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Tissue- and sex-specific small RNAomes reveal sex differences in response to the environment

机译:组织和性别特异性小rNAomes揭示了对环境的反应性差异

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摘要

RNA interference (RNAi) related pathways are essential for germline development and fertility in metazoa and can contribute to inter- and trans-generational inheritance. In the nematode Caenorhabditis elegans, environmental double-stranded RNA provided by feeding can lead to heritable changes in phenotype and gene expression. Notably, transmission efficiency differs between the male and female germline, yet the underlying mechanisms remain elusive. Here we use high-throughput sequencing of dissected gonads to quantify sex-specific endogenous piRNAs, miRNAs and siRNAs in the C. elegans germline and the somatic gonad. We identify genes with exceptionally high levels of secondary 22G RNAs that are associated with low mRNA expression, a signature compatible with silencing. We further demonstrate that contrary to the hermaphrodite germline, the male germline, but not male soma, is resistant to environmental RNAi triggers provided by feeding, in line with previous work. This sex-difference in silencing efficacy is associated with lower levels of gonadal RNAi amplification products. Moreover, this tissue- and sex-specific RNAi resistance is regulated by the germline, since mutant males with a feminized germline are RNAi sensitive. This study provides important sex- and tissue-specific expression data of miRNA, piRNA and siRNA as well as mechanistic insights into sex-differences of gene regulation in response to environmental cues.
机译:RNA干扰(RNAi)相关途径对于Metazoa中的种系开发和生育能力至关重要,并且可以有助于跨越基础遗传。在Nematode caenorhabditis elegans中,通过饲养提供的环境双链RNA可以导致表型和基因表达中的遗传变化。值得注意的是,雄性和雌性系之间的传输效率不同,但下面的机制仍然难以捉摸。在这里,我们使用解剖的Gonads的高通量测序来量化C. elegans种系和体细胞系中的性别特异性内源性piRNA,miRNA和siRNA。我们鉴定具有与低mRNA表达相关的特异性高水平的次级22g RNA的基因,与沉默相兼容的签名。我们进一步证明与雌雄甲种系相反,雄性种系,但不是雄性躯体,是通过喂养提供的环境RNAi触发器,符合先前的工作。这种沉默疗效的性别差异与较低水平的性腺RNAi扩增产物有关。此外,这种组织和性别特异性的RNAi抗性由种系调节,因为具有女性化种系的突变雄性是RNAi敏感性。本研究提供了MiRNA,PiRNA和siRNA的重要性和组织特异性表达数据,以及对环境提示的基因调节性差异的机制见解。

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