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首页> 外文期刊>Applied Microbiology >Analysis of Insertion Sequences in Thermophilic Cyanobacteria: Exploring the Mechanisms of Establishing, Maintaining, and Withstanding High Insertion Sequence Abundance
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Analysis of Insertion Sequences in Thermophilic Cyanobacteria: Exploring the Mechanisms of Establishing, Maintaining, and Withstanding High Insertion Sequence Abundance

机译:嗜热蓝细菌插入序列分析:探索建立,维持和承受高插入序列丰度的机制

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摘要

Insertion sequences (ISs) are simple mobile genetic elements capable of relocating within a genome. Through this transposition activity, they are known to create mutations which are mostly deleterious to the cell, although occasionally they are beneficial. Two closely related isolates of thermophilic Synechococcus species from hot spring microbial mats are known to harbor a large number of diverse ISs. To explore the mechanism of IS acquisition within natural populations and survival in the face of high IS abundance, we examined IS content and location in natural populations of Synechococcus by comparing metagenomic data to the genomes of fully sequenced cultured isolates. The observed IS distribution in the metagenome was equivalent to the distribution in the isolates, indicating that the cultured isolates are appropriate models for the environmental population. High sequence conservation between IS families shared between the two isolates suggests that ISs are able to move between individuals within populations and between species via lateral gene transfer, consistent with models for IS family accumulation. Most IS families show evidence of recent activity, and interruption of critical genes in some individuals was observed, demonstrating that transposition is an ongoing mutational force in the populations.
机译:插入序列(ISs)是能够在基因组中重新定位的简单移动遗传元件。通过这种转座活性,已知它们会产生对细胞最有害的突变,尽管有时它们是有益的。已知从温泉微生物垫中分离出两个紧密相关的嗜热乳突球​​菌物种,它们具有大量不同的IS。为了探索自然种群中IS捕获和高IS生存率下生存的机制,我们通过比较宏基因组学数据与全序列培养分离株的基因组,研究了Synechococcus自然种群中IS的含量和位置。在元基因组中观察到的IS分布与分离株中的分布相当,这表明培养的分离株是适合环境种群的模型。在两个分离株之间共享的IS家族之间的高序列保守性表明,IS能够通过侧向基因转移在种群内个体之间以及物种之间移动,这与IS家族积累的模型一致。大多数IS家族显示出近期活动的证据,并观察到某些个体中关键基因的中断,这表明转座是种群中一种持续的突变力。

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