Responses of two glutaredoxin genes to bacterial and cadmium chal­lenge in Venerupis philippinarum
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Key Laboratory of South China Sea Fishery Resources Exploitation & Utilization, Ministry of Agriculture, Key Labor-atory of Fishery Ecology Environment, Guangdong Province, South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences,

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S949

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    Abstract:

    Glutaredoxins (Grxs) are ubiquitous small disulfide oxidoreductases that play a crucial role in response to oxidative stress and regulation of growth and development. Howeverthe structural features and function of Grxs in marine invertebrates are still unknown compared with those of and xamined tissueswhich is consistent with the viewpoint that the hepatopancreas and gills are the most important organs in the host immune defense and detoxification systems. Bacterial challenging significantly up-regulated, transcripts may be associated with increasing reactive oxygen species (ROS) that is generated after apathogen challenge. hepatopancreasresults showed an obviously concentration-dependent increase. The highest expression level for (34.87 fold) in hepatopancreas was observed after 80 μg/L Cd exposure for 30 days. More or less compatible transcriptional modulation patterns were also experienced in several organismsCd can induce oxidative stress by increasing levels of ROS. The increase in V. philippinarumcould be induced by the production of ROS generated by Cdsuggesting aGrx protective role in the defense against oxidative stress. mRNA decreased sharply (0.03 fold at 0.8 and 80 μg/L Cd were increased significantly (4.77 fold at 0.8 μg/L Cds gene expression highlighted the fact that these isoenzymes probably played divergent physiological roles during the detoxification of Cd in hemocytes of . Future studies should explore the diverse expression patterns of after exposure to Cd. In conclusionthese results suggested that VpGrx1 and VpGrx2 may be important proteins involved in host immune defense and heavy metal detoxification.

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张林宝,孙伟,蔡文贵,贾晓平. 菲律宾蛤仔两种谷氧还蛋白基因对微生物侵染和重金属胁迫的应答[J]. Jounal of Fishery Sciences of China, 2014,[volume_no](6):1253-1259

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  • Online: August 04,2015
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