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首页> 外文期刊>Aquaculture >Selection against early maturity in large rainbow trout Oncorhynchus mykiss: the quantitative genetics of sexual dimorphism and genotype-by-environment interactions
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Selection against early maturity in large rainbow trout Oncorhynchus mykiss: the quantitative genetics of sexual dimorphism and genotype-by-environment interactions

机译:大型虹鳟Onkihynchus mykiss中针对早熟的选择:性二态性和基因型-环境相互作用的定量遗传学

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摘要

in rainbow trout Oncorhynchus mykiss, females typically mature at a later age than males, and males mature either early or late. When fanned rainbow trout is produced to obtain large fillets of high quality, especially early maturation of males reduces economical benefits. To examine whether it is possible to change the degree of this sexual dimorphism using selective breeding, we estimated sex-specific heritabilities, genetic correlations between sexes, and cross-environment correlations between two production environments for age at maturity and body weight. Extensive data set including individuals in five generations measured in brackish and fresh water in a split-family design was utilised to estimate the genetic parameters. The timing of maturity (h(2) = 0.12-0.56) and body weight (h(2) = 0.20-0.27) exhibited significant heritabilities, allowing genetic changes in trait means in response to selection. Genetic change in sexual dimorphism of body weight is, however, strongly constrained, as shown by the high genetic correlations between sexes (r(A) greater than or equal to 0.95). For timing of maturity, the heritabilities of males and females differed, but the genetic correlation between sexes was high and positive (r(A) = 0.70). Although sexual dimorphism of age at maturity is less strongly contained than that of body weights, we conclude that no rapid genetic changes can be achieved in the sexual dimorphism of age at maturity through selective breeding. However, breeders may delay the timing of maturity in both sexes to avoid the drawbacks associated with the early maturation. Cross-environment correlations for the timing of maturity and body weight were highly positive (r(A) greater than or equal to 0.61), indicating weak genotype-by-environment interactions and allowing parallel genetic changes in two environments where rainbow trout is farmed.
机译:在虹鳟鱼Onmyhynchus mykiss中,雌性的成熟年龄通常比雄性晚,而雄性则早或晚。生产扇形虹鳟鱼以获得高质量的大鱼片时,尤其是雄鱼过早成熟会降低经济效益。为了检查是否有可能使用选择性育种来改变这种性二态性的程度,我们估计了特定性别的遗传力,性别之间的遗传相关性以及两个生产环境之间成熟年龄和体重之间的跨环境相关性。利用分离的家庭设计中的咸淡水和淡水中测得的五代个体的广泛数据集来估计遗传参数。成熟的时机(h(2)= 0.12-0.56)和体重(h(2)= 0.20-0.27)的时间表现出显着的遗传力,允许性状的遗传变化响应选择。然而,体重的性别二态性的遗传变化受到强烈限制,如两性之间的高遗传相关性(r(A)大于或等于0.95)所示。对于成熟时间,雄性和雌性的遗传力不同,但是性别之间的遗传相关性高且呈正相关(r(A)= 0.70)。尽管与体重相比,成熟时的性别差异没有那么强烈的影响,但我们得出的结论是,通过选择性育种,成熟时的性别差异无法实现快速的遗传变化。但是,育种者可能会延迟两性的成熟时间,以避免与早期成熟相关的弊端。成熟期和体重的跨环境相关性高度正相关(r(A)大于或等于0.61),表明基因型与环境之间的相互作用较弱,并且允许在养殖虹鳟鱼的两个环境中进行平行的遗传变化。

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