Department of Genetics, Evolution and Environment, University College, London WC1E 6BT, United Kingdom
Department of Genetics, Evolution and Environment, University College, London WC1E 6BT, United Kingdom.
Genetics. 2015 Oct;201(2):587-98. doi: 10.1534/genetics.115.179234. Epub 2015 Aug 5.
Regional variation in sex-specific gene regulation has been observed across sex chromosomes in a range of animals and is often a function of sex chromosome age. The avian Z chromosome exhibits substantial regional variation in sex-specific regulation, where older regions show elevated levels of male-biased expression. Distinct sex-specific regulation also has been observed across the male hypermethylated (MHM) region, which has been suggested to be a region of nascent dosage compensation. Intriguingly, MHM region regulatory features have not been observed in distantly related avian species despite the hypothesis that it is situated within the oldest region of the avian Z chromosome and is therefore orthologous across most birds. This situation contrasts with the conservation of other aspects of regional variation in gene expression observed on the avian sex chromosomes but could be the result of sampling bias. We sampled taxa across the Galloanserae, an avian clade spanning 90 million years, to test whether regional variation in sex-specific gene regulation across the Z chromosome is conserved. We show that the MHM region is conserved across a large portion of the avian phylogeny, together with other sex-specific regulatory features of the avian Z chromosome. Our results from multiple lines of evidence suggest that the sex-specific expression pattern of the MHM region is not consistent with nascent dosage compensation.
在一系列动物中,性染色体上观察到了性别特异性基因调控的区域变异,并且这种变异通常是性染色体年龄的函数。鸟类的 Z 染色体在性别特异性调控方面表现出显著的区域变异,其中较老的区域显示出高水平的雄性偏性表达。在雄性高甲基化 (MHM) 区域也观察到了明显的性别特异性调控,该区域被认为是新生剂量补偿的区域。有趣的是,尽管假设它位于鸟类 Z 染色体的最古老区域,并且因此在大多数鸟类中是同源的,但在亲缘关系较远的鸟类物种中没有观察到 MHM 区域的调控特征。这种情况与在鸟类性染色体上观察到的其他基因表达区域变异方面的保守性形成对比,但可能是由于采样偏差所致。我们在 Galloanserae 中采样了各种分类群,该鸟类类群跨越了 9000 万年,以测试 Z 染色体上性别特异性基因调控的区域变异是否保守。我们表明,MHM 区域在鸟类系统发育的很大一部分中是保守的,同时还保留了鸟类 Z 染色体的其他性别特异性调控特征。我们从多个证据来源的结果表明,MHM 区域的性别特异性表达模式与新生剂量补偿不一致。