Department of Biology, Indiana University, 915 E. Third Street, Myers Hall 150, Bloomington, Indiana 47405-7107, USA.
Nat Commun. 2017 Feb 27;8:14593. doi: 10.1038/ncomms14593.
Sexual dimorphisms fuel significant intraspecific variation and evolutionary diversification. Yet the developmental-genetic mechanisms underlying sex-specific development remain poorly understood. Here, we focus on the conserved sex-determination gene doublesex (dsx) and the mechanisms by which it mediates sex-specific development in a horned beetle species by combining systemic dsx knockdown, high-throughput sequencing of diverse tissues and a genome-wide analysis of Dsx-binding sites. We find that Dsx regulates sex-biased expression predominantly in males, that Dsx's target repertoires are highly sex- and tissue-specific and that Dsx can exercise its regulatory role via two distinct mechanisms: as a sex-specific modulator by regulating strictly sex-specific targets, or as a switch by regulating the same genes in males and females in opposite directions. More generally, our results suggest Dsx can rapidly acquire new target gene repertoires to accommodate evolutionarily novel traits, evidenced by the large and unique repertoire identified in head horns, a recent morphological innovation.
性二型现象为种内变异和进化多样化提供了动力。然而,性特定发育的发育遗传机制仍知之甚少。在这里,我们专注于保守的性别决定基因 doublesex (dsx) ,以及它如何通过系统地 dsx 敲低、不同组织的高通量测序和 Dsx 结合位点的全基因组分析,在一种角甲虫物种中介导性特定发育的机制。我们发现,dsx 主要在雄性中调节性别偏向表达,dsx 的靶基因库具有高度的性别和组织特异性,dsx 可以通过两种不同的机制发挥其调节作用:作为一种通过调节严格的性别特异性靶基因的性别特异性调节剂,或者作为一种通过在雄性和雌性中以相反的方向调节相同基因的开关。更普遍地说,我们的结果表明,dsx 可以快速获得新的靶基因库,以适应进化上的新特征,这一点可以从头部角上发现的大量独特的基因库中得到证明,这是最近的一种形态创新。