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一个独特的鸡高级杂交系生长性状的遗传剖析

Genetic Dissection of Growth Traits in a Unique Chicken Advanced Intercross Line.

作者信息

Wang Yuzhe, Bu Lina, Cao Xuemin, Qu Hao, Zhang Chunyuan, Ren Jiangli, Huang Zhuolin, Zhao Yiqiang, Luo Chenglong, Hu Xiaoxiang, Shu Dingming, Li Ning

机构信息

College of Animal Science and Technology, China Agricultural University, Beijing, China.

State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing, China.

出版信息

Front Genet. 2020 Sep 4;11:894. doi: 10.3389/fgene.2020.00894. eCollection 2020.

Abstract

The advanced intercross line (AIL) that is created by successive generations of pseudo-random mating after the F generation is a valuable resource, especially in agricultural livestock and poultry species, because it improves the precision of quantitative trait loci (QTL) mapping compared with traditional association populations by introducing more recombination events. The growth traits of broilers have significant economic value in the chicken industry, and many QTLs affecting growth traits have been identified, especially on chromosomes 1, 4, and 27, albeit with large confidence intervals that potentially contain dozens of genes. To promote a better understanding of the underlying genetic architecture of growth trait differences, specifically body weight and bone development, in this study, we report a nine-generation AIL derived from two divergent outbred lines: High Quality chicken Line A (HQLA) and Huiyang Bearded (HB) chicken. We evaluate the genetic architecture of the F, F, F, and F generations of AIL and demonstrate that the population of the F generation sufficiently randomized the founder genomes and has the characteristics of rapid linkage disequilibrium decay, limited allele frequency decline, and abundant nucleotide diversity. This AIL yielded a much narrower QTL than the F generations, especially the QTL on chromosome 27, which was reduced to 120 Kb. An ancestral haplotype association analysis showed that most of the dominant haplotypes are inherited from HQLA but with fluctuation of the effects between them. We highlight the important role of four candidate genes (, , , and ) in bone growth. We also retrieved a missing QTL from AIL on chromosome 4 by identifying the founder selection signatures, which are explained by the loss of association power that results from rare alleles. Our study provides a reasonable resource for detecting quantitative trait genes and tracking ancestor history and will facilitate our understanding of the genetic mechanisms underlying chicken bone growth.

摘要

在F代之后通过连续几代伪随机交配创建的高级杂交系(AIL)是一种有价值的资源,特别是在农业畜禽物种中,因为与传统关联群体相比,它通过引入更多重组事件提高了数量性状基因座(QTL)定位的精度。肉鸡的生长性状在养鸡业中具有重要的经济价值,并且已经鉴定出许多影响生长性状的QTL,特别是在1号、4号和27号染色体上,尽管置信区间较大,可能包含数十个基因。为了更好地理解生长性状差异(特别是体重和骨骼发育)的潜在遗传结构,在本研究中,我们报告了一个来自两个不同远交系的九代AIL:优质鸡A系(HQLA)和惠阳胡须鸡(HB)。我们评估了AIL的F、F、F和F代的遗传结构,并证明F代群体充分随机化了创始基因组,具有快速连锁不平衡衰减、等位基因频率下降有限和丰富的核苷酸多样性的特征。这个AIL产生的QTL比F代窄得多,特别是27号染色体上的QTL,缩小到了120 Kb。祖先单倍型关联分析表明,大多数显性单倍型遗传自HQLA,但它们之间的效应存在波动。我们强调了四个候选基因(、、和)在骨骼生长中的重要作用。我们还通过识别创始选择特征从AIL中找回了4号染色体上一个缺失的QTL,这是由稀有等位基因导致的关联能力丧失所解释的。我们的研究为检测数量性状基因和追踪祖先历史提供了合理的资源,并将有助于我们理解鸡骨骼生长的遗传机制。

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