评估单脊鱼 G2 选育世代生长性状的遗传参数

Song Jiang, Jieyi Wang, Wanli Yang, Dewei Kong, Qi-bin Yang, Jianhua Huang, Li-Shi Yang, Yundong Li, F. Zhou
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摘要

2020 年,利用人工交配设计构建了 15 个第二代单脊东方鲀全同胞家系。用荧光标记标记家系后,在水泥池中进行了为期 56 天的生长性状和遗传参数评价。结果表明,生长性状的变异系数为 11.52%-47.53%,表明遗传变异较大。单核鱼 G2 群体生长性状的遗传力范围为 0.25±0.03-0.41±0.13,属于中高遗传力,统计检验结果显著(P<0.01)。体长和体重的遗传力分别为 0.38±0.11 和 0.41±0.13。生长性状间遗传相关性的评价结果为高度正相关,统计检验结果显著(P<0.01)。体重与体长的遗传相关性最高(0.99),第一腹节宽与第一腹节高的遗传相关性最低(0.71)。体重与体长的表型相关性最高(0.93),头胸板宽度与第一腹节高度的表型相关性最低(0.53)。这些结果表明,单子鱼 G2 代群体具有较高的遗传改良潜力,家系选择和个体选择相结合可获得较好的遗传增益。生长性状呈高度正相关。体长和体重可作为快速生长品系选择的关键性状,其他生长性状可通过正遗传相关性进行间接选择。
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Evaluation of genetic parameters of growth traits in G2 selected generation of Penaeus monodon
Fifteen whole sib families of the second-generation Penaeus monodon were constructed using artificial mating design in 2020. After labeling the families with fluorescent markers, the growth traits and genetic parameters were evaluated in a cement pond for 56 days. The results showed that the coefficient of variation of growth traits was 11.52-47.53%, indicating a high genetic variation. The heritability range of growth traits of the G2 population of P. monodon was 0.25±0.03-0.41±0.13, which belonged to medium and high heritability, and the statistical test results were significant (P<0.01). The heritability of body length and body weight were 0.38±0.11 and 0.41±0.13, respectively. The evaluation results of genetic correlation among growth traits were highly positive, and the statistical test results were significant (P<0.01). The genetic correlation between body weight and body length was the highest (0.99), and the genetic correlation between the width of the first carapace and the height of the first abdominal segment was the lowest (0.71). The phenotypic correlation between body weight and body length was the highest (0.93), and the lowest was head breastplate width and first abdominal segment height (0.53). These results showed that the G2 generation population of P. monodon has high genetic improvement potential, and the combination of family selection and individual selection achieved better genetic gain. The growth traits were highly positively correlated. Body length and body weight could be selected as the key traits for fast growth line selection, while the other growth traits could be indirectly selected through positive genetic correlation.
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