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易位和选择在基因簇和模块出现过程中的作用。

The role of translocation and selection in the emergence of genetic clusters and modules.

作者信息

Newth David, Green David G

机构信息

CSIRO Centre for Complex Systems Science, CSIRO Marine and Atmospheric Research, GPO Box 284, Canberra, ACT 2601, Australia.

出版信息

Artif Life. 2007 Summer;13(3):249-58. doi: 10.1162/artl.2007.13.3.249.

Abstract

Biomolecular studies point increasingly to the importance of modularity in the organization of the genome. Processes such as the maintenance of metabolism are controlled by suites of genes that act as distinct, self-contained units, or modules. One effect is to promote stability of inherited characters. Despite the obvious importance of genetic modules, the mechanisms by which they form and persist are not understood. One clue is that functionally related genes tend to cluster together. Here we show that genetic translocation, recombination, and natural selection play a central role in this process. We distill the question of emerging genetic modularity into three simulation experiments that show: (1) a tendency, under natural selection, for essential genes to co-locate on the same chromosome and to settle in fixed loci; (2) that genes associated with a particular function tend to form functional clusters; and (3) that genes within a functional cluster tend to become arranged in transcription order. The results also imply that high proportions of junk DNA are essential to the process.

摘要

生物分子研究越来越多地表明模块化在基因组组织中的重要性。诸如新陈代谢维持等过程由作为不同的、独立的单元或模块起作用的一组基因控制。一个作用是促进遗传性状的稳定性。尽管基因模块具有明显的重要性,但其形成和持续存在的机制仍不为人所知。一条线索是功能相关的基因倾向于聚集在一起。我们在此表明,基因易位、重组和自然选择在这一过程中起着核心作用。我们将新兴遗传模块化问题提炼为三个模拟实验,这些实验表明:(1)在自然选择下,必需基因倾向于共定位在同一条染色体上并定位于固定位点;(2)与特定功能相关的基因倾向于形成功能簇;(3)功能簇内的基因倾向于按转录顺序排列。结果还表明,高比例的垃圾DNA对这一过程至关重要。

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