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Local hopping mobile DNA implicated in pseudogene formation and reductive evolution in an obligate cyanobacteria-plant symbiosis

机译:专性蓝细菌-植物共生中涉及伪基因形成和还原进化的局部跳跃移动DNA。

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摘要

BackgroundInsertion sequences (ISs) are approximately 1 kbp long “jumping” genes found in prokaryotes. ISs encode the protein Transposase, which facilitates the excision and reinsertion of ISs in genomes, making these sequences a type of class I (“cut-and-paste”) Mobile Genetic Elements. ISs are proposed to be involved in the reductive evolution of symbiotic prokaryotes. Our previous sequencing of the genome of the cyanobacterium ‘Nostoc azollae’ 0708, living in a tight perpetual symbiotic association with a plant (the water fern Azolla), revealed the presence of an eroding genome, with a high number of insertion sequences (ISs) together with an unprecedented large proportion of pseudogenes. To investigate the role of ISs in the reductive evolution of ‘Nostoc azollae’ 0708, and potentially in the formation of pseudogenes, a bioinformatic investigation of the IS identities and positions in 47 cyanobacterial genomes was conducted. To widen the scope, the IS contents were analysed qualitatively and quantitatively in 20 other genomes representing both free-living and symbiotic bacteria.
机译:BackgroundInsertion序列(ISs)在原核生物中大约有1 kbp长的“跳跃”基因。 IS编码蛋白质转座酶,该蛋白促进了ISs在基因组中的切除和重新插入,使这些序列成为I类(“剪切粘贴”)移动遗传元件的类型。建议将IS参与共生原核生物的还原进化。我们先前对与植物(水蕨Azolla)紧密共生共生的蓝细菌“ Nostoc azollae” 0708的基因组进行测序,结果表明存在侵蚀性基因组,且插入序列(ISs)多以及前所未有的大量假基因。为了研究IS在'Nostoc azollae'0708的还原进化中的作用,以及潜在地在假基因形成中的作用,对47个蓝细菌基因组中IS的身份和位置进行了生物信息学研究。为了扩大范围,在代表自由生活和共生细菌的其他20个基因组中对IS含量进行了定性和定量分析。

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