大口黑鲈生长性状相关标记的聚合效果分析
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1. 中国水产科学研究院 珠江水产研究所, 农业部热带亚热带水产资源利用与养殖重点实验室, 广东 广州 510380;2. 上海海洋大学 水产与生命学院, 上海 201306

作者简介:

徐磊(1987–), 男, 硕士研究生, 主要从事生物技术和动物遗传育种研究.E-mail: xlkuaile@126.com

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S917

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国家自然科学基金项目(31201985); 农业部公益性行业科研专项(200903045); 国家科技支撑计划项目(2012BAD26B03); 农业部948项目(2011-G12).


The effect of pyramiding growth-related genotypes in largemouth bass (Micropterus salmoides)
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1. Key Laboratory of Tropical & Subtropical Fishery Resource Application & Cultivation, Ministry of Agriculture, Pearl River Fisheries Research Institute of Chinese Academy of Fishery Sciences, Guangzhou 510380, China;2. College of Fisheries and Life Scie

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    摘要:

    其中雌鱼子代体质量为1~61~6、和生长优势基因型的数量与大口黑鲈生长速度呈正相关。进一步分析表明子代中优势基因型的平均数量为(2.36)利用有限的与生长相关的优势基因型进行聚合可以获得具有优良生长性状的大口黑鲈

    Abstract:

    Gene pyramiding is a method of obtaining good varieties, which aims to produce individuals with one superior economic trait, according to the optimal breeding scheme involving selection of favorable target alleles or linked markers after crossing basal populations and pyramiding them into a single individual. The largemouth bass () is one of the most important freshwater fish in China. Previous research identified certain molecular markers related to growth traits. In this study, eight molecular markers including four single nucleotide polymorphisms (SNPs) and four simple sequence repeats (SSRs) related to the growth traits of largemouth bass were selected to amplify the genomic DNA of parent largemouth bass. The four SNPs were located in the genes; the four SSRs were located in the genes. Twenty large mouth bass (9 females, 11 males) containing four or even more advantageous genotypes were selected as parents for population reproduction, which were selected from 196 individuals. About 5 000 offspring individuals were cultivated in one breeding pond (1 114 m2 ) and fed with frozen fresh fish. After 9 months of cultivation, the offspring had reached a marketable size. Two hundred and eighty-eight individuals were randomly chosen to measure their weight and detect their genotype. The results showed that the number of advantageous genotypes in parents were 1–5 and the frequencies were 20.41%, 41.3%, 30.10%, 8.67% and 1.53% respectively. To aggregate the advantageous genotypes in the offspring, the parents that had 4 and 5 advantageous genotypes were selected. The number of advantageous genotypes was1–6 in all offspring and the average weights of 1 to 6 advantageous genotypes groups were 227.83, 239.56, 258.81, 273.02, 302.50 and 305.60 g, respectively. The number distributions of each population were 6, 100, 110, 44, 20 and 8. The frequencies of each population were 2.08%, 34.72%, 38.19%, 15.28%, 6.94% and 2.78%, respectively. A general linear model (GLM) was used to perform correlation analysis between the number of advantageous genotypes and growth traits. GLM analysis showed that the number of advantageous genotypes related to growth traits was positively correlated with weight. Individuals with five or six advantage genotypes were significantly different (<0.05) with those that had fewer advantageous genotypes. Further analysis suggested that the average number of advantageous genotypes is 2.99 in the offspring, which is truly improved compared with the average number of advantageous genotypes of the parent group (2.36). The results indicated that it was useful to improve the growth trait of largemouth bass using limited advantageous genotypes related to growth traits, which also provided a theoretical basis for gene pyramiding breeding.

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徐磊,白俊杰,李胜杰.大口黑鲈生长性状相关标记的聚合效果分析[J].中国水产科学,2014,21(1):53-58
XU Lei, BAI Junjie, LI Shengjie. The effect of pyramiding growth-related genotypes in largemouth bass (Micropterus salmoides)[J]. Journal of Fishery Sciences of China,2014,21(1):53-58

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  • 在线发布日期: 2015-06-30
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