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Heritability of harvest growth traits and genotype-environment interactions in barramundi, Lates calcarifer (Bloch)

机译:澳洲肺金枪鱼(Bloch)的澳洲肺鱼的收获生长性状的遗传力和基因型-环境的相互作用

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Due to its popularity as a food fish, rapid growth and wide environmental tolerances, barramundi, Lates calcarifer, production levels are increasing worldwide and breeding programs are currently being considered and implemented throughout Asia and Australia. However, for selective breeding programs to be effective, it is essential to have information on genetic parameters such as heritability and genetic correlations of traits, as well as on how families perform relative to each other over the culture cycle in single or in multiple environments (ti). Genetic parameters and G x E interactions for barramundi traits (namely weight (W), standard length (Ls), body depth (BD), Fulton's condition factor (K = 10(6)W / Ls(3)) and a body shape index (H = 10 BD / Ls)) at 62 days post hatch (dph) and at harvest size (273-469 dph) were estimated for the first time for this species based on microsatellite DNA parentage assignment of 3110 offspring generated in three mass spawning events, where up to 121 families were produced per batch. Heritability estimates for growth related traits W, Ls and BD were moderate for fish reared in cages at 62 dph (average h(2) = 0.22, 0.27, 0.15; respectively) and high at harvest for fish reared in intensive tanks and in a semi intensive pond (average h(2) = 0.40, 0.37, 0.40; respectively). Estimates for ratio traits K and H were lower than for growth traits for all ages and environments (average h(2) K = 0.14 and h(2) H = 0.09). Genetic and phenotypic correlations between W and Ls, W and BD and Ls and BD ranged from 0.91 to 0.99, whereas correlations involving K and H and other traits (W, Ls and BD) were lower (0.07 to 0.88), but positive, indicating that these traits may also be modified if selection is based on W (or Ls) alone. In addition, no significant G x E interactions for growth related traits W, Ls and BD were detected for barramundi either reared in fresh vs. sea water cages at 62 dph (r(g) >= 0.97), or commercially reared in fresh water until harvest size (343-469 dph) in an intensive recirculation aquaculture system vs. a semi-intensive pond (r(g) similar to 0.99). High heritability estimates found here show that additive genetic effects play a significant role in barramundi growth, especially in older fish, suggesting that growth rates could be greatly improved through selective breeding
机译:由于其作为食用鱼的受欢迎程度,快速增长和宽环境耐受性,澳洲肺鱼,晚生鳞甲鱼的产量在世界范围内正在增加,目前正在考虑并在整个亚洲和澳大利亚实施育种计划。但是,要使选育计划有效,就必须掌握有关遗传参数的信息,例如遗传性状和性状的遗传相关性,以及有关家族在一个或多个环境中在整个培养周期中的相对表现如何( ti)。澳洲肺鱼性状(即体重(W),标准长度(Ls),体深(BD),富尔顿条件因子(K = 10(6)W / Ls(3))的遗传参数和G x E相互作用孵化后第62天(dph)和收获规模(273-469 dph)时,首次根据该物种在3群中产生的3110个后代的微卫星DNA亲本分配,估算了该物种的指数(H = 10 BD / Ls)产卵事件,每批生产多达121个科。在网箱中以62 dph(平均h(2)= 0.22,0.27,0.15;分别)饲养的鱼的生长相关性状W,Ls和BD的遗传力估计值适中,而在集约化水箱和半水箱中养殖的鱼的收获率较高精养池塘(平均h(2)分别为0.40、0.37、0.40)。在所有年龄和环境下,比率性状K和H的估计值均低于生长性状(平均h(2)K = 0.14和h(2)H = 0.09)。 W和Ls,W和BD以及Ls和BD之间的遗传和表型相关性介于0.91至0.99之间,而涉及K和H及其他性状(W,Ls和BD)的相关性较低(0.07至0.88),但呈正相关如果选择仅基于W(或Ls),也可以修改这些特征。此外,在淡水和海水笼中以62 dph(r(g)> = 0.97)饲养或在淡水中商业饲养的金枪鱼,未检测到与生长相关性状W,Ls和BD显着的G x E相互作用。直到集约化循环水产养殖系统中的收获量(343-469 dph)与半集约化池塘(r(g)与0.99相似)。在这里发现的高遗传力估计表明,附加遗传效应在澳洲肺鱼的生长中起着重要作用,特别是在老鱼中,这表明通过选择性育种可以大大提高生长速度

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