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卤虫雌性生殖系统的单核体图谱表明生殖细胞中 Z 染色体被抑制。

Single-nucleus atlas of the Artemia female reproductive system suggests germline repression of the Z chromosome.

机构信息

Institute of Science and Technology Austria (ISTA), Klosterneuburg, Austria.

出版信息

PLoS Genet. 2024 Aug 30;20(8):e1011376. doi: 10.1371/journal.pgen.1011376. eCollection 2024 Aug.

Abstract

Our understanding of the molecular pathways that regulate oogenesis and define cellular identity in the Arthropod female reproductive system and the extent of their conservation is currently very limited. This is due to the focus on model systems, including Drosophila and Daphnia, which do not reflect the observed diversity of morphologies, reproductive modes, and sex chromosome systems. We use single-nucleus RNA and ATAC sequencing to produce a comprehensive single nucleus atlas of the adult Artemia franciscana female reproductive system. We map our data to the Fly Cell Atlas single-nucleus dataset of the Drosophila melanogaster ovary, shedding light on the conserved regulatory programs between the two distantly related Arthropod species. We identify the major cell types known to be present in the Artemia ovary, including germ cells, follicle cells, and ovarian muscle cells. Additionally, we use the germ cells to explore gene regulation and expression of the Z chromosome during meiosis, highlighting its unique regulatory dynamics and allowing us to explore the presence of meiotic sex chromosome silencing in this group.

摘要

我们目前对调控卵子发生和定义节肢动物雌性生殖系统细胞身份的分子途径的理解非常有限,而且这些途径在很大程度上尚未得到证实。这是由于研究重点集中在模式系统上,包括果蝇和水蚤,而这些系统并不能反映出所观察到的形态、生殖模式和性染色体系统的多样性。我们使用单核 RNA 和 ATAC 测序技术,生成了丰年虾雌性生殖系统的综合单核图谱。我们将数据映射到果蝇卵巢的果蝇细胞图谱单核数据集上,揭示了这两个远缘节肢动物物种之间保守的调控程序。我们确定了已知存在于丰年虾卵巢中的主要细胞类型,包括生殖细胞、滤泡细胞和卵巢肌肉细胞。此外,我们还利用生殖细胞探索减数分裂过程中 Z 染色体的基因调控和表达,突出其独特的调控动态,并使我们能够探索该组中减数分裂性染色体沉默的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a01c/11392275/e85977206f11/pgen.1011376.g001.jpg

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