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通过对卵巢细胞进行单细胞转录组学鉴定出的类视黄酸家族核受体SmRAR控制曼氏血吸虫的卵母细胞分化。

The retinoic acid family-like nuclear receptor SmRAR identified by single-cell transcriptomics of ovarian cells controls oocyte differentiation in Schistosoma mansoni.

作者信息

Moescheid Max F, Lu Zhigang, Soria Carmen Diaz, Quack Thomas, Puckelwaldt Oliver, Holroyd Nancy, Holzaepfel Pauline, Haeberlein Simone, Rinaldi Gabriel, Berriman Matthew, Grevelding Christoph G

机构信息

Institute of Parasitology, Justus Liebig University, Schubertstrasse 81, 35392 Giessen, Germany.

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton CB10, 1SA, UK.

出版信息

Nucleic Acids Res. 2025 Feb 8;53(4). doi: 10.1093/nar/gkae1228.

Abstract

Studies on transcription regulation in platyhelminth development are scarce, especially for parasitic flatworms. Here, we employed single-cell transcriptomics to identify genes involved in reproductive development in the trematode model Schistosoma mansoni. This parasite causes schistosomiasis, a major neglected infectious disease affecting >240 million people worldwide. The pathology of schistosomiasis is closely associated with schistosome eggs deposited in host organs including the liver. Unlike other trematodes, schistosomes exhibit distinct sexes, with egg production reliant on the pairing-dependent maturation of female reproductive organs. Despite this significance, the molecular mechanisms underlying ovary development and oocyte differentiation remain largely unexplored. Utilizing an organ isolation approach for S. mansoni, we extracted ovaries of paired females followed by single-cell RNA sequencing (RNA-seq) with disassociated oocytes. A total of 1967 oocytes expressing 7872 genes passed quality control (QC) filtering. Unsupervised clustering revealed four distinct cell clusters: somatic, germ cells and progeny, intermediate and late germ cells. Among distinct marker genes for each cluster, we identified a hitherto uncharacterized transcription factor of the retinoic acid receptor family, SmRAR. Functional analyses of SmRAR and associated genes like Smmeiob (meiosis-specific, oligonucleotide/oligosaccharide binding motif (OB) domain-containing) demonstrated their pairing-dependent and ovary-preferential expression and their decisive roles in oocyte differentiation of S. mansoni.

摘要

关于扁形动物发育过程中转录调控的研究很少,尤其是对于寄生扁虫。在这里,我们采用单细胞转录组学来鉴定参与曼氏血吸虫这一吸虫模型生殖发育的基因。这种寄生虫会导致血吸虫病,这是一种主要的被忽视的传染病,全球有超过2.4亿人受到影响。血吸虫病的病理学与沉积在包括肝脏在内的宿主器官中的血吸虫卵密切相关。与其他吸虫不同,血吸虫具有明显的性别差异,卵子的产生依赖于雌性生殖器官的配对依赖性成熟。尽管具有重要意义,但卵巢发育和卵母细胞分化的分子机制在很大程度上仍未得到探索。利用针对曼氏血吸虫的器官分离方法,我们提取了配对雌性的卵巢,然后对解离的卵母细胞进行单细胞RNA测序(RNA-seq)。共有1967个表达7872个基因的卵母细胞通过了质量控制(QC)筛选。无监督聚类揭示了四个不同的细胞簇:体细胞、生殖细胞及其后代、中间期和晚期生殖细胞。在每个簇的不同标记基因中,我们鉴定出一种迄今未被表征的视黄酸受体家族转录因子SmRAR。对SmRAR以及相关基因如Smmeiob(减数分裂特异性、含寡核苷酸/寡糖结合基序(OB)结构域)的功能分析表明,它们具有配对依赖性和卵巢优先表达,并且在曼氏血吸虫卵母细胞分化中起决定性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c598/11879061/6e9b89a05a90/gkae1228figgra1.jpg

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