基于多性状模型的内蒙古绒山羊早期生长性状基因组预测方法比较

Q3 Medicine
遗传 Pub Date : 2024-05-20 DOI:10.16288/j.yczz.24-036
Lin-Yu Gao, Qi Xu, Yu-Xiao He, Hai-Jiao Xi, Yi-Fan Liu, Tao Zhang, Jin-Quan Li, Yan-Jun Zhang, Rui-Jun Wang, Qi Lü, Bu-Jun Mei, Rui Su, Zhi-Ying Wang
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引用次数: 0

摘要

内蒙古绒山羊是经过长期自然选择和人工选育形成的优良畜禽品种,是目前世界一流的产绒、产肉两用品种。多性状动物模型被认为能显著提高畜禽遗传评估的准确性,实现性状间的间接选择。本研究利用内蒙古绒山羊的血统、基因型、环境和早期生长性状的表型记录建立了多性状动物模型,然后采用 ABLUP、GBLUP 和 ssGBLUP 三种方法估计了早期生长性状(出生重、断奶重、断奶前平均日增重和一岁重)的遗传参数和基因组育种值。利用五重交叉验证法进一步评估了基因组育种值估计的准确性和可靠性。结果表明,三种方法估算的出生重遗传力为 0.13-0.15,断奶重遗传力为 0.13-0.20,断奶前日均增重遗传力为 0.11-0.14,一岁体重遗传力为 0.09-0.14,均属于中低遗传力。断奶体重与断奶前日增重、断奶前日增重和一周岁体重之间存在很强的正遗传相关,相关系数分别为 0.77-0.79 和 0.56-0.67。各性状之间的表型相关性也有相同的模式。用 ABLUP、GBLUP 和 ssGBLUP 方法估计的出生体重育种值的准确度分别为 0.5047、0.6694 和 0.7156;断奶体重分别为 0.6207、0.6456 和 0.7254;断奶前日增重分别为 0.6110、0.6855 和 0.7357;一岁体重分别为 0.6209、0.7155 和 0.7756。综上所述,内蒙古羊绒山羊的早期生长性状属于中低遗传力,遗传改良速度相对较慢。其他生长性状的遗传改良可通过断奶重的选择来实现。ssGBLUP法估计内蒙古绒山羊早期生长性状基因组育种值的准确性和可靠性最高,明显高于ABLUP法,表明ssGBLUP法是内蒙古绒山羊早期生长体重基因组育种的最佳方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of genomic prediction methods for early growth traits of Inner Mongolia cashmere goats based on multi trait models.

Inner Mongolia cashmere goat is an excellent livestock breed formed through long-term natural selection and artificial breeding, and is currently a world-class dual-purpose breed producing cashmere and meat. Multi trait animal model is considered to significantly improve the accuracy of genetic evaluation in livestock and poultry, enabling indirect selection between traits. In this study, the pedigree, genotype, environment, and phenotypic records of early growth traits of Inner Mongolia cashmere goats were used to build multi trait animal model., Then three methods including ABLUP, GBLUP, and ssGBLUP wereused to estimate the genetic parameters and genomic breeding values of early growth traits (birth weight, weaning weight, average daily weight gain before weaning, and yearling weight). The accuracy and reliability of genomic estimated breeding value are further evaluated using the five fold cross validation method. The results showed that the heritability of birth weight estimated by three methods was 0.13-0.15, the heritability of weaning weight was 0.13-0.20, heritability of daily weight gain before weaning was 0.11-0.14, and the heritability of yearling weight was 0.09-0.14, all of which belonged to moderate to low heritability. There is a strong positive genetic correlation between weaning weight and daily weight gain before weaning, daily weight gain before weaning and yearling weight, with correlation coefficients of 0.77-0.79 and 0.56-0.67, respectively. The same pattern was found in phenotype correlation among traits. The accuracy of the estimated breeding values by ABLUP, GBLUP, and ssGBLUP methods for birth weight is 0.5047, 0.6694, and 0.7156, respectively; the weaning weight is 0.6207, 0.6456, and 0.7254, respectively; the daily weight gain before weaning was 0.6110, 0.6855, and 0.7357 respectively; and the yearling weight was 0.6209, 0.7155, and 0.7756, respectively. In summary, the early growth traits of Inner Mongolia cashmere goats belong to moderate to low heritability, and the speed of genetic improvement is relatively slow. The genetic improvement of other growth traits can be achieved through the selection of weaning weight. The ssGBLUP method has the highest accuracy and reliability in estimating genomic breeding value of early growth traits in Inner Mongolia cashmere goats, and is significantly higher than that from ABLUP method, indicating that it is the best method for genomic breeding of early growth weight in Inner Mongolia cashmere goats.

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来源期刊
遗传
遗传 Medicine-Medicine (all)
CiteScore
2.50
自引率
0.00%
发文量
6699
期刊介绍: Hereditas is a national academic journal sponsored by the Institute of Genetics and Developmental Biology of the Chinese Academy of Sciences and the Chinese Society of Genetics and published by Science Press. It is a Chinese core journal and a Chinese high-quality scientific journal. The journal mainly publishes innovative research papers in the fields of genetics, genomics, cell biology, developmental biology, biological evolution, genetic engineering and biotechnology; new technologies and new methods; monographs and reviews on hot issues in the discipline; academic debates and discussions; experience in genetics teaching; introductions to famous geneticists at home and abroad; genetic counseling; information on academic conferences at home and abroad, etc. Main columns: review, frontier focus, research report, technology and method, resources and platform, experimental operation guide, genetic resources, genetics teaching, scientific news, etc.
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