首页> 外文期刊>Aquaculture Reports >Genome-wide identification and expression profiling revealed tissue-specific inducible expression of cytochrome P450s conferring cadmium tolerance in the Pacific oyster, Crassostrea gigas
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Genome-wide identification and expression profiling revealed tissue-specific inducible expression of cytochrome P450s conferring cadmium tolerance in the Pacific oyster, Crassostrea gigas

机译:基因组鉴定和表达分析显示了细胞色素P450s的组织特异性诱导表达在太平洋牡蛎中赋予镉耐受性,Crassostraea Gigas

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摘要

Cytochrome P450s (CYPs) are present in almost all organisms and play critical roles in metabolism of endogenous substrates and detoxification of xenobiotic compounds. Oysters are a group of bivalves that are important in marine ecosystem and aquaculture program, adapting to the harsh environment in intertidal zones. The studies on CYPs and their potential involvement in dealing with toxic xenobiotics in oysters were limited. In the present study, we performed a multiple omics analyses and identified a full-set of 123 CYP genes in the Pacific oyster, Crassostrea gigas . These CYP genes were classified into 5 clans and 16 families. The phylogenetic tree constructed with other species showed extensive gene expansion of CYPs in the clan 2 and mitochondrial clan in the C. gigas . The amino acid sequence analysis showed conserved typical motifs of CYP genes. The expression profiles of CYPs quantified across different tissues (gill and digestive gland) at various time points (0d, 0.5d, 7d, 14d, 28d) revealed their roles in response to Cd exposure. Notably, CYP17A1-like_6 and CYP2C50 were expressed at significantly higher levels compared with other CYP genes, suggesting their crucial roles in the detoxification of Cd in the C. gigas. This work provides valuable information toward understanding of CYP-mediated detoxification of cadmium in mollusks, and will be important for surveillance of marine environment pollution and seafood safety.
机译:细胞色素p450s(Cyps)几乎存在于几乎所有生物体中,并在内源性底物的代谢中发挥关键作用,以及异黄素化合物的解毒。牡蛎是一群在海洋生态系统和水产养殖计划中重要的偏离,适应跨境区域的恶劣环境。关于CYPS的研究及其在牡蛎中处理有毒的异卵症的潜在参与的限制。在本研究中,我们进行了多个OMIC分析,并确定了太平洋牡蛎,Crassostrea Gigas的全套123个Cyp基因。将这些CYP基因分为5个氏族和16个家庭。用其他物种构建的系统发育树在C.Gigas中的Cyps 2和线粒体氏族中的CYPs广泛扩增。氨基酸序列分析显示CYP基因的典型典型基序。在不同的组织(鳃和消化腺)上定量的CYP的表达谱在各个时间点(0d,0.5d,7d,14d,28d)呈响应CD暴露而揭示了它们的作用。值得注意的是,与其他CYP基因相比,CYP17A1-LIKE_6和CYP2C50表示在显着更高的水平上,表明其在C.Gigas中CD中CD的解毒中的关键作用。这项工作提供了有价值的信息,了解软体动物中镉的镉介导的戒毒,对海洋环境污染和海产安全的监测很重要。

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