日本血吸虫
生物
转录组
计算生物学
转录因子
性别分化
生殖系
基因调控网络
钥匙(锁)
基因表达调控
细胞分化
进化生物学
遗传学
细胞生物学
系统生物学
抄写(语言学)
鉴定(生物学)
曼氏血吸虫
电池类型
调节顺序
转录调控
作者
Zhigang Lu,X Wang,Shun Li,Xuxin Li,Pengfei Du,Yameng Zheng,Lu Liu,Yanyan Zhang,Omri Wurtzel,Guofeng Cheng
摘要
Schistosomiasis remains a major global health challenge, primarily due to the large number of egg production by sexually mature parasites. However, the cellular basis and regulatory programs governing sexual development and egg production are poorly characterized. Here, we constructed a dynamic single-cell atlas of Schistosoma japonicum (S. japonicum) covering key development stages of sexual maturation and egg production, and integrated it for the first time with spatial transcriptomics to map tissue‑resolved cellular niches. Through bioinformatic analysis and experimental validation, we identified several critical cell populations and regulatory networks that drive parasite development and egg laying. By mapping de novo identified transcription factors (TFs) onto these atlases, we generated a comprehensive spatiotemporal expression profile of TFs and define the regulatory programs of several tissue-specific TFs including Zfp, Fbp3, and Lim. Integrated re‑clustering further revealed and validated key regulators of germline stem-cell differentiation in S. japonicum. Finally, comparative analyses with S. mansoni single-cell datasets revealed both conserved and species‑divergent cellular plasticity, providing unprecedented insights into their distinct biological traits. Collectively, our comprehensive study establishes a foundational resource for understanding schistosome biology, deciphers regulatory programs underlying cell differentiation and pathogenicity, and accelerates the identification of key molecules involved in sexual development against schistosomiasis.
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