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数量性状基因座与遗传基因组学分析鉴定出鸡繁殖力和育雏行为的潜在因果基因。

Quantitative Trait Locus and Genetical Genomics Analysis Identifies Putatively Causal Genes for Fecundity and Brooding in the Chicken.

作者信息

Johnsson Martin, Jonsson Kenneth B, Andersson Leif, Jensen Per, Wright Dominic

机构信息

AVIAN Behavioural Genomics and Physiology Group, Dept of Biology, Linköping University, 58183 Linköping, Sweden.

Department of Surgical Sciences, Orthopaedics, Uppsala University Hospital, 751 85 Uppsala, Sweden.

出版信息

G3 (Bethesda). 2015 Dec 4;6(2):311-9. doi: 10.1534/g3.115.024299.

Abstract

Life history traits such as fecundity are important to evolution because they make up components of lifetime fitness. Due to their polygenic architectures, such traits are difficult to investigate with genetic mapping. Therefore, little is known about their molecular basis. One possible way toward finding the underlying genes is to map intermediary molecular phenotypes, such as gene expression traits. We set out to map candidate quantitative trait genes for egg fecundity in the chicken by combining quantitative trait locus mapping in an advanced intercross of wild by domestic chickens with expression quantitative trait locus mapping in the same birds. We measured individual egg fecundity in 232 intercross chickens in two consecutive trials, the second one aimed at measuring brooding. We found 12 loci for different aspects of egg fecundity. We then combined the genomic confidence intervals of these loci with expression quantitative trait loci from bone and hypothalamus in the same intercross. Overlaps between egg loci and expression loci, and trait-gene expression correlations identify 29 candidates from bone and five from hypothalamus. The candidate quantitative trait genes include fibroblast growth factor 1, and mitochondrial ribosomal proteins L42 and L32. In summary, we found putative quantitative trait genes for egg traits in the chicken that may have been affected by regulatory variants under chicken domestication. These represent, to the best of our knowledge, some of the first candidate genes identified by genome-wide mapping for life history traits in an avian species.

摘要

诸如繁殖力等生活史特征对进化很重要,因为它们构成了终生适合度的组成部分。由于其多基因结构,此类特征难以通过基因定位进行研究。因此,人们对其分子基础知之甚少。找到潜在基因的一种可能方法是定位中间分子表型,如基因表达特征。我们通过将野生鸡与家鸡的高级杂交中的数量性状基因座定位与同一批鸡中的表达数量性状基因座定位相结合,着手定位鸡产蛋量的候选数量性状基因。我们在两项连续试验中测量了232只杂交鸡的个体产蛋量,第二项试验旨在测量育雏情况。我们发现了12个与产蛋量不同方面相关的基因座。然后,我们将这些基因座的基因组置信区间与同一杂交群体中来自骨骼和下丘脑的表达数量性状基因座相结合。产蛋基因座与表达基因座之间的重叠以及性状与基因表达的相关性,从骨骼中鉴定出29个候选基因,从下丘脑中鉴定出5个候选基因。候选数量性状基因包括成纤维细胞生长因子1,以及线粒体核糖体蛋白L42和L32。总之,我们发现了鸡产蛋性状的推定数量性状基因,这些基因可能受到了家鸡驯化过程中调控变异的影响。据我们所知,这些是通过全基因组定位在鸟类中首次鉴定出的一些与生活史特征相关的候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aad8/4751551/aed6a6587d32/311f1.jpg

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