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An 8-Year Breeding Program for Asian Seabass Lates calcarifer: Genetic Evaluation Experiences and Challenges

机译:亚洲鲈鱼鳞翅目八年育种计划:遗传评估经验和挑战。

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摘要

Selective breeding for marine finfish is challenging due to difficulties in reproduction, larval rearing, and on-growth in captive environments. The farming of Asian seabass (Lates calcarifer) has all these problems and our knowledge of the quantitative genetic information (heritability and correlations) of traits necessary for commercial exploitation is poor. The present study was conducted to address this knowledge gap and to provide information that can be applied to sea bass and other aquaculture species. We carried out a comprehensive genetic evaluation for three traits (body weight, total length, and survival) collected from a breeding population for Asian seabass over an eight-year period from 2010 to 2017. Statistical analysis was carried out on 4,567 adult fish at 105, 180, 270, 360, 450, and 570 days post-hatch (dph). The heritabilities (h2) estimated for body weight and length using linear mixed model were moderate to high (0.12 to 0.78 and 0.41 to 0.85, respectively) and they differed between the measurement periods. Survival during grow-out phase was analyzed using threshold logistic and probit models. The heritability estimates for survival rate on the underlying liability scale (hL2) varied from 0.05 to 0.21. When the observed heritability obtained from the linear mixed model was back-transformed to the liability scale, they were similar but not significant. In addition, we examined effects of genotype by environment (G × E) interaction on body traits. The genetic correlation for body weight between tank and sea cage cultures were high (0.91–0.94) in the first and second rearing periods (180 and 270 dph) but the correlation was decreased to 0.59 ± 0.33 at 360 dph. This suggests that the genotype by environment interaction is important for body traits in this population. Furthermore, the genetic correlations of body weights between different measurement periods were moderate but different from one. This suggests that body weights measured at different time points may be different traits and selection for improved early weight may not capture all genetic expressions in subsequent rearing periods in Asian seabass. Selection of the nucleus in sea cages may produce genotypes that do not perform equally well in tanks, although this deserves further studies to determine a suitable selection environment and optimize the breeding program. This paper discusses challenges encountered during implementation of the selection program for L. calcarifer.
机译:由于繁殖,幼体饲养和圈养环境中的生长困难,海洋有鳍鱼类的选择性育种具有挑战性。亚洲鲈鱼的养殖存在所有这些问题,而我们对商业开发所必需的性状的定量遗传信息(遗传性和相关性)的了解很差。进行本研究是为了解决这一知识空白并提供可应用于鲈鱼和其他水产养殖种类的信息。我们对从2010年至2017年的八年中从亚洲鲈鱼繁殖种群中收集的三个特征(体重,总长和存活)进行了全面的遗传评估。对105只4,567只成年鱼进行了统计分析。孵化后(dph)的180、270、360、450和570天。使用线性混合模型估计的体重和身长的遗传力(h 2 )为中度到高度(分别为0.12至0.78和0.41至0.85),并且在测量期间之间存在差异。使用阈值逻辑模型和概率模型分析了成长期的存活率。潜在责任等级的生存率的遗传力估计值( < mrow> h L 2 )从0.05到0.21。当从线性混合模型获得的观察到的遗传力被反变换为责任量表时,它们相似但不显着。此外,我们检查了环境(G×E)相互作用对基因型的影响。在第一个和第二个饲养期(180和270 dph)中,水箱和海笼养殖之间体重的遗传相关性很高(0.91-0.94),但在360 dph时,相关性降低到0.59±0.33。这表明环境相互作用的基因型对于该人群的身体特征很重要。此外,不同测量时期之间体重的遗传相关性是中等的,但不同于一个。这表明在不同时间点测得的体重可能是不同的性状,为提高早期体重而进行的选择可能无法捕获亚洲鲈鱼随后饲养期间的所有基因表达。在海笼中选择细胞核可能会产生在水箱中表现不佳的基因型,尽管这值得进一步研究以确定合适的选择环境并优化育种程序。本文讨论了实施卡尔卡弗氏菌选择计划时遇到的挑战。

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