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冰岛硫化叶菌中CRISPR重复间隔序列位点的重排

Reassortment of CRISPR repeat-spacer loci in Sulfolobus islandicus.

作者信息

Held Nicole L, Herrera Alfa, Whitaker Rachel J

机构信息

Department of Microbiology, University of Illinois, Urbana-Champaign, Urbana, IL, USA.

出版信息

Environ Microbiol. 2013 Nov;15(11):3065-76. doi: 10.1111/1462-2920.12146. Epub 2013 May 22.

Abstract

Virus-host interactions are a key factor shaping population dynamics of microbial species. The CRISPR-Cas adaptive immune system confers sequence-specific immunity to viral infection and has the potential to dramatically shape coevolutionary interactions between viruses and their microbial hosts. To assess evolutionary dynamics of CRISPR loci, we have sampled a population of closely related Sulfolobus islandicus strains from Kamchatka, Russia at two time points, 10 years apart. Sequence analysis of the conserved trailer sequences reveals that alleles are reassorted among three CRISPR spacer loci into combinatorial genotypes. Reassortment provides the evolutionary independence of CRISPR loci from one another as demonstrated by the differential change in allele frequencies between two time points. Genome sequences of 12 strains from this population also reveal very recent horizontal gene transfer of novel, divergent cas gene cassettes. The evolutionary independence of CRISPR loci from each other and of the cas genes that control their function are consistent with the evolutionary expectation that reassortment increases the efficiency of adaptation at these loci that are likely under strong selection by lytic viruses.

摘要

病毒与宿主的相互作用是塑造微生物物种种群动态的关键因素。CRISPR-Cas适应性免疫系统赋予对病毒感染的序列特异性免疫,并有潜力极大地塑造病毒与其微生物宿主之间的共同进化相互作用。为了评估CRISPR基因座的进化动态,我们在相隔10年的两个时间点对来自俄罗斯堪察加半岛的一群密切相关的冰岛硫化叶菌菌株进行了采样。对保守的拖尾序列进行序列分析表明,等位基因在三个CRISPR间隔基因座之间重新组合成组合基因型。重新组合提供了CRISPR基因座彼此之间的进化独立性,这在两个时间点之间等位基因频率的差异变化中得到了证明。来自该群体的12个菌株的基因组序列还揭示了新型、不同的cas基因盒最近发生的水平基因转移。CRISPR基因座彼此之间以及控制其功能的cas基因的进化独立性与进化预期一致,即重新组合提高了这些可能受到裂解病毒强烈选择的基因座的适应效率。

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