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染色体重排直接导致了刘易斯猴面花-深红猴面花杂交种中F1代花粉不育。

Chromosomal rearrangements directly cause underdominant F1 pollen sterility in Mimulus lewisii-Mimulus cardinalis hybrids.

作者信息

Stathos Angela, Fishman Lila

机构信息

Division of Biological Sciences, University of Montana, Missoula, Montana, 59812.

出版信息

Evolution. 2014 Nov;68(11):3109-19. doi: 10.1111/evo.12503. Epub 2014 Sep 17.

Abstract

Chromosomal rearrangements can contribute to the evolution of postzygotic reproductive isolation directly, by disrupting meiosis in F1 hybrids, or indirectly, by suppressing recombination among genic incompatibilities. Because direct effects of rearrangements on fertility imply fitness costs during their spread, understanding the mechanism of F1 hybrid sterility is integral to reconstructing the role(s) of rearrangements in speciation. In hybrids between monkeyflowers Mimulus cardinalis and Mimulus lewisii, rearrangements contain all quantitative trait loci (QTLs) for both premating barriers and pollen sterility, suggesting that they may have facilitated speciation in this model system. We used artificial chromosome doubling and comparative mapping to test whether heterozygous rearrangements directly cause underdominant male sterility in M. lewisii-M. cardinalis hybrids. Consistent with a direct chromosomal basis for hybrid sterility, synthetic tetraploid F1 s showed highly restored fertility (83.4% pollen fertility) relative to diploids F1 s (36.0%). Additional mapping with Mimulus parishii-M. cardinalis and M. parishii-M. lewisii hybrids demonstrated that underdominant male sterility is caused by one M. lewisii specific and one M. cardinalis specific reciprocal translocation, but that inversions had no direct effects on fertility. We discuss the importance of translocations as causes of reproductive isolation, and consider models for how underdominant rearrangements spread and fix despite intrinsic fitness costs.

摘要

染色体重排可直接通过破坏F1杂种的减数分裂,或间接通过抑制基因不相容性之间的重组,来促进合子后生殖隔离的进化。由于重排对育性的直接影响意味着其传播过程中的适合度代价,因此了解F1杂种不育的机制对于重建重排在物种形成中的作用至关重要。在红花沟酸浆(Mimulus cardinalis)和刘易斯沟酸浆(Mimulus lewisii)之间的杂种中,重排包含了交配前隔离和花粉不育的所有数量性状位点(QTL),这表明它们可能在这个模型系统中促进了物种形成。我们使用人工染色体加倍和比较作图来测试杂合重排是否直接导致刘易斯沟酸浆-红花沟酸浆杂种中显性不足的雄性不育。与杂种不育的直接染色体基础一致,合成四倍体F1相对于二倍体F1表现出高度恢复的育性(花粉育性83.4%)(花粉育性36.0%)。用帕里什沟酸浆(Mimulus parishii)-红花沟酸浆和帕里什沟酸浆-刘易斯沟酸浆杂种进行的额外作图表明,显性不足的雄性不育是由一个刘易斯沟酸浆特异性和一个红花沟酸浆特异性相互易位引起的,但倒位对育性没有直接影响。我们讨论了易位作为生殖隔离原因的重要性,并考虑了尽管存在内在适合度代价,显性不足的重排如何传播和固定的模型。

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