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Strategies and approaches in plasmidome studies—uncovering plasmid diversity disregarding of linear elements?

机译:质粒组研究中的策略和方法—发现不考虑线性元素的质粒多样性?

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摘要

The term plasmid was originally coined for circular, extrachromosomal genetic elements. Today, plasmids are widely recognized not only as important factors facilitating genome restructuring but also as vehicles for the dissemination of beneficial characters within bacterial communities. Plasmid diversity has been uncovered by means of culture-dependent or -independent approaches, such as endogenous or exogenous plasmid isolation as well as PCR-based detection or transposon-aided capture, respectively. High-throughput-sequencing made possible to cover total plasmid populations in a given environment, i.e., the plasmidome, and allowed to address the quality and significance of self-replicating genetic elements. Since such efforts were and still are rather restricted to circular molecules, here we put equal emphasis on the linear plasmids which—despite their frequent occurrence in a large number of bacteria—are largely neglected in prevalent plasmidome conceptions.
机译:术语质粒最初是为环状的染色体外遗传元件创造的。如今,质粒不仅被认为是促进基因组重组的重要因素,而且还是在细菌群落中传播有益特征的媒介。已经通过依赖于培养物或不依赖于培养物的方法(例如内源或外源质粒分离以及基于PCR的检测或转座子辅助的捕获)揭示了质粒的多样性。通过高通量测序,可以覆盖给定环境(即质粒组)中的全部质粒种群,并可以解决自我复制遗传元件的质量和重要性。由于这种努力过去而且仍然仅限于环状分子,因此在这里我们同样重视线性质粒,尽管它们在大量细菌中经常发生,但在普遍的质粒组概念中却被忽略了。

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