首页> 外文期刊>Aquaculture >Genetic improvement of farmed tilapias: genetic parameters for body weight at harvest in Nile tilapia (Oreochromis niloticus) during five generations of testing in multiple environments.
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Genetic improvement of farmed tilapias: genetic parameters for body weight at harvest in Nile tilapia (Oreochromis niloticus) during five generations of testing in multiple environments.

机译:养殖罗非鱼的遗传改良:尼罗罗非鱼( Oreochromis niloticus )在多个环境中进行五代测试后收获时体重的遗传参数。

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Phenotypic and genetic parameters for harvest body weight were estimated within and across multiple test environments and five consecutive generations of the synthetic GIFT population. Of a total of about 62,000 individually tagged fish, 43,066 individuals from 461 sires and 815 dams across generations had body weights recorded in two to eight different test environments per generation from 1991 to 1996. The test environments included earthen ponds (fertilized with inorganic fertilizer, organic manure, or on-farm agricultural residues), cage culture, rice-fish, and ponds at test stations located in different agro-climatic regions. Heritability estimates for harvest body weight within test environments and generation were on average h2=0.31 (range 0.06-0.68) and the estimates for effects common to full sibs other than additive genetic effects c2=0.09 (range 0.04-0.16). The estimates tended to be higher in cage test environments. After adjusting for heterogeneous variances of harvest body weight across generations, test environments and sexes, the estimates across test environments within generations were on average h2=0.23 and c2=0.03 over the five generations, while the estimate across all test environments and generations was h2=0.16+or-0.02 and c2=0.10+or-0.01. The genetic correlations (rg) between harvest body weights of sibs in different test environments were in general high (0.53-0.99, mean 0.89) for all environments except for intensive cage culture, implying minor genotype by environment (G x E) interactions. The genetic correlations involving the intensive cage culture environment were lower (0.08-0.43) and not significantly different from zero, suggesting that G x E interactions may occur if test environments differ widely. It is proposed that this G x E interaction may involve effects of sexual maturation on growth in pond environments. The overall heritability for body weight at harvest of females (0.20+or-0.02) was not significantly different from that of males (0.16+or-0.02). However, these estimates were lower in ponds than in cages, in particular for male body weight. Estimates of genetic correlations between harvest body weight of sib males and females also suggested a moderate sex by genotype interaction in ponds (rg=0.78+or-0.04) that did not occur in cages (rg=0.97+or-0.04). These results are consistent with the realization that the GIFT population responds well to selection for increased body weight at harvest across a wide range of pond farm environments (including rice-fish culture) without the need to develop environment specific selection lines. The benefits of specialized selection for intensive cage farming systems should be investigated further.
机译:在多个测试环境中以及连续五个世代的GIFT种群内和之间,估算了收获体重的表型和遗传参数。在大约6.2万条单独标记的鱼中,从1991年到1996年,在世代之间的461个父系和815个大坝中,有43,066个个体的体重记录在每代2至8个不同的测试环境中。测试环境包括土池(使用无机肥料施肥,有机肥料或农场上的农业残留物),网箱养殖,稻鱼和位于不同农业气候区的测试站的池塘。在测试环境和世代中收获体重的遗传力估计平均为 h 2 = 0.31(范围为0.06-0.68),并且除同种外,其他同胞均具有相同的影响遗传效应 c 2 = 0.09(范围0.04-0.16)。在笼式测试环境中,估计值往往更高。调整了不同世代,测试环境和性别的收成体重的异质方差后,几代内测试环境的估计平均值平均为 h 2 = 0.23和 c 2 = 0.03,这五个世代,而所有测试环境和世代中的估计值为 h 2 = 0.16 + or- 0.02和 c 2 = 0.10 +或-0.01。在不同测试环境中,同胞的收获体重之间的遗传相关性( r g )通常较高(0.53-0.99,平均值为0.89)除密集网箱养殖外,所有环境都适用,这意味着环境(G x E)相互作用具有较小的基因型。涉及密集网箱养殖环境的遗传相关性较低(0.08-0.43),且与零之间无显着差异,这表明如果测试环境差异很大,则可能发生G x E相互作用。有人提出这种G x E相互作用可能涉及性成熟对池塘环境中生长的影响。雌性(0.20+或-0.02)收获时体重的总体遗传力与雄性(0.16+或-0.02)没有显着差异。但是,这些估计值在池塘中比在网箱中要低,特别是对于雄性体重。同胞雄性和雌性收获体重之间的遗传相关性估计也表明,通过基因型相互作用在池塘中具有中等性别( r g = 0.78 +或-0.04)未出现在笼子中( r g = 0.97 +或-0.04)。这些结果与以下认识一致:GIFT种群对于在广泛的池塘养殖环境(包括水稻-鱼类养殖)中收获时增加体重的选择反应良好,而无需建立特定于环境的选择系。精养网箱养殖系统专业选择的好处应进一步研究。

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