94. doi: 10.1016/j.meegid.2011.02.011. Epub 2011 Feb 23.
10
RDP3: a flexible and fast computer program for analyzing recombination.RDP3:一个灵活快速的计算机程序,用于分析重组。
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多位点序列分型揭示了与 Salinispora 属抗生素抗性相关的同源重组的证据。

Multilocus sequence typing reveals evidence of homologous recombination linked to antibiotic resistance in the genus Salinispora.

机构信息

Scripps Institution of Oceanography, Center for Marine Biotechnology and Biomedicine, University of California-San Diego, La Jolla, California, USA.

出版信息

Appl Environ Microbiol. 2013 Oct;79(19):5997-6005. doi: 10.1128/AEM.00880-13. Epub 2013 Jul 26.

DOI:10.1128/AEM.00880-13
PMID:23892741
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3811353/
Abstract

The three closely related species that currently comprise the genus Salinispora were analyzed using a multilocus sequence typing approach targeting 48 strains derived from four geographic locations. Phylogenetic congruence and a well-supported concatenated tree provide strong support for the delineation of the three species as currently described and the basal relationship of Salinispora arenicola to the more recently diverged sister taxa S. tropica and S. pacifica. The phylogeny of the initial region of the rpoB gene sequenced was atypical, placing the related genera Micromonospora and Verrucosispora within the Salinispora clade. This phylogenetic incongruence was subsequently ascribed to a homologous-recombination event in a portion of the gene associated with resistance to compounds in the rifamycin class, which target RpoB. All S. arenicola strains produced compounds in this class and possessed resistance-conferring amino acid changes in RpoB. The phylogeny of a region of the rpoB gene that is not associated with rifamycin resistance was congruent with the other housekeeping genes. The link between antibiotic resistance and homologous recombination suggests that incongruent phylogenies provide opportunities to identify the molecular targets of secondary metabolites, an observation with potential relevance for drug discovery efforts. Low ratios of interspecies recombination to mutation, even among cooccurring strains, coupled with high levels of within-species recombination suggest that the three species have been described in accordance with natural barriers to recombination.

摘要

目前属于盐孢菌属的三个密切相关的种,通过针对源自四个地理地点的 48 株的多基因座序列分型方法进行了分析。系统发育一致性和支持良好的连接树为目前描述的三个种的划定以及 Salinispora arenicola 与最近分化的姊妹种 S. tropica 和 S. pacifica 的基础关系提供了强有力的支持。rpoB 基因测序的初始区域的系统发育是不典型的,将相关的属 Micromonospora 和 Verrucosispora 置于 Salinispora 分支内。这种系统发育不一致随后归因于与 rifamycin 类化合物靶标 RpoB 的抗性相关的基因部分的同源重组事件。所有 S. arenicola 菌株都在该类化合物中产生化合物,并在 RpoB 中具有赋予抗性的氨基酸变化。与 rifamycin 抗性无关的 rpoB 基因区域的系统发育与其他管家基因一致。抗生素抗性和同源重组之间的联系表明,不一致的系统发育为确定次生代谢物的分子靶标提供了机会,这一观察结果对于药物发现工作具有潜在的相关性。即使在共存菌株中,种间重组与突变的比例也很低,加上种内重组水平很高,这表明这三个种是根据重组的天然屏障来描述的。