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基因型与环境互作对红罗非鱼(丽鱼科)遗传进展和遗传参数估计的影响

Effects of Genotype by Environment Interaction on Genetic Gain and Genetic Parameter Estimates in Red Tilapia ( spp.).

作者信息

Nguyen Nguyen H, Hamzah Azhar, Thoa Ngo P

机构信息

School of Science and Engineering, University of the Sunshine CoastMaroochydore, QLD, Australia.

National Prawn Fry Production and Research CenterKota Kuala Muda, Malaysia.

出版信息

Front Genet. 2017 Jun 13;8:82. doi: 10.3389/fgene.2017.00082. eCollection 2017.

Abstract

The extent to which genetic gain achieved from selection programs under strictly controlled environments in the nucleus that can be expressed in commercial production systems is not well-documented in aquaculture species. The main aim of this paper was to assess the effects of genotype by environment interaction on genetic response and genetic parameters for four body traits (harvest weight, standard length, body depth, body width) and survival in Red tilapia ( spp.). The growth and survival data were recorded on 19,916 individual fish from a pedigreed population undergoing three generations of selection for increased harvest weight in earthen ponds from 2010 to 2012 at the Aquaculture Extension Center, Department of Fisheries, Jitra in Kedah, Malaysia. The pedigree comprised a total of 224 sires and 262 dams, tracing back to the base population in 2009. A multivariate animal model was used to measure genetic response and estimate variance and covariance components. When the homologous body traits in freshwater pond and cage were treated as genetically distinct traits, the genetic correlations between the two environments were high (0.85-0.90) for harvest weight and square root of harvest weight but the estimates were of lower magnitudes for length, width and depth (0.63-0.79). The heritabilities estimated for the five traits studied differed between pond (0.02 to 0.22) and cage (0.07 to 0.68). The common full-sib effects were large, ranging from 0.23 to 0.59 in pond and 0.11 to 0.31 in cage across all traits. The direct and correlated responses for four body traits were generally greater in pond than in cage environments (0.011-1.561 vs. -0.033-0.567 genetic standard deviation units, respectively). Selection for increased harvest body weight resulted in positive genetic changes in survival rate in both pond and cage culture. In conclusion, the reduced selection response and the magnitude of the genetic parameter estimates in the production environment (i.e., cage) relative to those achieved in the nucleus (pond) were a result of the genotype by environment interaction and this effect should be taken into consideration in the future breeding program for Red tilapia.

摘要

在严格控制的核心环境中通过选育计划所获得的遗传进展,在商业生产系统中能够表现出来的程度,在水产养殖物种中尚无充分记录。本文的主要目的是评估基因型与环境互作对红罗非鱼( spp.)四个体性状(收获体重、标准体长、体深、体宽)和存活的遗传反应及遗传参数的影响。生长和存活数据记录于2010年至2012年在马来西亚吉打州日得拉渔业部水产养殖推广中心土池中进行的、对收获体重进行了三代选育的一个纯种群体的19916尾个体鱼。该谱系共有224个父本和262个母本,可追溯到2009年的基础群体。使用多变量动物模型来测量遗传反应并估计方差和协方差成分。当将淡水池塘和网箱中的同源体性状视为遗传上不同的性状时,收获体重和收获体重平方根在两种环境之间的遗传相关性较高(0.85 - 0.90),但体长、体宽和体深的估计值幅度较低(0.63 - 0.79)。所研究的五个性状在池塘(0.02至0.22)和网箱(0.07至0.68)中的遗传力估计值有所不同。所有性状的共同全同胞效应都很大,在池塘中范围为0.23至0.59,在网箱中为0.11至0.31。四个体性状的直接和相关反应在池塘环境中通常比在网箱环境中更大(分别为0.011 - 1.561对 - 0.033 - 0.567遗传标准差单位)。选择增加收获体重导致池塘和网箱养殖中存活率的正向遗传变化。总之,相对于核心环境(池塘)所实现的,生产环境(即网箱)中选择反应的降低和遗传参数估计值的幅度是基因型与环境互作的结果,在未来红罗非鱼的育种计划中应考虑这种效应。

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