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Natural Genomic Design in Sinorhizobium meliloti: Novel Genomic Architectures

机译:苜蓿中华根瘤菌的自然基因组设计:新型基因组。 建筑学

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摘要

The complete nucleotide sequence of the genome of Sinorhizobium meliloti, the symbiont of alfalfa, was reported in 2001 by an international consortium of laboratories. The genome comprises a chromosome of 3.65 megabases (Mb) and two megaplasmids, pSymA and pSymB, of 1.35 Mb and 1.68 Mb, respectively. Based on the nucleotide sequence of the whole genome, we designed a pathway of consecutive rearrangements leading to novel genomic architectures. In a first step we obtained derivative strains containing two replicons; in a second step we obtained a strain containing the genetic information in one single replicon of 6.68 MB. From this last architecture we isolated revertants containing two replicons, and from these we could return to the original architecture showing the three replicons. We found that the relative frequency of excision of cointegrated replicons is higher at the site used for the cointegration than at other sites. This might conciliate two apparently opposed facts: the highly dynamic state of genomic architecture in S. meliloti and the common observation that different isolates and derived cellular clones of S. meliloti usually present the architecture of one chromosome and two distinct megaplasmids. Different aspects that must be considered to obtain full advantage of the strategy of natural genomic design are discussed.
机译:国际实验室联合会于2001年报道了苜蓿共生体苜蓿中华根瘤菌基因组的完整核苷酸序列。该基因组包含一个3.65兆碱基(Mb)的染色体和两个分别为1.35 Mb和1.68 Mb的大质粒pSymA和pSymB。基于整个基因组的核苷酸序列,我们设计了导致新的基因组结构的连续重排途径。第一步,我们获得了含有两个复制子的衍生菌株。在第二步中,我们获得了一个在6.68 MB的单个复制子中包含遗传信息的菌株。从最后一个架构中,我们隔离了包含两个复制子的还原子,从中我们可以回到显示三个复制子的原始架构。我们发现,用于共整合的位点的共整合复制子切除的相对频率高于其他位点。这可能可以调和两个明显相反的事实:苜蓿链球菌的基因组结构的高度动态状态,以及普遍观察到,苜蓿链球菌的不同分离物和衍生的细胞克隆通常呈现一个染色体和两个不同的巨质粒的结构。不同 要充分利用该战略所必须考虑的方面 讨论了自然基因组设计。

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