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许多用于生长羽毛的数量性状基因座与 F(2)肉鸡×蛋鸡杂交的体重基因座共定位。

Many quantitative trait loci for feather growth in an F(2) broiler × layer cross collocate with body weight loci.

机构信息

The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Easter Bush, Midlothian EH25 9RG, Scotland.

出版信息

Br Poult Sci. 2012;53(2):162-7. doi: 10.1080/00071668.2012.668613.

Abstract
  1. A genome-wide scan of 467 F(2) progeny of a broiler x layer cross was conducted to identify quantitative trait loci (QTL) affecting the rate of growth of the tail, wing and back feathers, and the width of the breast feather tract, at three weeks of age. 2. Correlations between the traits ranged from 0·36 to 0·61. Males had longer tail and wing feathers and shorter back feathers than females. Breast feather tract width was greater in females than males. 3. QTL effects were generally additive and accounted for 11 to 45% of sex average feather lengths of the breeds, and 100% of the breast feather tract width. Positive and negative alleles were inherited from both lines, whereas the layer allele was larger than the broiler allele after adjusting for body weight. 4. A total of 4 genome-significant and 4 suggestive QTL were detected. At three or 6 weeks of age, 5 of the QTL were located in similar regions as QTL for body weight. 5. Analysis of a model with body weight at three weeks as a covariate identified 5 genome significant and 6 suggestive QTL, of which only two were coincident with body weight QTL. One QTL for feather length at 148 cM on GGA1 was identified at a similar location in the unadjusted analysis. 6. The results suggest that the rate of feather growth is largely controlled by body weight QTL, and that QTL specific for feather growth also exist.
摘要
  1. 对肉鸡 x 蛋鸡杂交的 467 个 F2 后代进行了全基因组扫描,以鉴定影响 3 周龄时尾羽、翼羽和背羽生长速度以及胸羽区宽度的数量性状基因座(QTL)。

  2. 各性状间的相关性在 0.36 至 0.61 之间。雄性的尾羽和翼羽比雌性长,背羽比雌性短。雌性的胸羽区宽度大于雄性。

  3. QTL 效应通常为加性,占品种间雌雄平均羽长的 11%至 45%,占胸羽区宽度的 100%。正、负等位基因均来自两个品系,经体重校正后,层鸡等位基因大于肉鸡等位基因。

  4. 共检测到 4 个基因组显著和 4 个提示性 QTL。在 3 或 6 周龄时,5 个 QTL 位于与体重 QTL 相似的区域。

  5. 用 3 周龄体重作为协变量分析模型,鉴定出 5 个基因组显著和 6 个提示性 QTL,其中只有 2 个与体重 QTL 一致。在未校正分析中,在 GGA1 上 148cM 处发现了一个与羽毛长度相关的 QTL,其位置与体重 QTL 相似。

  6. 结果表明,羽毛生长速度主要受体重 QTL 控制,并且存在专门控制羽毛生长的 QTL。

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