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Positive Selection on Transposase Genes of Insertion Sequences in the Crocosphaera watsonii Genome

机译:华夏鳄基因组插入序列转座酶基因的阳性选择

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Insertion sequences (ISs) are mobile elements that are commonly found in bacterial genomes. Here, the structural and functional diversity of these mobile elements in the genome of the cyanobacterium Crocosphaera watsonii WH8501 is analyzed. The number, distribution, and diversity of nucleotide and amino acid stretches with similarity to the transposase gene of this IS family suggested that this genome harbors many functional as well as truncated IS fragments. The selection pressure acting on full-length transposase open reading frames of these ISs suggested (i) the occurrence of positive selection and (ii) the presence of one or more positively selected codons. These results were obtained using three data sets of transposase genes from the same IS family that were collected based on the level of amino acid similarity, the presence of an inverted repeat, and the number of sequences in the data sets. Neither recombination nor ribosomal frameshifting, which may interfere with the selection analyses, appeared to be important forces in the transposase gene family. Some positively selected codons were located in a conserved domain, suggesting that these residues are functionally important. The finding that this type of selection acts on IS-carried genes is intriguing, because although ISs have been associated with the adaptation of the bacterial host to new environments, this has typically been attributed to transposition or transformation, thus involving different genomic locations. Intragenic adaptation of IS-carried genes identified here may constitute a novel mechanism associated with bacterial diversification and adaptation.
机译:插入序列(ISs)是在细菌基因组中常见的移动元件。在这里,分析了蓝藻WH8501蓝藻基因组中这些移动元件的结构和功能多样性。与该IS家族的转座酶基因相似的核苷酸和氨基酸序列的数目,分布和多样性表明,该基因组具有许多功能性和截短的IS片段。作用于这些IS的全长转座酶开放阅读框上的选择压力表明(i)正选择的发生和(ii)一个或多个正选择的密码子的存在。这些结果是使用来自同一IS家族的三个转座酶基因数据集获得的,这些数据集是基于氨基酸相似性水平,反向重复的存在以及数据集中的序列数收集的。重组和核糖体移码都可能不会影响转座酶基因家族,这可能不会干扰选择分析。一些阳性选择的密码子位于保守结构域中,表明这些残基在功能上很重要。这种选择作用于IS携带的基因的发现令人着迷,因为尽管IS与细菌宿主适应新环境有关,但通常归因于转座或转化,因此涉及不同的基因组位置。本文鉴定的IS携带基因的基因内适应可能构成与细菌多样化和适应有关的新机制。

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