Inheritance of the epigenetic signature and reduced intermuscular bone phenotype acquired via DNA methylation editing of the runx2 b promoter in zebrafish.

promoter methylation levels may synergistically induce additional epigenetic modifications, potentially affecting the PPAR signaling pathway and FoxO transcription factor regulation, which appears to inhibit osteoblast proliferation and differentiation. Overall, this study demonstrates an innovative application of epigenetic editing technology for aquaculture breeding. By precisely regulating the expression patterns of key genes for economically important traits while preserving genomic DNA integrity, this approach provides a theoretical foundation and technical support for improving fish economic traits.

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Publication Details

Journal
PubMed
Published
2026-09-18
DOI
https://doi.org/10.24272/j.issn.2095-8137.2025.494
Primary Topic
Zebrafish Biomedical Research Applications
Type
article
Field-Weighted Citation Impact
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article

Inheritance of the epigenetic signature and reduced intermuscular bone phenotype acquired via DNA methylation editing of the runx2 b promoter in zebrafish.

Junjie Wang, Chaoyi Wang, Yu-Tao Miao, Fang Liang et al.
PubMed
Zebrafish Biomedical Research Applications
article

Inheritance of the epigenetic signature and reduced intermuscular bone phenotype acquired via DNA methylation editing of the runx2 b promoter in zebrafish.

Junjie Wang, Chaoyi Wang, Yu-Tao Miao, Fang Liang, Kang-Sen MAI, Liang Min-Xing, Wang Xue-Geng, Jing-Yi Zhang, Jia-Yi Liu, Bi-Yu Wu, Xue Wang, Jun Zhao
article en

Abstract

promoter methylation levels may synergistically induce additional epigenetic modifications, potentially affecting the PPAR signaling pathway and FoxO transcription factor regulation, which appears to inhibit osteoblast proliferation and differentiation. Overall, this study demonstrates an innovative application of epigenetic editing technology for aquaculture breeding. By precisely regulating the expression patterns of key genes for economically important traits while preserving genomic DNA integrity, this approach provides a theoretical foundation and technical support for improving fish economic traits.

PubMedVol. 47(5)
South China Normal University (CN), Ocean University of China (CN)
Openalex Percentile: Top 14%
Zebrafish Biomedical Research Applications
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Inheritance of the epigenetic signature and reduced intermuscular bone phenotype acquired via DNA methylation editing of the runx2 b promoter in zebrafish. — Junjie Wang, Chaoyi Wang, et al. · PubMed (2026) | TGRS Research Map | TGRS