...
首页> 外文期刊>Aquaculture Research >The development of size variation in Dover sole, Solea solea and turbot, Scophthalmus maximus: genetic variability between different geographical and among year class farmed strains
【24h】

The development of size variation in Dover sole, Solea solea and turbot, Scophthalmus maximus: genetic variability between different geographical and among year class farmed strains

机译:Dover sole,Solea solea和turtt,Scophthalmus maximus大小变异的发展:不同地理区域之间和年级养殖菌株之间的遗传变异

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Growth and variation in size of turbot and sole larvae originating from different genetic sources were compared at different stocking densities, including genetically based information that might lead to a better knowledge of heterogeneity in cultivated populations. There was no effect of density on growth rate in either species. However, between the two sole batches there was an earlier metamorphosis of faster growing fish from Norway. In sole groups after metamorphosis, variation was stable and therefore no development of size variation was observed. There was no density effect on size variation within turbot batches before, or after metamorphosis. Spreading rate and growth rate were positively correlated in sole larvae indicating that growth of the smaller fish was not equal to the larger ones, but size variation followed a different pattern in turbot. No evidence for either overall significant heterozygosity excess, or deficiency was evidenced in the farmed strains of either species. However, significant differences between farmed populations in terms of genetic variability () were reported, which was rather attributed to within differentiation than between strains. One could safely argue that different strains of Dover sole originated from different genetic sources (factorial analysis). Moreover, when the analysis was extended to individual loci to assess whether specific loci had any consistently larger, or smaller effect on heterozygosity, locus specific significant trends were discerned in turbot. A positive Heterozygosity Fitness (growth rate) Correlation (HFC) suggests that heterozygotes reported enhanced growth rates compared with homozygous ones in flatfish larvae, thus special precautions should be taken into account whenever different genetic structure patterns emerge, because of various flatfish broodstock geographical origin and year class samples.
机译:比较了在不同放养密度下来自不同遗传资源的大菱t和幼虫大小的生长和大小变化,包括基于遗传的信息,这些信息可能会导致人们更好地了解耕种种群的异质性。密度对两种物种的生长速率均无影响。但是,在这两个单独的批次之间,来自挪威的生长较快的鱼类出现了较早的变态。在变态后的唯一群体中,变化稳定,因此未观察到大小变化的发展。在变态之前或之后,大菱t批次内的大小变化没有密度影响。幼鱼的传播速度和生长速度呈正相关,表明小鱼的生长与大鱼的生长不相等,但是大小变化遵循大菱t的不同模式。在这两种物种的养殖菌株中,均未发现总体显着的杂合性过量或缺乏的证据。然而,据报道,在养殖种群之间存在遗传变异方面的显着差异(),这主要归因于分化内而不是菌株之间。可以肯定地说,不同的Dover鞋底菌株来自不同的遗传来源(因子分析)。此外,当将分析扩展到单个基因座以评估特定基因座是否对杂合性产生一致的较大或较小影响时,在大菱t中可以发现基因座特定的显着趋势。杂合度适应性(增长率)相关性(HFC)为正值表明,杂合子在比目鱼幼虫中的生长速度比纯合子要快,因此,由于各种比目鱼亲鱼的地理起源和起源,每当出现不同的遗传结构时都应采取特殊的预防措施。年级样品。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号