Gene regulation was long predicted to play a vital role in speciation and species divergence. Only recently with the advent of new technologies, however, has it been possible to address the question of the relative contributions of different mechanisms of gene expression to the evolution of phenotypic diversity. Here we broaden the question and ask whether microRNAs, a large class of small regulatory RNAs, play a role in reproductive isolation between species by contributing to hybrid male sterility. MicroRNAs from the testes of clawed frogs (Xenopus) were extracted and the expression profiles of sterile hybrids were compared with males of a parental species. Hybrid testes were largely microRNA-depleted relative to those of nonhybrids, and this pattern was validated with quantitative RT-PCR. A number of candidate differential microRNAs from this study have previously been described as testis-specific in the mouse, suggesting that microRNA structural conservation may be associated with functional retention.

译文

长期以来,人们一直认为基因调控在物种形成和物种分化中起着至关重要的作用。然而,直到最近,随着新技术的出现,才有可能解决基因表达的不同机制对表型多样性进化的相对贡献的问题。在这里,我们扩大了问题的范围,并询问microRNAs (一大类小型调节rna) 是否通过促进杂种雄性不育而在物种之间的生殖隔离中发挥作用。从爪蛙 (非洲爪蟾) 的睾丸中提取microrna,并将不育杂种的表达谱与亲本物种的雄性进行比较。相对于非杂种,杂种睾丸在很大程度上耗尽了microRNA,并且该模式已通过定量rt-pcr验证。先前已将本研究中的许多候选差异microRNA描述为小鼠睾丸特异性,这表明microRNA结构保守性可能与功能保留有关。

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