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Phytotoxicity Bioaccumulation and Degradation of Nonylphenol in Different Microalgal Species without Bacterial Influences

机译:在没有细菌影响的情况下不同微藻物种中壬基酚的植物毒性生物积累和降解

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摘要

Nonylphenol (NP) is a contaminant that has negative impacts on aquatic organisms. To investigate its phytotoxicity, bioaccumulation, and degradation in algae without associated bacteria, six freshwater microalgae— , , , , and —in bacteria-free cultures were studied. When exposed to 0.5–3.0 mg L NP for 4 days, cell growth and photosynthesis, including maximal photochemistry ( ), were suppressed progressively. The antioxidant responses of superoxide dismutase (SOD), catalase (CAT), and peroxidase (POD) showed species differences. While the antioxidant enzymes in and were more active with the increase of NP (0–3 mg L ), they dropped in the other four algae at concentrations of 1 and 1.5 mg L . Therefore, and were designated as NP-tolerant species and showed more conspicuous and faster changes of antioxidant reactions compared with the four NP-sensitive species. All six species degraded NP, but was more reactive at low NP concentrations (<1 mg L ), suggesting its possible application in sewage treatment for its potential for effective NP removal from water bodies in a suitable scope. Therefore, the conclusion is that biodegradation of NP by algae is species specific.
机译:壬基酚(NP)是一种污染物,对水生生物具有负面影响。为了研究其在无伴生细菌的藻类中的植物毒性,生物蓄积性和降解性,在无细菌培养物中研究了六种淡水微藻-,,,和。当暴露于0.5–3.0 mg L NP中4天时,细胞生长和光合作用,包括最大的光化学反应(),被逐渐抑制。超氧化物歧化酶(SOD),过氧化氢酶(CAT)和过氧化物酶(POD)的抗氧化反应显示出物种差异。尽管NP(0–3 mg L)中的抗氧化酶和其中的抗氧化酶活性更高,但它们在其他4种藻类中的浓度分别为1和1.5 mg L时下降。因此,被指定为NP耐受物种,并且与四种NP敏感物种相比,其抗氧化反应的变化更为明显和更快。所有六个物种均降解了NP,但在低NP浓度(<1 mg L)下更具反应性,这表明其在污水处理中的潜在应用可能是因为它具有在适当范围内有效去除水体中NP的潜力。因此,结论是藻类对NP的生物降解具有物种特异性。

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