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The evolution of sex chromosomes in organisms with separate haploid sexes

机译:单倍体性别分开的生物中性染色体的进化

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The evolution of dimorphic sex chromosomes is driven largely by the evolution of reduced recombination and the subsequent accumulation of deleterious mutations. Although these processes are increasingly well understood in diploid organisms, the evolution of dimorphic sex chromosomes in haploid organisms (U/V) has been virtually unstudied theoretically. We analyze a model to investigate the evolution of linkage between fitness loci and the sex-determining region in U/V species. In a second step, we test how prone nonrecombining regions are to degeneration due to accumulation of deleterious mutations. Our modeling predicts that the decay of recombination on the sex chromosomes and the addition of strata via fusions will be just as much a part of the evolution of haploid sex chromosomes as in diploid sex chromosome systems. Reduced recombination is broadly favored, as long as there is some fitness difference between haploid males and females. The degeneration of the sex-determining region due to the accumulation of deleterious mutations is expected to be slower in haploid organisms because of the absence of masking. Nevertheless, balancing selection often drives greater differentiation between the U/V sex chromosomes than in X/Y and Z/W systems. We summarize empirical evidence for haploid sex chromosome evolution and discuss our predictions in light of these findings.
机译:双态性染色体的进化很大程度上是由重组减少的进化以及有害突变的随后累积所驱动的。尽管这些过程在二倍体生物中越来越为人所理解,但在理论上实际上尚未研究单倍体生物(U / V)中双态性染色体的进化。我们分析一个模型,以调查适应性基因座和U / V物种中的性别决定区域之间的联系的演变。在第二步中,我们测试由于有害突变的积累,非重组区域容易发生变性的情况。我们的模型预测,与二倍体性染色体系统一样,性染色体上重组的衰减和通过融合增加的地层将是单倍性染色体进化的一部分。只要单倍体雄性和雌性之间在适应性上有差异,就普遍建议减少重组。由于缺乏掩蔽,在有害的单倍体生物中,由于有害突变的积累而导致的性别决定区域的退化预计将较慢。然而,与X / Y和Z / W系统相比,平衡选择通常会导致U / V性染色体之间的差异更大。我们总结了单倍体性染色体进化的经验证据,并根据这些发现讨论了我们的预测。

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