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首页> 外文期刊>Cytogenetic and genome research >Identification of quantitative trait loci affecting shank length, body weight and carcass weight from the Japanese cockfighting chicken breed, Oh-Shamo (Japanese Large Game).
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Identification of quantitative trait loci affecting shank length, body weight and carcass weight from the Japanese cockfighting chicken breed, Oh-Shamo (Japanese Large Game).

机译:从日本斗鸡鸡品种Oh-Shamo(Japan Large Game)中鉴定影响小腿长,体重和car体重量的数量性状基因座。

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摘要

We performed a quantitative trait locus (QTL) analysis to map QTLs controlling shank length, body weight, and carcass weight in a resource family of 245 F(2) birds developed from a cross of the large-sized, native, Japanese cockfighting breed, Oh-Shamo (Japanese Large Game), and the White Leghorn breed of chickens. Interval mapping revealed three significant QTLs for shank length on chromosomes 1, 4 and 24 at the experiment-wise 5% level, and a suggestive shank length QTL on chromosome 27 at the experiment-wise 10% level. For body weight two QTLs, one significant and the other suggestive, were identified on chromosomes 4 and 24, respectively. As expected, QTLs for carcass weight, which was highly correlated with body weight (r = 0.95), were detected at the same chromosomal locations as the detected body weight QTLs. Interestingly, the chromosomal locations containing these body weight and carcass weight QTLs coincided with those of two of the four shank length QTLs detected. No QTL with an epistatic interaction effect was discovered for any trait. The total contribution of all detected QTLs to genetic variance was 98.4%, 27.0% and 25.9% for shank length, body weight and carcass weight, respectively, indicating that most shank length QTLs have been identified but many body weight and carcass weight QTLs have been overlooked by the present analysis because of a low coverage rate of the 88 microsatellite markers used here (approximately 46% of the whole genome).
机译:我们进行了数量性状基因座(QTL)分析,以绘制控制245个F(2)鸟类资源家族中的小腿长度,体重和car体重量的QTL,这些鸟类是从大型,本土,日本斗鸡品种的杂交中发展而来的, Oh-Shamo(日本大型猎物)和White Leghorn鸡。间隔作图显示,在实验方式为5%时,染色体1、4和24上的小腿长度有3个重要的QTL,在实验方式为10%时,在27号染色体上有暗示性的小腿长QTL。对于体重,分别在4号和24号染色体上鉴定了两个QTL,一个显着,另一个暗示。正如预期的那样,在与检测到的体重QTL相同的染色体位置上检测到了与体重高度相关的QTL(r = 0.95)。有趣的是,包含这些体重和car体重量QTL的染色体位置与检测到的四个小腿长QTL中的两个吻合。没有发现具有上位性相互作用效应的QTL。胫骨长度,体重和car体重量的所有检测到的QTL对遗传变异的总贡献分别为98.4%,27.0%和25.9%,这表明已鉴定出大多数胫骨长度QTL,但已经鉴定出许多体重和car体重量QTL由于此处使用的88个微卫星标记的覆盖率较低(约占整个基因组的46%),因此本分析忽略了该方法。

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