Max-Planck Institute for Developmental Biology, Department for Integrative Evolutionary Biology, 72076 Tübingen, Germany.
Genome Res. 2021 Sep;31(9):1590-1601. doi: 10.1101/gr.275303.121. Epub 2021 Jul 22.
High-resolution spatial and temporal maps of gene expression have facilitated a comprehensive understanding of animal development and evolution. In nematodes, the small body size represented a major challenge for such studies, but recent advancements have helped overcome this limitation. Here, we have implemented single worm transcriptomics (SWT) in the nematode model organism to provide a high-resolution map of the developmental transcriptome. We selected 38 time points from hatching of the J2 larvae to young adults to perform transcriptome analysis over 60 h of postembryonic development. A mean sequencing depth of 4.5 million read pairs allowed the detection of more than 23,135 (80%) of all genes. Nearly 3000 (10%) genes showed oscillatory expression with discrete expression levels, phases, and amplitudes. Gene age analysis revealed an overrepresentation of ancient gene classes among oscillating genes, and around one-third of them have 1:1 orthologs in One important gene family overrepresented among oscillating genes is collagens. Several of these collagen genes are regulated by the developmental switch gene , indicating a potential function in the regulation of mouth-form plasticity, a key developmental process in this facultative predatory nematode. Together, our analysis provides (1) an updated protocol for SWT in nematodes that is applicable to many microscopic species, (2) a 1- to 2-h high-resolution catalog of gene expression throughout postembryonic development, and (3) a comparative analysis of oscillatory gene expression between the two model organisms and and associated evolutionary dynamics.
高分辨率的时空基因表达图谱促进了对动物发育和进化的全面理解。在线虫中,体型小对这类研究构成了重大挑战,但最近的进展帮助克服了这一限制。在这里,我们在线虫模式生物中实施了单虫转录组学(SWT),以提供发育转录组的高分辨率图谱。我们从 J2 幼虫孵化到幼体选择了 38 个时间点,在 60 小时的胚胎后发育过程中进行转录组分析。平均测序深度为 450 万对读长,可检测到超过 23135 个(80%)的所有基因。近 3000 个(10%)基因表现出振荡表达,具有离散的表达水平、相位和幅度。基因年龄分析显示,振荡基因中古老的基因类群存在过度表达,其中约三分之一在 中有 1:1 的直系同源基因。在振荡基因中过度表达的一个重要基因家族是胶原蛋白。这些胶原蛋白基因中的几个受发育开关基因的调控,表明它们在调节口型可塑性方面可能具有潜在功能,而口型可塑性是这种兼性捕食线虫的一个关键发育过程。总的来说,我们的分析提供了(1)适用于许多微观物种的线虫 SWT 的更新方案,(2)胚胎后发育过程中 1-2 小时高分辨率的 基因表达目录,以及(3)两个模式生物 和 之间振荡基因表达的比较分析及其相关的进化动态。