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古菌嗜酸热硫化叶菌中的同源重组:DNA 底物的影响及机制意义。

Homologous recombination in the archaeon Sulfolobus acidocaldarius: effects of DNA substrates and mechanistic implications.

机构信息

Department of Biological Sciences, University of Cincinnati, 614 Rieveschl Hall, ML0006, Clifton Court, Cincinnati, OH 45221-0006, USA.

出版信息

Microbiology (Reading). 2013 Sep;159(Pt 9):1888-1899. doi: 10.1099/mic.0.067942-0. Epub 2013 Jul 7.

Abstract

Although homologous recombination (HR) is known to influence the structure, stability, and evolution of microbial genomes, few of its functional properties have been measured in cells of hyperthermophilic archaea. The present study manipulated various properties of the parental DNAs in high-resolution assays of Sulfolobus acidocaldarius transformation, and measured the impact on the efficiency and pattern of marker transfer to the recipient chromosome. The relative orientation of homologous sequences, the type and position of chromosomal mutation being replaced, and the length of DNA flanking the marked region all affected the efficiency, linkage, tract continuity, and other parameters of marker transfer. Effects predicted specifically by the classical reciprocal-exchange model of HR were not observed. One analysis observed only 90 % linkage between markers defined by adjacent bases; in another series of experiments, sequence divergence up to 4 % had no detectable impact on overall efficiency of HR or on the co-transfer of a distal non-selected marker. The effects of introducing DNA via conjugation, rather than transformation, were more difficult to assess, but appeared to increase co-transfer (i.e. linkage) of relatively distant non-selected markers. The results indicate that HR events between gene-sized duplex DNAs and the S. acidocaldarius chromosome typically involve neither crossing over nor interference from a mismatch-activated anti-recombination system. Instead, the donor DNA may anneal to a transient chromosomal gap, as in the mechanism proposed for oligonucleotide-mediated transformation of Sulfolobus and other micro-organisms.

摘要

尽管同源重组(HR)已知会影响微生物基因组的结构、稳定性和进化,但在嗜热古菌的细胞中,其功能特性很少被测量。本研究在对 Sulfolobus acidocaldarius 转化的高分辨率测定中操纵了亲本 DNA 的各种性质,并测量了其对标记转移到受体染色体的效率和模式的影响。同源序列的相对取向、被取代的染色体突变的类型和位置以及标记区域侧翼的 DNA 长度都影响了标记转移的效率、连锁、片段连续性和其他参数。HR 的经典交互交换模型预测的效应并未观察到。一种分析仅观察到由相邻碱基定义的标记之间 90%的连锁;在另一系列实验中,序列差异高达 4%,对 HR 的整体效率或对远端非选择标记的共转移没有可检测的影响。通过接合而不是转化引入 DNA 的影响更难评估,但似乎增加了相对较远的非选择标记的共转移(即连锁)。结果表明,基因大小的双链 DNA 与 S. acidocaldarius 染色体之间的 HR 事件通常既不涉及交叉,也不受错配激活的反重组系统的干扰。相反,供体 DNA 可能与瞬时染色体缺口退火,就像寡核苷酸介导的 Sulfolobus 和其他微生物转化所提出的机制一样。

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