Department of Ecology and Evolutionary Biology, University of Arizona, Tucson, Arizona, United States of America.
PLoS Genet. 2010 Sep 30;6(9):e1001148. doi: 10.1371/journal.pgen.1001148.
The X chromosome often plays a central role in hybrid male sterility between species, but it is unclear if this reflects underlying regulatory incompatibilities. Here we combine phenotypic data with genome-wide expression data to directly associate aberrant expression patterns with hybrid male sterility between two species of mice. We used a reciprocal cross in which F₁ males are sterile in one direction and fertile in the other direction, allowing us to associate expression differences with sterility rather than with other hybrid phenotypes. We found evidence of extensive over-expression of the X chromosome during spermatogenesis in sterile but not in fertile F₁ hybrid males. Over-expression was most pronounced in genes that are normally expressed after meiosis, consistent with an X chromosome-wide disruption of expression during the later stages of spermatogenesis. This pattern was not a simple consequence of faster evolutionary divergence on the X chromosome, because X-linked expression was highly conserved between the two species. Thus, transcriptional regulation of the X chromosome during spermatogenesis appears particularly sensitive to evolutionary divergence between species. Overall, these data provide evidence for an underlying regulatory basis to reproductive isolation in house mice and underscore the importance of transcriptional regulation of the X chromosome to the evolution of hybrid male sterility.
X 染色体在物种间杂种雄性不育中经常起着核心作用,但尚不清楚这是否反映了潜在的调控不兼容性。在这里,我们将表型数据与全基因组表达数据相结合,直接将异常表达模式与两种小鼠之间的杂种雄性不育联系起来。我们使用了一种正反交,其中 F₁ 雄性在一个方向上是不育的,而在另一个方向上是可育的,这使我们能够将表达差异与不育联系起来,而不是与其他杂种表型联系起来。我们发现,在不育但可育的 F₁ 杂种雄性的精子发生过程中,X 染色体的广泛过度表达证据。过度表达在正常减数分裂后表达的基因中最为明显,这与减数分裂后精子发生的后期 X 染色体表达的广泛破坏一致。这种模式不是 X 染色体上更快的进化分歧的简单结果,因为两个物种之间的 X 连锁表达高度保守。因此,X 染色体在精子发生过程中的转录调控似乎对物种间的生殖隔离特别敏感。总的来说,这些数据为小家鼠生殖隔离的潜在调控基础提供了证据,并强调了 X 染色体转录调控对杂种雄性不育进化的重要性。