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染色体重排与拟南芥属(猴面花)生殖隔离的遗传学

Chromosomal rearrangements and the genetics of reproductive barriers in mimulus (monkey flowers).

机构信息

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

出版信息

Evolution. 2013 Sep;67(9):2547-60. doi: 10.1111/evo.12154. Epub 2013 May 28.

Abstract

Chromosomal rearrangements may directly cause hybrid sterility and can facilitate speciation by preserving local adaptation in the face of gene flow. We used comparative linkage mapping with shared gene-based markers to identify potential chromosomal rearrangements between the sister monkeyflowers Mimulus lewisii and Mimulus cardinalis, which are textbook examples of ecological speciation. We then remapped quantitative trait loci (QTLs) for floral traits and flowering time (premating isolation) and hybrid sterility (postzygotic isolation). We identified three major regions of recombination suppression in the M. lewisii × M. cardinalis hybrid map compared to a relatively collinear Mimulus parishii × M. lewisii map, consistent with a reciprocal translocation and two inversions specific to M. cardinalis. These inferences were supported by targeted intraspecific mapping, which also implied a M. lewisii-specific reciprocal translocation causing chromosomal pseudo-linkage in both hybrid mapping populations. Floral QTLs mapped in this study, along with previously mapped adaptive QTLs, were clustered in putatively rearranged regions. All QTLs for male sterility, including two underdominant loci, mapped to regions of recombination suppression. We argue that chromosomal rearrangements may have played an important role in generating and consolidating barriers to gene flow as natural selection drove the dramatic ecological and morphological divergence of these species.

摘要

染色体重排可能直接导致杂种不育,并通过在面对基因流时保留局部适应性来促进物种形成。我们使用共享基于基因标记的比较连锁作图来识别姐妹种黄花蔓陀罗(Mimulus lewisii)和红花蔓陀罗(Mimulus cardinalis)之间的潜在染色体重排,这是生态物种形成的典型例子。然后,我们重新映射了花性状和开花时间(交配前隔离)以及杂种不育(合子后隔离)的数量性状基因座(QTL)。与相对同源的 Mimulus parishii × M. lewisii 图谱相比,我们在 M. lewisii × M. cardinalis 杂种图谱中鉴定出三个主要的重组抑制区域,这与一个相互易位和两个特定于 M. cardinalis 的倒位一致。这些推断得到了靶向种内作图的支持,这也暗示了一个 M. lewisii 特异性相互易位导致两个杂种作图群体中的染色体假连锁。本研究中映射的花 QTL 与之前映射的适应性 QTL 一起聚集在推测的重排区域中。所有雄性不育 QTL,包括两个劣势基因座,都映射到重组抑制区域。我们认为,染色体重排可能在产生和巩固基因流障碍方面发挥了重要作用,因为自然选择推动了这些物种的生态和形态的巨大分化。

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