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从单倍体到二倍体的转变。

Transition from haploidy to diploidy.

作者信息

Perrot V, Richerd S, Valéro M

机构信息

Laboratoire de Génétique et Evolution des Populations Végétales, URA CNRS, Villeneuve d'Ascq, France.

出版信息

Nature. 1991 May 23;351(6324):315-7. doi: 10.1038/351315a0.

Abstract

As a direct consequence of sex, organisms undergo a haploid and a diploid stage during their life cycle. Although the relative duration of haploid and diploid phases varies greatly among taxa, the diploid phase is more conspicuous in all higher organisms. Therefore it is widely believed that diploidy offers more evolutionary possibilities and is thus nearly always selected for. We have now performed computer simulations to investigate one possible advantage of diploidy, that is, protection against the expression of deleterious mutations. Instead of comparing isolated haploid and diploid populations, we considered interbreeding haploids and diploids. Diploids invaded the population only when the dominance degree of a single deleterious mutation was smaller than about 1/2, and the condition allowing diploidy to invade depended on how harmful the mutation was.

摘要

由于有性生殖,生物体在其生命周期中经历单倍体和二倍体阶段。尽管单倍体和二倍体阶段的相对持续时间在不同分类群中差异很大,但二倍体阶段在所有高等生物中更为显著。因此,人们普遍认为二倍体提供了更多的进化可能性,因此几乎总是被选择保留。我们现在进行了计算机模拟,以研究二倍体的一个可能优势,即防止有害突变的表达。我们没有比较孤立的单倍体和二倍体种群,而是考虑了杂交的单倍体和二倍体。只有当单个有害突变的显性程度小于约1/2时,二倍体才会侵入种群,而允许二倍体侵入的条件取决于突变的有害程度。

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