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Spatiotemporal Gene Expression Analysis of the Caenorhabditis elegans Germline Uncovers a Syncytial Expression Switch

机译:秀丽隐杆线虫种系的时空基因表达分析揭示了合胞体表达开关

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Developmental programs are executed by tightly controlled gene regulatory pathways. Here, we combined the unique sample retrieval capacity afforded by laser capture microscopy with analysis of mRNA abundance by CEL-Seq (cell expression by linear amplification and sequencing) to generate a spatiotemporal gene expression map of the Caenorhabditis elegans syncytial germline from adult hermaphrodites and males. We found that over 6000 genes exhibit spatiotemporally dynamic expression patterns throughout the hermaphrodite germline, with two dominant groups of genes exhibiting reciprocal shifts in expression at late pachytene during meiotic prophase I. We found a strong correlation between restricted spatiotemporal expression and known developmental and cellular processes, indicating that these gene expression changes may be an important driver of germ cell progression. Analysis of the male gonad revealed a shift in gene expression at early pachytene and upregulation of subsets of genes following the meiotic divisions, specifically in early and late spermatids, mostly transcribed from the X chromosome. We observed that while the X chromosome is silenced throughout the first half of the gonad, some genes escape this control and are highly expressed throughout the germline. Although we found a strong correlation between the expression of genes corresponding to CSR-1-interacting 22G-RNAs during germ cell progression, we also found that a large fraction of genes may bypass the need for CSR-1-mediated germline licensing. Taken together, these findings suggest the existence of mechanisms that enable a shift in gene expression during prophase I to promote germ cell progression.
机译:发育程序由严格控制的基因调控途径执行。在这里,我们将激光捕获显微镜提供的独特样本提取能力与CEL-Seq(通过线性扩增和测序进行细胞表达)分析mRNA丰度相结合,以生成来自成年雌雄同体和雄性的秀丽隐杆线虫合胞体种系的时空基因表达图谱。我们发现,超过6000个基因在整个雌雄同体种系中表现出时空动态表达模式,其中两组显性基因在减数分裂前期I期的晚期厚层表达中表现出相互变化。我们发现受限的时空表达与已知的发育和细胞过程之间存在很强的相关性,表明这些基因表达变化可能是生殖细胞进展的重要驱动因素。对雄性性腺的分析揭示了早期厚肌基因表达的转变和减数分裂后基因亚群的上调,特别是在早期和晚期精子细胞中,主要从X染色体转录。我们观察到,虽然X染色体在整个性腺的前半部分都沉默,但一些基因逃脱了这种控制,并在整个生殖系中高度表达。尽管我们发现在生殖细胞发育过程中与CSR-1相互作用的22G-RNA相对应的基因表达之间存在很强的相关性,但我们也发现很大一部分基因可能绕过了CSR-1介导的种系许可的需要。综上所述,这些发现表明存在使前期I期基因表达发生变化以促进生殖细胞进展的机制。

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