Smith Gilbert, Chen Yun-Ru, Blissard Gary W, Briscoe Adriana D
Department of Ecology and Evolutionary Biology, University of California, Irvine.
Genome Biol Evol. 2014 Mar;6(3):526-37. doi: 10.1093/gbe/evu035.
Sex chromosome dosage compensation balances homogametic sex chromosome expression with autosomal expression in the heterogametic sex, leading to sex chromosome expression parity between the sexes. If compensation is incomplete, this can lead to expression imbalance and sex-biased gene expression. Recent work has uncovered an intriguing and variable pattern of dosage compensation across species that includes a lack of complete dosage compensation in ZW species compared with XY species. This has led to the hypothesis that ZW species do not require complete compensation or that complete compensation would negatively affect their fitness. To date, only one study, a study of the moth Bombyx mori, has discovered evidence for complete dosage compensation in a ZW species. We examined another moth species, Manduca sexta, using high-throughput sequencing to survey gene expression in the head tissue of males and females. We found dosage compensation to be complete in M. sexta with average expression between the Z chromosome in males and females being equal. When genes expressed at very low levels are removed by filtering, we found that average autosome expression was highly similar to average Z expression, suggesting that the majority of genes in M. sexta are completely dosage compensated. Further, this compensation was accompanied by sex-specific gene expression associated with important sexually dimorphic traits. We suggest that complete dosage compensation in ZW species might be more common than previously appreciated and linked to additional selective processes, such as sexual selection. More ZW and lepidopteran species should now be examined in a phylogenetic framework, to understand the evolution of dosage compensation.
性染色体剂量补偿使异配性别中同配性别的性染色体表达与常染色体表达达到平衡,从而实现两性之间性染色体表达的均等。如果补偿不完全,可能会导致表达失衡和性别偏向性基因表达。最近的研究发现了一种有趣且因物种而异的剂量补偿模式,其中包括与XY物种相比,ZW物种缺乏完全的剂量补偿。这引发了一种假设,即ZW物种不需要完全补偿,或者完全补偿会对其适应性产生负面影响。迄今为止,只有一项关于家蚕蛾的研究发现了ZW物种中存在完全剂量补偿的证据。我们研究了另一种蛾类物种烟草天蛾,使用高通量测序技术来调查雄性和雌性头部组织中的基因表达。我们发现烟草天蛾的剂量补偿是完全的,雄性和雌性Z染色体之间的平均表达相等。当通过过滤去除极低水平表达的基因时,我们发现常染色体的平均表达与Z染色体的平均表达高度相似,这表明烟草天蛾中的大多数基因都得到了完全的剂量补偿。此外,这种补偿伴随着与重要的两性异形特征相关的性别特异性基因表达。我们认为ZW物种中的完全剂量补偿可能比之前认为的更为普遍,并且与其他选择过程有关,例如性选择。现在应该在系统发育框架下对更多的ZW和鳞翅目物种进行研究,以了解剂量补偿的进化。