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首页> 外文期刊>Aquaculture Research >Comprehensive toxic effects of povidone iodine on microalgae Chlorella pyrenoidosa under different concentrations
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Comprehensive toxic effects of povidone iodine on microalgae Chlorella pyrenoidosa under different concentrations

机译:不同浓度下聚维酮碘对微藻小球藻的综合毒性作用

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摘要

Abstract Povidone iodine (PVP‐I) is widely used as an efficient antiseptic disinfectant, which can kill various pernicious microbe. PVP‐I also exhibits certain toxic effects to the environment. To study the comprehensive toxic effects of PVP‐I on microalgae, different concentrations including 0, 7, 14, 28, 56 and 112 mg/L were set. The effects of PVP‐I on the growth performance, microstructure, photosynthesis, antioxidant levels and photosynthesis associated genes expressions of microalgae were investigated. The results showed that PVP‐I had significant effects on the growth and physiological functions of C. pyrenoidosa. Under the observation of scanning electron microscope, PVP‐I of 56 and 112 mg/L could destroy the cytoderm of C. pyrenoidosa directly. Under the PVP‐I exposure, the activity of SOD and CAT fluctuated up and down, while MDA content continued to rise. The relative gene expression of PsbA gene was significantly up‐regulated in high concentration of 112 mg/L PVP‐I. The relative gene expression of rbcL and rbcS gene were upregulated in 28 mg/L PVP‐I. The results of present study showed that PVP‐I could induce the production of oxidative stress response in C. pyrenoidosa, inhibit the expression of genes related to photosynthesis of C. pyrenoidosa and affect the photosynthesis of C. pyrenoidosa. The present study will provide a reference for the safe application of PVP‐I.
机译:摘要 聚维酮碘(PVP-I)是一种高效防腐消毒剂,可杀灭多种有害微生物。PVP-I还对环境表现出一定的毒性作用。为研究PVP-I.对微藻的综合毒性作用,设置了0、7、14、28、56和112 mg/L等不同浓度。研究了PVP-I对微藻生长性能、微观结构、光合作用、抗氧化水平和光合作用相关基因表达的影响。结果表明,PVP-I.对芘芷的生长和生理功能有显著影响。在扫描电镜观察下,PVP-I为56和112 mg/L均能直接破坏芘芋的细胞胚层。PVP-I.暴露下,SOD和CAT活性上下波动,MDA含量持续上升。PsbA基因的相对基因表达在112 mg/L PVP-I的高浓度下显著上调。rbcL和rbcS基因的相对基因表达在28 mg/L PVP-I中上调。本研究结果表明,PVP-I.可诱导芘芨氧化应激反应的产生,抑制芘芪芪光合作用相关基因的表达,影响芘芪芷的光合作用。本研究将为PVP-I的安全应用提供参考。

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