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Growth Traits and Sperm Proteomics Analyses of Myostatin Gene-Edited Chinese Yellow Cattle.

Yuefang Zhao | Lei Yang | Guanghua Su | Zhuying Wei | Xuefei Liu | Lishuang Song | Chao Hai | Di Wu | Zhenting Hao | Yunxi Wu | Li Zhang | Chunling Bai | Guangpeng Li
Life (Basel, Switzerland) | 2022

Chinese Yellow Cattle, an ancient and domesticated breed for draft service, provide unique animal genetic resources with excellent genetic features, including crude feed tolerance, good stress resistance, strong adaptability, and tender meat quality; however, their production performance and meat yield are significantly inferior. Herein, the myostatin gene (MSTN), a negative regulator of skeletal muscle development, was knocked out by CRISPR/Cas9 technology. Eight MSTN gene-edited bull calves (MT) were born, and six of them are well-developed. Compared with the control cattle (WT), the growth trait indexes of MT cattle were generally increased, and the hindquarters especially were significantly improved. The biochemical indexes and the semen characteristics demonstrated that MT bulls were healthy and fertile. Consistent with our conjecture, the wobble and beating of MT bull spermatozoa were significantly higher than that of WT. Nine sperm motility-related proteins and nineteen mitochondrial-related proteins were identified by up-regulation in MT bull spermatozoa using FLQ proteomic technique and act to govern sperm flagellum assembly, organization, and beating and provide sufficient energy for sperm motility. The current study confirmed that the MSTN gene-edited Chinese Yellow cattle have improved growth traits and normal fertility, which can be used for beef cattle production and breeding.

Pubmed ID: 35629295

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Associated grants

  • Agency: Genetically Modified Organisms Breeding Major Projects,
    Id: 2016ZX08007-002
  • Agency: Natural Science Foundation of Inner Mongolia,
    Id: 2021MS03004
  • Agency: Major Science and Technology projects of Inner Mongolia Autonomous Region,
    Id: 2021SZD0041
  • Agency: key projects of Revitalizing Inner Mongolia Autonomous Region Through Science and Technology,
    Id: KJXM2020002-03

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DAVID (tool)

RRID:SCR_001881

Bioinformatics resource system including web server and web service for functional annotation and enrichment analyses of gene lists. Consists of comprehensive knowledgebase and set of functional analysis tools. Includes gene centered database integrating heterogeneous gene annotation resources to facilitate high throughput gene functional analysis.

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