Rocha Eduardo P C
Atelier de Bioinformatique, Université Pierre et Marie Curie, 12, Rue Cuvier, 75005 Paris, and Unité Génétique des Génomes Bactériens, Institut Pasteur, 28 rue du Dr Roux, 75724 Paris Cedex 15, France.
Microbiology (Reading). 2004 Jun;150(Pt 6):1609-1627. doi: 10.1099/mic.0.26974-0.
The replication of the chromosome is among the most essential functions of the bacterial cell and influences many other cellular mechanisms, from gene expression to cell division. Yet the way it impacts on the bacterial chromosome was not fully acknowledged until the availability of complete genomes allowed one to look upon genomes as more than bags of genes. Chromosomal replication includes a set of asymmetric mechanisms, among which are a division in a lagging and a leading strand and a gradient between early and late replicating regions. These differences are the causes of many of the organizational features observed in bacterial genomes, in terms of both gene distribution and sequence composition along the chromosome. When asymmetries or gradients increase in some genomes, e.g. due to a different composition of the DNA polymerase or to a higher growth rate, so do the corresponding biases. As some of the features of the chromosome structure seem to be under strong selection, understanding such biases is important for the understanding of chromosome organization and adaptation. Inversely, understanding chromosome organization may shed further light on questions relating to replication and cell division. Ultimately, the understanding of the interplay between these different elements will allow a better understanding of bacterial genetics and evolution.
染色体复制是细菌细胞最重要的功能之一,它影响着许多其他细胞机制,从基因表达到细胞分裂。然而,直到完整基因组的出现使人们能够将基因组视为不仅仅是基因的集合,其对细菌染色体的影响方式才得到充分认识。染色体复制包括一系列不对称机制,其中有滞后链和前导链的区分以及早期和晚期复制区域之间的梯度。这些差异是细菌基因组中许多组织特征的成因,无论是在基因分布还是沿着染色体的序列组成方面。当某些基因组中的不对称性或梯度增加时,例如由于DNA聚合酶组成不同或生长速率较高,相应的偏差也会增加。由于染色体结构的某些特征似乎受到强烈选择,理解这些偏差对于理解染色体组织和适应性很重要。相反,理解染色体组织可能会进一步阐明与复制和细胞分裂相关的问题。最终,理解这些不同元素之间的相互作用将有助于更好地理解细菌遗传学和进化。