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首页> 外文期刊>Trends in Microbiology >Escherichia coli and its chromosome.
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Escherichia coli and its chromosome.

机译:大肠杆菌及其染色体。

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The Escherichia coli chromosome is a circular DNA molecule that is approximately 1000 times compacted in the living cell, where it occupies approximately 15% of the cellular volume. The genome is organized in a way that facilitates chromosome maintenance and processing. Despite huge efforts, until recently little has been known about how the chromosome is organized within cells, where replication takes place, and how DNA is segregated before cell division. New techniques for labeling genetic loci and molecular machines are allowing the simultaneous tracking of genetic loci and such machines in living cells over time. These studies reveal remarkable organization, yet a highly dynamic flux of genetic loci and macromolecules. It seems likely that the cellular positioning of chromosomal loci is the outcome of the formation of two chromosome arms (replichores) by replication, followed by sequential chromosome segregation, rather than from the presence of cellular positioning markers.
机译:大肠埃希氏菌染色体是一种环状DNA分子,在活细胞中被压实约1000倍,在活细胞中约占细胞体积的15%。基因组的组织方式有助于染色体的维护和加工。尽管付出了巨大的努力,但直到最近,人们对染色体如何在细胞内组织,发生复制以及如何在细胞分裂之前分离DNA的了解仍很少。标记基因座和分子机器的新技术允许随着时间的推移同时跟踪活细胞中的基因座和此类机器。这些研究揭示了显着的组织性,但是遗传位点和大分子却是高度动态的。染色体基因座的细胞定位似乎可能是两个染色体臂(复制体)通过复制形成的结果,随后是顺序的染色体分离,而不是细胞定位标记的存在。

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