研究 YAP 和 TAZ 基因中的 InDels 及其对山羊生长特性的影响

Wanxia Zhao, Ziteng Wang, Yichen Lei, Xiaoqin Tang, Xiaohua Yi, Junyi Jiang, Jiapeng Li, Shuhui Wang, Xiuzhu Sun
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摘要

摘要。YAP(Yes-associated protein)基因和TAZ(Transcriptional co-activator with PDZ-binding motif)基因对哺乳动物组织和器官的大小以及骨骼形成、细胞系决定、组织再生和细胞增殖等许多生物学过程具有重要的调控作用。本研究旨在分析266只关中奶山羊和299只陕北白绒山羊的YAP和TAZ基因多态性,并探讨其与体重和体长等生长特性的潜在关系。经过基因分型、PCR扩增和Sanger测序,发现山羊YAP基因和TAZ基因的多态性,其中YAP基因有5个InDels位点,TAZ基因有3个InDels位点。关联分析结果表明,山羊的体重、体高、炮围、胸深、胸宽和胸围均受 YAP 基因中 5 个 InDels 位点的显著影响(p<0.05)。山羊的体高、躯干宽、躯干长、体长和体重均受到 TAZ 基因中 3 个 InDels 位点的显著影响(p<0.05)。总之,本研究发现了山羊 YAP 和 TAZ 的 8 个 InDels 位点,并揭示了它们对山羊表型的影响。这些结果可能会为促进山羊分子育种提供新的途径。
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Investigating InDels in YAP and TAZ genes and their impact on growth characteristics in goats
Abstract. Yes-associated protein (YAP) and a transcriptional co-activator with PDZ-binding motif (TAZ) genes are crucial for regulating the size of mammalian tissues and organs as well as for many biological processes such as bone formation, cell lineage determination, tissue regeneration, and cell proliferation. The purpose of this study was to characterize the YAP and TAZ gene polymorphisms in 266 Guanzhong Dairy Goats and 299 Shanbei White Cashmere Goats and to explore their potential relationship with growth characteristics such as body weight and body length. After genotyping and using PCR amplification and Sanger sequencing to find polymorphisms in the YAP and TAZ genes, five InDels loci were found in the goat YAP gene and three InDels loci in the TAZ gene. The findings of the association analysis demonstrated that the goats' body weight, height, cannon circumference, chest depth, chest breadth, and chest circumference were all substantially influenced by five InDels loci in the YAP gene (p<0.05). Goat body height, trunk breadth, trunk length, body length, and body weight were all substantially impacted by three InDels loci in the TAZ gene (p<0.05). In conclusion, eight InDels loci of goat YAP and TAZ were found in this study, and their impacts on goat phenotype were disclosed. These results might offer fresh avenues for boosting goat molecular breeding.
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