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通过比较基因组分析揭示的限制/修饰系统的进化作用。

Evolutionary role of restriction/modification systems as revealed by comparative genome analysis.

作者信息

Rocha E P, Danchin A, Viari A

机构信息

Atelier de BioInformatique, Université Paris VI, 75005 Paris, France.

出版信息

Genome Res. 2001 Jun;11(6):946-58. doi: 10.1101/gr.gr-1531rr.

Abstract

Type II restriction modification systems (RMSs) have been regarded either as defense tools or as molecular parasites of bacteria. We extensively analyzed their evolutionary role from the study of their impact in the complete genomes of 26 bacteria and 35 phages in terms of palindrome avoidance. This analysis reveals that palindrome avoidance is not universally spread among bacterial species and that it does not correlate with taxonomic proximity. Palindrome avoidance is also not universal among bacteriophage, even when their hosts code for RMSs, and depends strongly on the genetic material of the phage. Interestingly, palindrome avoidance is intimately correlated with the infective behavior of the phage. We observe that the degree of palindrome and restriction site avoidance is significantly and consistently less important in phages than in their bacterial hosts. This result brings to the fore a larger selective load for palindrome and restriction site avoidance on the bacterial hosts than on their infecting phages. It is then consistent with a view where type II RMSs are considered as parasites possibly at the verge of mutualism. As a consequence, RMSs constitute a nontrivial third player in the host-parasite relationship between bacteria and phages.

摘要

II型限制修饰系统(RMSs)一直被视为细菌的防御工具或分子寄生物。我们通过研究26种细菌和35种噬菌体的完整基因组中它们对回文序列避免的影响,广泛分析了它们的进化作用。该分析表明,回文序列避免在细菌物种中并非普遍存在,且与分类学亲缘关系无关。回文序列避免在噬菌体中也不普遍,即使其宿主编码RMSs,并且强烈依赖于噬菌体的遗传物质。有趣的是,回文序列避免与噬菌体的感染行为密切相关。我们观察到,噬菌体中回文序列和限制位点避免的程度明显且始终不如其细菌宿主重要。这一结果凸显了细菌宿主在回文序列和限制位点避免方面比感染它们的噬菌体承受着更大的选择压力。这与将II型RMSs视为可能处于共生边缘的寄生物的观点一致。因此,RMSs在细菌与噬菌体的宿主-寄生物关系中构成了一个重要的第三方角色。

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