The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Roslin, Midlothian, EH25 9PS, Scotland, UK.
Reproduction. 2011 Mar;141(3):381-9. doi: 10.1530/REP-10-0276. Epub 2010 Dec 22.
Critical age, weight and body composition have been suggested as necessary correlates of sexual maturity. A genome scan to identify quantitative trait loci (QTL) for age and body weight at first egg (AFE and WFE) was conducted on 912 birds from an F(2) broiler-layer cross using 106 microsatellite markers. Without a covariate, QTL for body WFE were detected on chromosomes 2, 4, 8, 27 and Z and a single QTL for AFE was detected on chromosome 2. With AFE as a covariate, additional QTL for body WFE were found on chromosomes 1 and 13, with abdominal fat pad as covariate a QTL for body WFE was found on chromosome 1. With body WFE as covariate, additional QTL for AFE were found on chromosomes 1, 3, 4, 13 and 27. The QTL generally acted additively and there was no evidence for epistasis. Consistent with the original line differences, broiler alleles had positive effects on body WFE and negative effects on AFE, whereas the phenotypic correlation between the two traits was positive. The mapped QTL for body WFE cumulatively accounted for almost half the body weight difference between the chicken lines at puberty. Overlapping QTL for body WFE and body weight to 9 weeks of age indicate that most QTL affecting growth rate also affect body WFE. The co-localisation of QTL for body weight, growth and sexual maturity suggests that body weight and growth rate are closely related to the attainment of sexual maturity and that the genetic determination of growth rate has correlated effects on puberty.
关键的年龄、体重和身体成分被认为是性成熟的必要相关因素。在一个 F2 肉鸡层杂交群体中,使用 106 个微卫星标记,对 912 只鸡进行了年龄和首次产卵时体重(AFE 和 WFE)的数量性状基因座(QTL)的基因组扫描。在没有协变量的情况下,在第 2、4、8、27 和 Z 染色体上检测到了与 WFE 相关的 QTL,在第 2 染色体上检测到了一个与 AFE 相关的 QTL。在考虑 AFE 作为协变量的情况下,在第 1 和 13 染色体上发现了与 WFE 相关的附加 QTL,在考虑腹部脂肪垫作为协变量的情况下,在第 1 染色体上发现了与 WFE 相关的 QTL。在考虑 WFE 作为协变量的情况下,在第 1、3、4、13 和 27 染色体上发现了与 AFE 相关的附加 QTL。这些 QTL 通常表现为加性效应,没有上位性效应的证据。与原始系差异一致,肉鸡等位基因对 WFE 有正向影响,对 AFE 有负向影响,而这两个性状之间的表型相关性是正的。所定位的 WFE 相关 QTL 累积解释了青春期鸡线之间近一半的体重差异。与体重相关的 QTL 和 9 周龄体重的重叠表明,大多数影响生长速度的 QTL 也影响 WFE。体重、生长和性成熟的 QTL 共定位表明,体重和生长速度与性成熟的获得密切相关,生长速度的遗传决定因素对青春期有相关影响。