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首页> 外文期刊>Developmental and Comparative Immunology: Ontogeny, Phylogeny, Aging: The Official Journal of the International Society of Developmental and Comparative Immunology >Polymorphism of the superoxide dismutase gene family in the bay scallop (Argopecten irradians) and its association with resistance/susceptibility to Vibrio anguillarum
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Polymorphism of the superoxide dismutase gene family in the bay scallop (Argopecten irradians) and its association with resistance/susceptibility to Vibrio anguillarum

机译:海湾扇贝中的超氧化物歧化酶基因家族的多态性(Argopecten irradians)及其与对鳗弧菌的抗性/敏感性相关

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摘要

The superoxide dismutases (SODs) are a family of enzymes that function as the first line of antioxidant defense against highly reactive superoxide radicals. The bay scallop Argopecten irradians contains three unique superoxide dismutases: Ai-icCuZnSOD, Ai-MnSOD and Ai-ecCuZnSOD, which were characterized in our previous studies. qRT-PCR was also performed to characterize the temporal expression of SODs in the hemocytes of bay scallops injected with the bacterium Vibrio anguillarum. To characterize the SOD family in A. irradians completely, we evaluated the polymorphism in the SOD genes and investigated the association of this polymorphism with resistance/susceptibility to V. anguillarum. Fifty-nine SNPs were identified in the promoter, exon and partial intron sequences of the three SOD genes. AiECSOD contained the most SNPs, as compared to AiCuZnSOD and AiMnSOD, and the majority of these were located in the promoter. Among them, the genotypes of -1739 T-C SNP in the AiCuZnSOD promoter and alleles of the -498 A-T and -267 G-A SNPs in the AiECSOD promoter showed a significant association with resistance/susceptibility to V. angullarum (P < 0.05). The only non-synonymous SNP that was identified, E1-38 C-A in Ai-ecCuZnSOD, was a dimorphism caused by a C to A transition that resulted in a Thr to Lys substitution at position 13 in the signal peptide. The Thr allele was associated with increased susceptibility to V. anguillarum (P < 0.05). To confirm the presumption, another independent challenge experiment was performed, in which the cumulative mortality of Ai-icCuZnSOD Q--1739 genotype TT was significantly lower than TC (P < 0.05). Ai-ecCuZnSOD Q--498 genotype AA and AT were significantly lower than TT(P < 0.05), Ai-ecCuZnSOD E1-3 genotype AA was significantly higher than CA and CC (P < 0.05). The results suggested that these three polymorphic loci could be potential gene markers for the future molecular selection of strains that are resistant to diseases caused by V. anguillarum.
机译:超氧化物歧化酶(SOD)是一类酶,可作为抗高反应性超氧化物自由基的抗氧化剂的第一道防线。海湾扇贝的Argopecten irradians包含三个独特的超氧化物歧化酶:Ai-icCuZnSOD,Ai-MnSOD和Ai-ecCuZnSOD,这些在我们之前的研究中已进行了表征。还进行了qRT-PCR来表征在注射了鳗弧菌的海湾扇贝的血细胞中SOD的瞬时表达。为了完整地表征A. irradians中的SOD家族,我们评估了SOD基因中的多态性,并研究了该多态性与对鳗弧菌的抗性/敏感性的关联。在三个SOD基因的启动子,外显子和部分内含子序列中鉴定出59个SNP。与AiCuZnSOD和AiMnSOD相比,AiECSOD包含的SNP最多,并且大多数位于启动子中。其中,AiCuZnSOD启动子中-1739 T-C SNP的基因型和AiECSOD启动子中-498 A-T和-267 G-A SNP的等位基因显示与对Angulularum的抗性/敏感性显着相关(P <0.05)。在Ai-ecCuZnSOD中唯一被识别出的非同义SNP是E1-38 C-A,是由C到A过渡引起的二态性,导致信号肽中13位的Thr变为Lys取代。苏氏等位基因与对鳗弧菌的敏感性增加有关(P <0.05)。为了证实这一推测,进行了另一个独立的挑战实验,其中Ai-icCuZnSOD Q--1739基因型TT的累积死亡率显着低于TC(P <0.05)。 Ai-ecCuZnSOD Q--498基因型AA和AT显着低于TT(P <0.05),Ai-ecCuZnSOD E1-3基因型AA显着高于CA和CC(P <0.05)。结果表明,这三个多态性位点可能是未来对由鳗弧菌引起的疾病具有抗性的菌株分子选择的潜在基因标记。

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