4.7 Article

Uncovering Novel Features of the Pc Locus in Horn Development from Gene-Edited Holstein Cattle by RNA-Sequencing Analysis

期刊

出版社

MDPI
DOI: 10.3390/ijms232012060

关键词

Holstein bull; horn development; Pc; Tild-CRISPR; Cas9; RNA-seq

资金

  1. Fundamental Research Funds for Central Non-profit Scientific Institution [2019-YWF-YB-03]
  2. National Key R&D Program of Ningxia [2021BEF02023]
  3. National Natural Science Foundation of China [32102549, 3187131067]
  4. Modern Agro-Industry Technology Research System of the PR China [CARS36]
  5. Agricultural Science and Technology Innovation Program [ASTIP-IAS06]
  6. National Key R&D Program of Gansu [21YF5NJ196]

向作者/读者索取更多资源

The Pc mutation locus is a simple single mutation for breeding polled cattle. The mechanism of Pc locus involves inhibition of neural crest cell EMT generation and keratin expression, affecting the migration and keratinization of the horn bud tissue.
The Polled Celtic (Pc) mutation locus is a genetically simple single mutation that is the best choice for breeding polled cattle using gene editing. However, the mechanism of the Pc locus for regulating horn development is unclear, so we used gene editing, somatic cell nuclear transfer and embryo transfer to obtain polled Holstein fetal bovine (gestation time 90 days) with a homozygous Pc insertion (gene-edited Holstein fetal bovine, EH) and the wild-type 90 days Holstein fetal bovine (WH) as controls. The hematoxylin-eosin (HE) staining results showed that, compared to the WH, the EH horn buds had no white keratinized projections or vacuolated keratinocytes and no thick nerve bundles under the dermal tissue. Furthermore, DNA sequencing results showed that the Pc locus was homozygously inserted into the fetal bovine genome. A total of 791 differentially expressed genes were identified by transcriptome sequencing analysis. Enrichment analysis and protein interaction analysis results of differentially expressed genes showed that abundant gene changes after Pc insertion were associated with the adhesion molecule regulation, actin expression, cytoskeletal deformation and keratin expression and keratinization. It was also noted that the results contained several genes that had been reported to be associated with the development of horn traits, such as RXFP2 and TWIST1. This study identified these changes for the first time and summarized them. The results suggested that the Pc mutant locus may inhibit neural crest cell EMT generation and keratin expression, leading to failures in neural crest cell migration and keratinization of the horn bud tissue, regulating the production of the polled phenotype.

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