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Toxicity of diesel water accommodated fraction toward microalgae, Pseudokirchneriella subcapitata and Chlorella sp MM3

机译:柴油所含毒性对微藻,假单胞假单胞菌和小球藻MM3的影响

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摘要

Diesel is a commonly used fuel and a key pollutant on water surface through leaks and accidental spills, thus creating risk directly to planktons as well as other aquatic organisms. We assessed the toxicty of diesel and its water accommodated fraction (WAF) towards two microalgal species, Pseudokirchneriella subcapitata and Chlorella sp. MM3. The toxicity criteria included were: chlorophyll a content as a growth parameter and induction of enzyme activities linked to oxidative stress. Increase in concentrations of diesel or its WAF significantly increased toxicity towards growth, measured in terms of chlorophyll a content in both the algae. Activities of antioxidant enzymes such as superoxide dismutase (SOD), peroxidase (PDX) and catalase (CAT) in response to addition of diesel or diesel WAF to the microalgal cultures were dose-dependent. Diesel WAF was more toxic than diesel itself, suggesting that use of WAF may be more relevant for environmental risk assessment of diesel. The overall response of the antioxidant enzymes to toxicants' stress followed the order: PDX >= SOD > CAT. The present study dearly demonstrated the use of SOD, PDX and CAT as suitable biomarkers for assessing diesel pollution in aquatic ecosystem.
机译:柴油是一种常用的燃料,并且是通过泄漏和意外溢出而在水表面形成的关键污染物,因此直接对浮游生物以及其他水生生物造成了风险。我们评估了柴油及其水份(WAF)对两种微藻物种(Pseudokirchneriella subcapitata和Chlorella sp)的毒性。 MM3。包括的毒性标准为:叶绿素a含量作为生长参数,并诱导与氧化应激有关的酶活性。以两种藻类中叶绿素a的含量衡量,增加柴油或其WAF的浓度会显着增加对生长的毒性。响应向微藻培养物中添加柴油或柴油WAF的抗氧化酶(如超氧化物歧化酶(SOD),过氧化物酶(PDX)和过氧化氢酶(CAT))的活性是剂量依赖性的。柴油WAF的毒性比柴油本身高,这表明WAF的使用可能与柴油的环境风险评估更相关。抗氧化剂酶对毒物胁迫的总体反应遵循以下顺序:PDX> = SOD> CAT。本研究充分证明了使用SOD,PDX和CAT作为评估水生生态系统柴油污染的合适生物标记。

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