Sutherland Dez-Ann Antoinette Therese, Honaker Christa Ferst, Dorshorst Ben, Andersson Leif, Brisbin I Lehr, Siegel Paul B
Department of Animal and Poultry Sciences, Virginia Tech, Blacksburg, VA, USA.
Department of Medical Biochemistry and Microbiology, Uppsala Biomedical Center, Uppsala University, Uppsala, Sweden.
J Anim Breed Genet. 2018 Jun 21. doi: 10.1111/jbg.12336.
Growth is a complex and dynamic process that may be measured at a specific point or over a period of time. Compared was the growth of male and female chickens over a three-generation period. Involved were red junglefowl (RJF; Gallus gallus), a line of White Plymouth Rock chickens (LWS; Gallus gallus domesticus) selected for low body weight, and their reciprocal F and F crosses. In both sexes, Gompertz's description of growth showed that RJF had significantly lower asymptotes, earlier inflection points, and faster growth rates than LWS. Heterosis for these measures was positive for asymptote and negative for growth rate and inflection point. The RJF commenced egg production at a significantly younger age and lower body weight than LWS. Although F and F reciprocal crosses were similar for body weight and for age at first egg, the F reciprocal crosses began lay at significantly younger ages than the F crosses and parental lines. When viewed on a physiological basis where age and body weight were simultaneously standardized, both parental lines and reciprocal F and F crosses had differing rapid and lag growth phases. Overall, sexual dimorphism increased in all populations from hatch to sexual maturity. The LWS males had a longer growth period consistent with their female counterparts who became sexually mature at older ages. Comprehensively, these results indicate additive and nonadditive genetic variation for distinct growth patterns and changes in resource allocation strategies over time.
生长是一个复杂且动态的过程,可以在特定时间点或一段时间内进行测量。比较了雄性和雌性鸡在三代时间内的生长情况。研究对象包括红原鸡(RJF;原鸡)、一个因体重低而选育的白普利茅斯洛克鸡品系(LWS;家鸡)及其正反交F1和F2代。在两性中,冈珀茨生长模型表明,RJF的渐近线显著更低、拐点更早、生长速率更快。这些指标的杂种优势在渐近线方面为正,在生长速率和拐点方面为负。RJF开始产蛋的年龄和体重显著低于LWS。虽然F1和F2正反交在体重和初产蛋年龄方面相似,但F1正反交开始产蛋的年龄显著低于F2代杂交种和亲本系。从年龄和体重同时标准化的生理基础来看,亲本系和正反交F1和F2代都有不同的快速和缓慢生长阶段。总体而言,从孵化到性成熟,所有群体的两性异形都增加了。LWS雄性的生长周期更长,这与其雌性对应物在较晚年龄性成熟一致。综合来看,这些结果表明了不同生长模式以及随着时间推移资源分配策略变化的加性和非加性遗传变异。