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Effects of salinity change on two superoxide dismutases (SODs) in juvenile marbled eel Anguilla marmorata

机译:盐度变化对幼年有大理石纹鳗鳗的两个超氧化物歧化酶的影响

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摘要

Salinity is one of the most important factors that affect the fish growth and survival. Superoxide dismutases (SODs), as the primary antioxidant enzymes, play a first role in the process of preventing oxidative stress caused by excessive superoxide anion (O2) in living organisms. In the present study, we investigated the effects of salinity on the gene expressions as well as enzymatic activities of MnSOD and Cu/ZnSOD in gill, intestine, kidney, liver and muscle tissues of the marbled eel Anguilla marmorata. We found that the liver might possess stronger redox capacity compared with other tissues. Furthermore, the gene expressions and enzymatic activities of SODs in juvenile marbled eels could be effectively enhanced by low salinity but inhibited when the salinity was higher than the body tolerance. Our findings indicated that MnSOD and Cu/ZnSOD played vital roles in the adaptation of marbled eels to salinity variation, which contributed to the elucidation of physiological adaptation and regulatory mechanism of SODs in eels.
机译:盐度是影响鱼类生长和生存的最重要因素之一。作为主要的抗氧化酶,超氧化物歧化酶(SOD)在防止由过量超氧阴离子引起的氧化应激的过程中起着首要作用(O 2 - )。在本研究中,我们研究了盐度对大理石鳗鳗mor的g,肠,肾,肝和肌肉组织中MnSOD和Cu / ZnSOD的基因表达以及酶活性的影响。我们发现,与其他组织相比,肝脏可能具有更强的氧化还原能力。此外,低盐度可有效提高幼年大理石纹鳗中SODs的基因表达和酶活性,但当盐度高于人体耐受性时,SODs的表达和酶活性受到抑制。我们的发现表明,MnSOD和Cu / ZnSOD在使大理石鳗适应盐分变化中起着至关重要的作用,这有助于阐明鳗的生理适应性和SOD的调节机制。

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