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有性生殖的选择优势。

Selective advantage for sexual reproduction.

作者信息

Tannenbaum Emmanuel

机构信息

Department of Chemistry, Ben-Gurion University of the Negev, Be'er-Sheva 84105, Israel.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Jun;73(6 Pt 1):061925. doi: 10.1103/PhysRevE.73.061925. Epub 2006 Jun 30.

Abstract

This paper develops a simplified model for sexual reproduction within the quasispecies formalism. The model assumes a diploid genome consisting of two chromosomes, where the fitness is determined by the number of chromosomes that are identical to a given master sequence. We also assume that there is a cost to sexual reproduction, given by a characteristic time tau(seek) during which haploid cells seek out a mate with which to recombine. If the mating strategy is such that only viable haploids can mate, then when tau(seek) = 0, it is possible to show that sexual reproduction will always out compete asexual reproduction. However, as tau(seek) increases, sexual reproduction only becomes advantageous at progressively higher mutation rates. Once the time cost for sex reaches a critical threshold, the selective advantage for sexual reproduction disappears entirely. The results of this paper suggest that sexual reproduction is not advantageous in small populations per se, but rather in populations with low replication rates. In this regime, the cost for sex is sufficiently low that the selective advantage obtained through recombination leads to the dominance of the strategy. In fact, at a given replication rate and for a fixed environment volume, sexual reproduction is selected for in high populations because of the reduced time spent finding a reproductive partner.

摘要

本文在准种形式体系内开发了一个用于有性生殖的简化模型。该模型假定一个由两条染色体组成的二倍体基因组,其中适应度由与给定主序列相同的染色体数量决定。我们还假定有性生殖存在一种代价,由一个特征时间τ(寻找)给出,在此期间单倍体细胞寻找可与之重组的配偶。如果交配策略使得只有有活力的单倍体能够交配,那么当τ(寻找) = 0时,可以证明有性生殖总是会比无性生殖更具竞争力。然而,随着τ(寻找)增加,有性生殖仅在逐渐升高的突变率下才变得有利。一旦有性生殖的时间代价达到一个临界阈值,有性生殖的选择优势就会完全消失。本文的结果表明,有性生殖本身在小种群中并非有利,而是在复制率低的种群中才有利。在这种情况下,有性生殖的代价足够低,以至于通过重组获得的选择优势导致该策略占主导地位。事实上,在给定的复制率和固定的环境体积下,由于寻找生殖伴侣所花费的时间减少,有性生殖在大种群中被选择。

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