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雌雄两性中 X 染色体的过度表达导致面粉甲虫中 X 连锁基因的广泛雌性偏倚。

Hyperexpression of the X chromosome in both sexes results in extensive female bias of X-linked genes in the flour beetle.

机构信息

Department of Biology, The University of Texas at Arlington, USA.

出版信息

Genome Biol Evol. 2010 Jul 12;2:336-46. doi: 10.1093/gbe/evq024.

Abstract

A genome's ability to produce two separate sexually dimorphic phenotypes is an intriguing biological mystery. Microarray-based studies of a handful of model systems suggest that much of the mystery can be explained by sex-biased gene expression evolved in response to sexually antagonistic selection. We present the first whole-genome study of sex-biased expression in the red flour beetle, Tribolium castaneum. Tribolium is a model for the largest eukaryotic order, Coleoptera, and we show that in whole-body adults, approximately 20% of the transcriptome is differentially regulated between the sexes. Among T. castaneum, Drosophila melanogaster, and Anopheles gambiae, we identify 416 1:1:1 orthologs with conserved sex-biased expression. Overrepresented functional categories among sex-biased genes are primarily those involved in gamete production and development. The genomic distribution of sex-biased genes in T. castaneum is distinctly nonrandom, with the strongest deficit of male-biased genes on the X chromosome (9 of 793) of any species studied to date. Tribolium also shows a significant enrichment of X-linked female-biased genes (408 of 793). Our analyses suggest that the extensive female bias of Tribolium X chromosome gene expression is due to hyperexpression of X-linked genes in both males and females. We propose that the overexpression of X chromosomes in females is an evolutionary side effect of the need to dosage compensate in males and that mechanisms to reduce female X chromosome gene expression to autosomal levels are sufficient but imperfect.

摘要

基因组产生两种独立的性别二态表型的能力是一个有趣的生物学之谜。基于微阵列的少数模型系统的研究表明,大部分谜团可以用进化而来的、对性拮抗选择产生的性别偏性基因表达来解释。我们提出了红面粉甲虫(Tribolium castaneum)性别偏性表达的第一个全基因组研究。Tribolium 是最大的真核目鞘翅目(Coleoptera)的模式生物,我们发现,在成虫的全身体中,约有 20%的转录组在性别之间存在差异调控。在 T. castaneum、黑腹果蝇(Drosophila melanogaster)和冈比亚按蚊(Anopheles gambiae)中,我们鉴定出 416 个具有保守性别偏性表达的 1:1:1 直系同源基因。性别偏性基因中过度表达的功能类别主要是与配子发生和发育相关的类别。在 T. castaneum 中,性别偏性基因的基因组分布明显是非随机的,在迄今为止研究的所有物种中,X 染色体上雄性偏性基因的缺失最为明显(793 个中仅有 9 个)。Tribolium 也显示出 X 连锁雌性偏性基因的显著富集(793 个中有 408 个)。我们的分析表明,Tribolium X 染色体基因表达的广泛雌性偏性是由于 X 连锁基因在雄性和雌性中过度表达所致。我们提出,雌性 X 染色体的过度表达是雄性需要剂量补偿的进化副产物,而降低雌性 X 染色体基因表达至常染色体水平的机制是充分但不完善的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7851/2942036/4cb9a6106fc5/gbeevq024f01_3c.jpg

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