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与X染色体渗入相关的杂种不育雄性中,22G RNA靶向的精子发生基因的特异性下调。

Specific down-regulation of spermatogenesis genes targeted by 22G RNAs in hybrid sterile males associated with an X-Chromosome introgression.

作者信息

Li Runsheng, Ren Xiaoliang, Bi Yu, Ho Vincy Wing Sze, Hsieh Chia-Ling, Young Amanda, Zhang Zhihong, Lin Tingting, Zhao Yanmei, Miao Long, Sarkies Peter, Zhao Zhongying

机构信息

Department of Biology, Hong Kong Baptist University, Hong Kong, China;

Illumina Incorporated, San Diego, California 92122, USA;

出版信息

Genome Res. 2016 Sep;26(9):1219-32. doi: 10.1101/gr.204479.116. Epub 2016 May 18.

Abstract

Hybrid incompatibility (HI) prevents gene flow between species, thus lying at the heart of speciation genetics. One of the most common HIs is male sterility. Two superficially contradictory observations exist for hybrid male sterility. First, an introgression on the X Chromosome is more likely to produce male sterility than on autosome (so-called large-X theory); second, spermatogenesis genes are enriched on the autosomes but depleted on the X Chromosome (demasculinization of X Chromosome). Analysis of gene expression in Drosophila hybrids suggests a genetic interaction between the X Chromosome and autosomes that is essential for male fertility. However, the prevalence of such an interaction and its underlying mechanism remain largely unknown. Here we examine the interaction in nematode species by contrasting the expression of both coding genes and transposable elements (TEs) between hybrid sterile males and its parental nematode males. We use two lines of hybrid sterile males, each carrying an independent introgression fragment from Caenorhabditis briggsae X Chromosome in an otherwise Caenorhabditis nigoni background, which demonstrate similar defects in spermatogenesis. We observe a similar pattern of down-regulated genes that are specific for spermatogenesis between the two hybrids. Importantly, the down-regulated genes caused by the X Chromosome introgressions show a significant enrichment on the autosomes, supporting an epistatic interaction between the X Chromosome and autosomes. We investigate the underlying mechanism of the interaction by measuring small RNAs and find that a subset of 22G RNAs specifically targeting the down-regulated spermatogenesis genes is significantly up-regulated in hybrids, suggesting that perturbation of small RNA-mediated regulation may contribute to the X-autosome interaction.

摘要

杂种不相容性(HI)阻止了物种间的基因流动,因此处于物种形成遗传学的核心位置。最常见的HI之一是雄性不育。关于杂种雄性不育存在两个表面上相互矛盾的观察结果。第一,X染色体上的基因渗入比常染色体上更有可能导致雄性不育(所谓的大X理论);第二,精子发生基因在常染色体上富集,但在X染色体上缺失(X染色体的去雄性化)。对果蝇杂种中基因表达的分析表明,X染色体和常染色体之间的遗传相互作用对雄性育性至关重要。然而,这种相互作用的普遍性及其潜在机制在很大程度上仍然未知。在这里,我们通过对比杂种不育雄性线虫与其亲本线虫雄性中编码基因和转座元件(TEs)的表达,来研究线虫物种中的这种相互作用。我们使用了两系杂种不育雄性线虫,每系在黑腹杆线虫背景中携带来自秀丽隐杆线虫X染色体的一个独立渗入片段,它们在精子发生中表现出相似的缺陷。我们在这两个杂种中观察到了类似的精子发生特异性下调基因模式。重要的是,由X染色体渗入导致的下调基因在常染色体上显著富集,支持了X染色体和常染色体之间的上位性相互作用。我们通过测量小RNA来研究这种相互作用的潜在机制,发现专门靶向下调的精子发生基因的22G RNA子集在杂种中显著上调,这表明小RNA介导的调控受到干扰可能有助于X染色体与常染色体的相互作用。

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