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种系特异性、快速进化的 GATA 样基因调控合子基因激活,以促进 Theridiidae 蜘蛛的内胚层特化和模式形成。

Lineage-specific, fast-evolving GATA-like gene regulates zygotic gene activation to promote endoderm specification and pattern formation in the Theridiidae spider.

机构信息

Laboratory of Evolutionary Cell and Developmental Biology, JT Biohistory Research Hall, Takatsuki, Osaka, 569-1125, Japan.

Department of Biological Sciences, Graduate School of Science, Osaka University, Toyonaka, Japan.

出版信息

BMC Biol. 2022 Oct 6;20(1):223. doi: 10.1186/s12915-022-01421-0.

Abstract

BACKGROUND

The process of early development varies across the species-rich phylum Arthropoda. Owing to the limited research strategies for dissecting lineage-specific processes of development in arthropods, little is known about the variations in early arthropod development at molecular resolution. The Theridiidae spider, Parasteatoda tepidariorum, has its genome sequenced and could potentially contribute to dissecting early embryonic processes.

RESULTS

We present genome-wide identification of candidate genes that exhibit locally restricted expression in germ disc forming stage embryos of P. tepidariorum, based on comparative transcriptomes of isolated cells from different regions of the embryo. A subsequent pilot screen by parental RNA interference identifies three genes required for body axis formation. One of them is a GATA-like gene that has been fast evolving after duplication and divergence from a canonical GATA family gene. This gene is designated fuchi nashi (fuchi) after its knockdown phenotypes, where the cell movement toward the formation of a germ disc was reversed. fuchi expression occurs in cells outside a forming germ disc and persists in the endoderm. Transcriptome and chromatin accessibility analyses of fuchi pRNAi embryos suggest that early fuchi activity regulates chromatin state and zygotic gene activation to promote endoderm specification and pattern formation. We also show that there are many uncharacterized genes regulated by fuchi.

CONCLUSIONS

Our genome-based research using an arthropod phylogenetically distant from Drosophila identifies a lineage-specific, fast-evolving gene with key developmental roles in one of the earliest, genome-wide regulatory events, and allows for molecular exploration of the developmental variations in early arthropod embryos.

摘要

背景

在物种丰富的节肢动物门中,早期发育过程存在差异。由于缺乏用于剖析特定谱系发育过程的研究策略,因此对于早期节肢动物发育的分子分辨率变化知之甚少。Theridiidae 蜘蛛 Parasteatoda tepidariorum 的基因组已被测序,可能有助于剖析早期胚胎发育过程。

结果

我们基于胚胎不同区域分离细胞的比较转录组,提出了在 P. tepidariorum 生殖盘形成期胚胎中局部表达的候选基因的全基因组鉴定。随后通过亲本 RNA 干扰进行的初步筛选确定了三个对体轴形成必需的基因。其中之一是 GATA 样基因,它在与经典 GATA 家族基因复制和分化后快速进化。该基因被命名为 fuchi nashi(fuchi),因为其敲低表型中,细胞向生殖盘形成的运动被逆转。fuchi 表达发生在形成生殖盘的细胞外,并在肠内胚层中持续存在。fuchi pRNAi 胚胎的转录组和染色质可及性分析表明,早期 fuchi 活性调节染色质状态和合子基因激活,以促进内胚层特化和模式形成。我们还表明,有许多未表征的基因受 fuchi 调控。

结论

我们使用与果蝇亲缘关系较远的节肢动物进行基于基因组的研究,鉴定了一个具有关键发育作用的谱系特异性、快速进化的基因,该基因在最早的全基因组调控事件之一中发挥作用,允许对早期节肢动物胚胎的发育变化进行分子探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d00/9535882/8b593ca433a0/12915_2022_1421_Fig1_HTML.jpg

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