Bai Lingrong, Zhou Huitong, Tao Jinzhong, Hickford Jon G H
International Wool Research Institute, Faculty of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China.
Gene-Marker Laboratory, Faculty of Agriculture and Life Sciences, Lincoln University, Lincoln 7647, New Zealand.
Animals (Basel). 2024 Sep 25;14(19):2772. doi: 10.3390/ani14192772.
Wool, a natural fibre derived from sheep, can present a challenge to wool processing and manufacturing industries because of the variation in fibre traits. Genetic improvement offers one solution to this challenge, and having a better understanding of the genes that affect wool fibre traits is therefore important. Here, we describe ovine , a new member of the KAP19 gene family. Phylogenetic analysis revealed its relationship to other known gene sequences, and an analysis of the nucleotide sequence variation in from 288 sheep of a variety of breeds revealed six unique variant sequences. Among these variants, eleven single nucleotide polymorphisms (SNPs) were detected, with six located in the coding region. Three of these coding region SNPs were non-synonymous and would result in amino acid changes. Associations were observed between the presence of specific sequence variants in Chinese Tan sheep and wool trait variation, particularly an increase in fibre diameter variability in the heterotypic hair fibres. These findings enhance our understanding of the genes that encode sheep wool proteins.
羊毛是一种源自绵羊的天然纤维,由于纤维特性的差异,它可能会给羊毛加工和制造业带来挑战。基因改良为应对这一挑战提供了一种解决方案,因此,更好地了解影响羊毛纤维特性的基因非常重要。在此,我们描述了KAP19基因家族的一个新成员——绵羊KAP19基因。系统发育分析揭示了它与其他已知基因序列的关系,对来自288只不同品种绵羊的该基因核苷酸序列变异分析发现了六个独特的变异序列。在这些变异中,检测到11个单核苷酸多态性(SNP),其中6个位于编码区。这些编码区SNP中有3个是非同义的,会导致氨基酸变化。在中国滩羊中观察到特定序列变异的存在与羊毛性状变异之间的关联,特别是异型毛纤维中纤维直径变异性增加。这些发现加深了我们对编码绵羊羊毛蛋白的基因的理解。