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首页> 外文期刊>Fisheries and Aquatic Sciences >Characterization of Copper/Zinc-Superoxide Dismutase (Cu/Zn-SOD) Gene from an Endangered Freshwater Fish Species Hemibarbus mylodon (Teleostei; Cypriniformes)
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Characterization of Copper/Zinc-Superoxide Dismutase (Cu/Zn-SOD) Gene from an Endangered Freshwater Fish Species Hemibarbus mylodon (Teleostei; Cypriniformes)

机译:濒危淡水鱼类半翅目mylodon(Teleostei;鲤形目)的铜/锌超氧化物歧化酶(Cu / Zn-SOD)基因的表征

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Gene structure of copper/zinc-superoxide dismutase (Cu/Zn-SOD; sod1) was characterized in Hemibarbus mylodon (Teleostei; Cypriniformes), an endangered freshwater fish species in Korean peninsula. Full-length cDNA of H. mylodon SOD1 consisted of a 796-bp open reading frame sequence encoding 154 amino acids, and the deduced polypeptide sequence shared high sequence homology with other orthologs, particularly with regard to metal-coordinating ligands. Genomic structure of the H. mylodon sod1 gene (hmsod1; 1,911 bp from the ATG start codon to the stop codon) was typical quinquepartite (i.e., five exons interrupted by four introns); the lengths of the exons were similar among species belonging to various taxonomic positions. The molecular phylogeny inferred from sod1 genes in the teleost lineage was in accordance with the conventional taxonomic assumptions. 5'-flanking upstream region of hmsod1, obtained using the genome walking method, contained typical TATA and CAAT boxes. It also showed various transcription factor binding motifs that may be potentially involved in stress/immune response (e.g., sites for activating proteins or nuclear factor kappa B) or metabolism of xenobiotic compounds (e.g., xenobiotic response element; XRE). The hmsod1 transcripts were ubiquitously detected among tissues, with the liver and spleen showing the highest and lowest expression, respectively. An experimental challenge with Edwardsiella tarda revealed significant upregulation of the hmsod1 in kidney (4.3-fold) and spleen (3.1-fold), based on a real-time RT-PCR assay. Information on the molecular characteristics of this key antioxidant enzyme gene could be a useful basis for a biomarker-based assay to understand cellular stresses in this endangered fish species.
机译:铜/锌超氧化物歧化酶(Cu / Zn-SOD; sod1)的基因结构在朝鲜半岛一种濒临灭绝的淡水鱼种-半边虾(Teleostei; Cypriniformes)中得到了表征。 H. mylodon SOD1的全长cDNA由796个bp的开放阅读框序列组成,编码154个氨基酸,并且推导的多肽序列与其他直向同源物,尤其是金属配位配体,具有高度的序列同源性。 H. mylodon sod1基因(hmsod1;从ATG起始密码子到终止密码子的1,911 bp)的基因组结构是典型的五聚体(即,五个外显子被四个内含子打断)。在属于不同分类位置的物种中,外显子的长度相似。从硬骨鱼谱系中的sod1基因推断出的分子系统发育符合常规分类学假设。使用基因组步移方法获得的hmsod1的5'侧翼上游区域包含典型的TATA和CAAT框。它还显示了可能与应激/免疫反应(例如,激活蛋白或核因子κB的位点)或异生物化合物的代谢(例如,异生物反应元件; XRE)有关的各种转录因子结合基序。在组织中普遍检测到hmsod1转录本,肝脏和脾脏分别显示最高和最低表达。根据实时RT-PCR分析,用爱德华氏菌tarda进行的实验挑战显示,肾脏中hmsod1(4.3倍)和脾脏(3.1倍)显着上调。有关此关键抗氧化剂酶基因的分子特性的信息可能是基于生物标记的测定方法的有用基础,以了解该濒危鱼类的细胞应激。

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