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Evidence from phylogenetic and genome fingerprinting analyses suggests rapidly changing variation in Halorubrum and Haloarcula populations

机译:系统发育和基因组指纹分析的证据表明Haluubrum和Haloarcula种群的变化迅速

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摘要

Halobacteria require high NaCl concentrations for growth and are the dominant inhabitants of hypersaline environments above 15% NaCl. They are well-documented to be highly recombinogenic, both in frequency and in the range of exchange partners. In this study, we examine the genetic and genomic variation of cultured, naturally co-occurring environmental populations of Halobacteria. Sequence data from multiple loci (~2500 bp) identified many closely and more distantly related strains belonging to the genera Halorubrum and Haloarcula. Genome fingerprinting using a random priming PCR amplification method to analyze these isolates revealed diverse banding patterns across each of the genera and surprisingly even for isolates that are identical at the nucleotide level for five protein coding sequenced loci. This variance in genome structure even between identical multilocus sequence analysis (MLSA) haplotypes indicates that accumulation of genomic variation is rapid: faster than the rate of third codon substitutions.
机译:盐细菌需要高浓度的氯化钠才能生长,并且是高于15%氯化钠的高盐环境的主要居民。在频率和交换伙伴范围内,它们均被证明具有很高的重组原性。在这项研究中,我们检查了嗜盐杆菌自然,共生的环境种群的遗传和基因组变异。来自多个基因座(约2500 bp)的序列数据确定了与Halorubrum和Haloarcula属密切相关且距离较远的菌株。使用随机引物PCR扩增方法分析这些分离株的基因组指纹图谱揭示了每个属中的不同条带模式,甚至对于五个蛋白质编码测序基因座在核苷酸水平上相同的分离株也令人惊讶。即使在相同的多基因座序列分析(MLSA)单倍型之间,基因组结构的这种差异也表明基因组变异的积累是迅速的:比第三次密码子置换的速度快。

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