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基于选择的抗性品系,i 型溶菌酶基因中的单核苷酸多态性及其与 clam Meretrix meretrix 抗弧菌性和生长的相关性。

Single nucleotide polymorphisms in i-type lysozyme gene and their correlation with vibrio-resistance and growth of clam Meretrix meretrix based on the selected resistance stocks.

机构信息

Institute of Oceanology, Chinese Academy of Sciences, 7 Nanhai Road, Qingdao 266071, China.

出版信息

Fish Shellfish Immunol. 2012 Sep;33(3):559-68. doi: 10.1016/j.fsi.2012.06.007. Epub 2012 Jun 21.

Abstract

I-type lysozyme is considered to play crucial roles in both anti-bacteria and digestion function of the bivalve, which signifies that it is related to both immunity and growth. In this study, based on the principle of case-control association analysis, using the stock materials with different vibrio-resistance profile obtained by selective breeding, single nucleotide polymorphisms (SNPs) in the DNA partial sequence of an i-type lysozyme of Meretrix meretrix (MmeLys) were discovered and examined for their association with vibrio-resistance and growth. Twenty-seven SNPs were detected and fifteen of them were genotyped in clam stocks with different resistance to Vibrio harveyi (09-C and 09-R) and to Vibrio parahaemolyticus (11-S and 11-R). Allele frequency distribution among different stocks was compared. And wet weight of clams with different genotype at each SNP locus was compared. The results indicated that SNP locus 9 was associated with V. harveyi and V. parahaemolyticus resistance and growth of M. meretrix. Loci 12 and 14 were associated with both V. parahaemolyticus-resistance and growth, and also have the potential to be related with V. harveyi-resistance of M. meretrix. Therefore these three SNPs especially locus 9 were the potential markers which may be involved in assisting resistance selective breeding. In addition, this study showed evidence that improvements in clam resistance to vibriosis could be achieved through selective breeding. All results provided encouragement for the continuation of the selective breeding program for vibrio-resistance gain in clam M. meretrix and the application of polymorphisms in MmeLys to the future marker assisted selection.

摘要

I 型溶菌酶被认为在双壳类动物的抗菌和消化功能中发挥着关键作用,这表明它与免疫和生长都有关系。在这项研究中,基于病例对照关联分析的原理,利用通过选择性繁殖获得的具有不同弧菌抗性特征的库存材料,发现并检查了 Meretrix meretrix(MmeLys)的 I 型溶菌酶 DNA 部分序列中的单核苷酸多态性(SNP)与弧菌抗性和生长的关系。共检测到 27 个 SNP,并对具有不同抗哈维弧菌(09-C 和 09-R)和副溶血弧菌(11-S 和 11-R)能力的蛤种群中的 15 个 SNP 进行了基因分型。比较了不同种群之间的等位基因频率分布。并比较了每个 SNP 基因座具有不同基因型的蛤的湿重。结果表明,SNP 基因座 9 与哈维弧菌和副溶血弧菌的抗性和 M.meretrix 的生长有关。基因座 12 和 14 与副溶血弧菌的抗性和生长都有关,也有可能与 M.meretrix 的哈维弧菌抗性有关。因此,这三个 SNP 特别是基因座 9 是可能参与协助抗性选择育种的潜在标记。此外,本研究表明,通过选择性繁殖,可以提高蛤对弧菌病的抗性。所有结果都为继续进行蛤 M.meretrix 弧菌抗性的选择性繁殖计划以及将 MmeLys 中的多态性应用于未来的标记辅助选择提供了鼓励。

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