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首页> 外文期刊>The Biological Bulletin >OXIDATIVE STRESS IN THE SYMBIOTIC SEA ANEMONE AIPTASIA PULCHELLA (CARLGREN, 1943) - CONTRIBUTION OF THE ANIMAL TO SUPEROXIDE ION PRODUCTION AT ELEVATED TEMPERATURE
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OXIDATIVE STRESS IN THE SYMBIOTIC SEA ANEMONE AIPTASIA PULCHELLA (CARLGREN, 1943) - CONTRIBUTION OF THE ANIMAL TO SUPEROXIDE ION PRODUCTION AT ELEVATED TEMPERATURE

机译:象征性海葵APPTHELLA中的氧化应激(卡尔格伦,1943年)-高温下动物对超氧化物离子产生的贡献

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Production of superoxide ions within tissues of the symbiotic sea anemone Aiptasia pulchella was detected using SOD-inhibitable cytochrome c reduction and quantified by SOD-inhibitable reduction of nitro blue tetrazolium (NET), Intact aposymbiotic and symbiotic specimens of A. pulchella produced superoxide in response to acute, sublethal thermal stress, Neither light nor inhibition of symbiont photosynthesis by (3,4-dichlorophenyl)-1,1-dimethylurea (DCMU) affected superoxide production, The time course of superoxide ion production strongly resembled the time course of increased dark respiration by intact anemones, suggesting that the effect of elevated temperature on host mitochondria may account for increased superoxide production, Interestingly, freshly isolated algae (FIZ) did not release superoxide ions in response to elevated temperature, and net oxygen production decreased greatly in both intact symbiotic anemones and in FIZ within 20 minutes after temperature elevation, These results show that oxidative stress in A. pulchella is primarily an animal response, and suggest that the presence of symbiotic algae, although sufficient to cause hyperoxia, is not necessary for the appearance of oxidative stress in these anemones at elevated temperature. [References: 53]
机译:使用抑制SOD的细胞色素c还原检测共生海葵Aiptasia pulchella组织内超氧化物离子的生成,并通过抑制SOD还原的硝基蓝四唑鎓(NET)定量,完整的共生共生标本和共生标本为超氧化物歧化酶。 (3,4-二氯苯基)-1,1-二甲基脲(DCMU)既不发光也不抑制共生植物的光合作用会影响超氧化物的产生,超氧化物离子产生的时间过程与黑暗增加的时间过程强烈相似完整海葵的呼吸作用表明温度升高对宿主线粒体的影响可能是超氧化物产生增加的原因。有趣的是,新鲜分离的藻类(FIZ)不会响应高温而释放超氧化物离子,并且两种情况下的净氧产量均大大降低共生海葵和温度升高后20分钟内在FIZ中,这些结果表明,普氏杆菌中的氧化应激主要是一种动物反应,并且表明共生藻类的存在虽然足以引起高氧血症,但对于这些海葵在高温下出现氧化应激而言并不是必需的。 [参考:53]

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