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Safe and Stable Germline Transmission of MSTN Mutations in Cattle.

Abstract

With the global population expected to reach 10 billion by 2050, sustainable livestock production is critical. Gene editing of the myostatin (MSTN) gene represents a promising strategy to enhance muscle growth in cattle. In this study, MSTN-mutated founder (F0) cows were used to generate F1 offspring via ovum pick-up, in vitro fertilization, and embryo transfer. Four F1 calves were born, all confirmed to be heterozygous for the MSTN mutation. Long-term monitoring showed normal growth and no visible health abnormalities. Whole-genome sequencing identified SNPs, INDELs, and structural variants, most with minimal predicted functional effects. Proteomic profiling of Longissimus dorsi muscle quantified 2947 proteins, revealing only subtle expression differences between MSTN-mutated and wild-type cattle. These results demonstrate stable inheritance and confirm that MSTN editing does not disrupt genome integrity or protein expression. Overall, our findings support the safety and utility of MSTN gene editing to improve livestock productivity for future food security.

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Gyeong-Min Gim, Bae Young Choi, Jeongbin Yi, Kyeong-Hyeon Eom, Soo-Young Yum, Dae-Jin Jung, Do-Yoon Kim, Bokyoung Yang, Jong-Seo Kim, Donghwan Shim, Goo Jang. 2026. Safe and Stable Germline Transmission of MSTN Mutations in Cattle.. https://doi.org/10.1002/age.70192

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