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辽宁绒山羊羊绒细度相关功能基因KRT35和TCHHL1的相关性及回归分析

Correlation and regression analysis of KRT35 and TCHHL1 functional genes for cashmere fineness in Liaoning cashmere goats.

作者信息

Hong Weihang, Ma Hua, Nie Lingjun, Li Shuaitong, Kong Lingchao, Duan Ran, Yuan Qingyu, Zhan Qiying, Wang Jinghan, Cong Yuyan, Wang Zeying

机构信息

College of Animal Science &Veterinary Medicine, Shenyang Agricultural University, China.

Youth College of Political Science, Inner Mongolia Normal University, China.

出版信息

J Genet Eng Biotechnol. 2024 Dec;22(4):100434. doi: 10.1016/j.jgeb.2024.100434. Epub 2024 Nov 6.

Abstract

Liaoning cashmere goat (LCG) is the world's highest cashmere producing white cashmere goat. It has the characteristics of long cashmere fiber, high net cashmere rate, moderate cashmere fineness, white cashmere, strong size, strong adaptability, stable genetic performance, and good effect in improving middle and low production cashmere goat. It is known as "National treasure of China". With LCG as the paternal parent, five new local breeds have been cultivated, which has made outstanding contributions to the improvement and breeding of Chinese cashmere goat breeds. LCG cashmere has moderate fineness (the average fineness of cashmere of LCG population is about 16 µm).However, as a slightly coarse textile raw material, we hope to identify the key genes regulating cashmere fineness through PCR-seq and MLR, in order to reduce cashmere fineness.We collected and extracted DNA from the blood of Liaoning cashmere goats, designed primers, PCR amplification, and Statistical analysis. It was found that the the AA genotype of the G3667A locus of the KRT35 gene, CT genotype of the T615C locus of the TCHHL1 gene in bucks and the CC genotype of does, as well as CT genotype of the T615C locus of the TCHHL1 gene in bucks and the CC genotype of does are dominant genotypes in cashmere fineness. The dominant haplotype combination with multiple factors and effects of cashmere fineness has been determined to be CTGG in bucks and TTGG in does. There was a significant linear regression relationship between the fineness of cashmere in LCG and the cashmere rate and cashmere quantity. There is a significant linear regression relationship between the fineness of LCG and the cashmere rate and cashmere quantity. CF = 0.001SQ-0.71CY + 20.784 (R = 0.818) in buck and CF = 0.001SQ-0.767CY + 22.009 (R = 0.863) in doe. Conclusion: The AA genotype of KRT35 gene, CT genotype of TCHHL1 gene in bucks and CC genotype of does can be used as molecular markers to assist in the selection of cashmere fineness.

摘要

辽宁绒山羊是世界上产绒量最高的白色绒山羊。它具有羊绒纤维长、净绒率高、羊绒细度适中、羊绒洁白、体型大、适应性强、遗传性能稳定以及改良中低产绒山羊效果良好等特点,被誉为“中国国宝”。以辽宁绒山羊为父本,培育出了5个新的地方品种,为中国绒山羊品种的改良和选育做出了突出贡献。辽宁绒山羊羊绒细度适中(辽宁绒山羊群体羊绒平均细度约为16微米)。然而,作为一种稍粗的纺织原料,我们希望通过PCR测序和多元线性回归分析来鉴定调控羊绒细度的关键基因,以降低羊绒细度。我们采集并提取了辽宁绒山羊血液中的DNA,设计引物、进行PCR扩增并进行统计分析。结果发现,KRT35基因G3667A位点的AA基因型、公羊中TCHHL1基因T615C位点的CT基因型和母羊的CC基因型,以及公羊中TCHHL1基因T615C位点的CT基因型和母羊的CC基因型是羊绒细度的优势基因型。已确定公羊中多因素多效应的优势单倍型组合为CTGG,母羊为TTGG。辽宁绒山羊羊绒细度与绒率和绒量之间存在显著的线性回归关系。辽宁绒山羊细度与绒率和绒量之间存在显著的线性回归关系。公羊中CF = 0.001SQ - 0.71CY + 20.784(R = 0.818),母羊中CF = 0.001SQ - 0.767CY + 22.009(R = 0.863)。结论:KRT35基因的AA基因型、公羊中TCHHL1基因的CT基因型和母羊的CC基因型可作为辅助选择羊绒细度的分子标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e22c/11577281/562a1732f897/gr1.jpg

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