Characterization of Ovarian Cell Types and Molecular Signatures in Mauremys reevesii Using Single‐Cell Sequencing

The ovary orchestrates female reproduction, where cellular composition and intercellular communication dictate reproductive cycles. Despite advances in chelonian reproductive biology, the cellular composition and regulatory mechanisms of the ovary remain unclear, thereby restricting insights into reproductive ecology and conservation strategies. Here, we performed single-cell RNA sequencing (scRNA-seq) to systematically characterize the molecular signatures of ovarian cell types in the Chinese pond turtle (Mauremys reevesii). By integrating differential gene expression analysis and functional enrichment, we constructed a high-resolution ovarian cell atlas and identified major cell populations, including granulosa cells and oocytes. Specifically, we identified Wnt family member 4 (WNT4) and Wnt family member 6 (WNT6) as specific markers for granulosa cells and Ubiquitin C-terminal hydrolase L1 (UCHL1) for oocytes. Furthermore, the specific expression of these granulosa cell markers was validated using dual-color in situ hybridization. Collectively, this study elucidates the ovarian biology of M. reevesii at the cellular and molecular levels, providing a vital theoretical foundation for understanding chelonian reproductive ecology and offering important insights into reproductive ecology in turtles.

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Publication Details

Journal
The FASEB Journal
Published
2026-08-25
DOI
https://doi.org/10.1096/fj.202601922rr
Primary Topic
Turtle Biology and Conservation
Type
article
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Characterization of Ovarian Cell Types and Molecular Signatures in Mauremys reevesii Using Single‐Cell Sequencing

Yue Yuan, Xin Niu, Meiling Hong, Jiale Zhou et al.
The FASEB Journal
Turtle Biology and Conservation
article

Characterization of Ovarian Cell Types and Molecular Signatures in Mauremys reevesii Using Single‐Cell Sequencing

Yue Yuan, Xin Niu, Meiling Hong, Jiale Zhou, Li Ding, Kaiqi Yuan
article en

Abstract

The ovary orchestrates female reproduction, where cellular composition and intercellular communication dictate reproductive cycles. Despite advances in chelonian reproductive biology, the cellular composition and regulatory mechanisms of the ovary remain unclear, thereby restricting insights into reproductive ecology and conservation strategies. Here, we performed single-cell RNA sequencing (scRNA-seq) to systematically characterize the molecular signatures of ovarian cell types in the Chinese pond turtle (Mauremys reevesii). By integrating differential gene expression analysis and functional enrichment, we constructed a high-resolution ovarian cell atlas and identified major cell populations, including granulosa cells and oocytes. Specifically, we identified Wnt family member 4 (WNT4) and Wnt family member 6 (WNT6) as specific markers for granulosa cells and Ubiquitin C-terminal hydrolase L1 (UCHL1) for oocytes. Furthermore, the specific expression of these granulosa cell markers was validated using dual-color in situ hybridization. Collectively, this study elucidates the ovarian biology of M. reevesii at the cellular and molecular levels, providing a vital theoretical foundation for understanding chelonian reproductive ecology and offering important insights into reproductive ecology in turtles.

The FASEB JournalVol. 40(16)
Hainan Normal University (CN)
Life in Land
Openalex Percentile: Top 7%
Turtle Biology and Conservation
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