首页> 外文期刊>Journal of Animal Science >Genome-wide mapping and identification of new quantitative trait loci affecting meat production, meat quality, and carcass traits within a Duroc purebred population.
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Genome-wide mapping and identification of new quantitative trait loci affecting meat production, meat quality, and carcass traits within a Duroc purebred population.

机译:全基因组分布图和鉴定影响杜洛克纯种种群中肉类生产,肉质和car体性状的新的数量性状基因座。

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Most QTL detection studies in pigs have been carried out in experimental F2 populations. However, segregation of a QTL must be confirmed within a purebred population for successful implementation of marker-assisted selection. Previously, QTL for meat quality and carcass traits were detected on SSC 7 in a Duroc purebred population. The objectives of the present study were to carry out a whole-genome QTL analysis (except for SSC 7) for meat production, meat quality, and carcass traits and to confirm the presence of segregating QTL in a Duroc purebred population. One thousand and four Duroc pigs were studied from base to seventh generation; the pigs comprised 1 closed population of a complex multigenerational pedigree such that all individuals were related. The pigs were evaluated for 6 growth traits, 7 body size traits, 8 carcass traits, 2 physiological traits, and 11 meat quality traits, and the number of pigs with phenotypes ranged from 421 to 953. A total of 119 markers were genotyped and then used for QTL analysis. We utilized a pedigree-based, multipoint variance components approach to test for linkage between QTL and the phenotypic values using a maximum likelihood method; the logarithm of odds score and QTL genotypic heritability were estimated. A total of 42 QTL with suggestive linkages and 3 QTL with significant linkages for 26 traits were detected. These included selection traits such as daily BW gain, backfat thickness, loin eye muscle area, and intramuscular fat content as well as correlated traits such as body size and meat quality traits. The present study disclosed QTL affecting growth, body size, and carcass, physiological, and meat quality traits in a Duroc purebred population.
机译:猪中大多数QTL检测研究都是在实验性F 2 种群中进行的。但是,必须在纯种种群中确认QTL的分离,才能成功实施标记辅助选择。先前,在杜洛克纯种种群中,在SSC 7上检测到了肉品质和car体性状的QTL。本研究的目的是对肉类生产,肉质和car体性状进行全基因组QTL分析(SSC 7除外),并确认杜洛克纯种中存在分离的QTL。从基础到第七代研究了104头杜洛克猪。这些猪包括1个封闭的复杂多代谱系种群,因此所有个体都相关。对猪进行了6个生长性状,7个体重性状,8个car体性状,2个生理性状和11个肉质性状的评估,表型的猪的数量在421至953之间。对119个标记进行基因分型,然后进行基因分型。用于QTL分析。我们使用基于谱系的多点方差成分方法,使用最大似然法测试QTL和表型值之间的联系。估计比值对数和QTL基因型遗传力。共检测到42个具有暗示性连锁的QTL和3个与显着性连锁的QTL,涉及26个性状。这些包括选择性状,例如每日体重增加,背脂厚度,腰部眼肌面积和肌肉内脂肪含量,以及相关性状,例如体型和肉质性状。本研究揭示了影响杜洛克纯种种群生长,体重,size体,生理和肉质性状的QTL。

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