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首页> 外文期刊>Aquatic Toxicology >Comparative toxicity of racemic metolachlor and S-metolachlor to Chlorella pyrenoidosa
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Comparative toxicity of racemic metolachlor and S-metolachlor to Chlorella pyrenoidosa

机译:外消旋甲草胺和异丙甲草胺对小球藻的毒性比较

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摘要

The toxicity of the chiral herbicides rac-metolachlor and S-metolachlor to Chlorella pyrenoidosa was determined and compared in this study, based on four different test endpoints: the growth inhibition rate, the chlorophyll a and chlorophyll b concentration, the catalase activity, and the ultrastructural morphology of cells. The 24, 48, 72, and 96 h EC50 values of rac-metolachlor were 0.196, 0.241, 0.177 and 0.152 mg L-1, respectively: these values were higher than those of S-metolachlor, which were 0.116, 0.106, 0.081 and 0.068 mg L-1, respectively. This indicates that S-metolachlor was more toxic to C pyrenoidosa than rac-metolachlor. The Ch1a and Ch1b concentration of C. pyrenoidosa treated by rac-metolachlor was higher than that treated by S-metolachlor. In general, the catalase activity of C pyrenoidosa treated by S-metolachlor was higher than that exposed to rac-metolachlor, and catalase activity was inhibited at high concentrations of both herbicides. The ultrastructural morphology of cells grown in the two herbicides was observed by transmission electron microscopy. The cell wall separated from the cell membrane, accumulated starch granules were observed in the chloroplast, and some lipid droplets and unknown electron-opaque deposits were also observed in the cytoplasm. The mechanism of the toxicity of rac- and S-metolachlor toxicity to C. pyrenoidosa was explored, and the enantioselective toxicity of rac- and S-metolachlor to C. pyrenoidosa was determined. These results will help to develop an understanding of the biologically mediated environmental processes of rac- and S-metolachlor.
机译:本研究基于四个不同的试验终点确定并比较了手性除草剂rac-metolachlor和S-metolachlor对吡喃小球藻的毒性:生长抑制率,叶绿素a和叶绿素b浓度,过氧化氢酶活性以及细胞的超微结构形态。 rac-metolachlor的24、48、72和96 h EC50值分别为0.196、0.241、0.177和0.152 mg L-1:这些值高于S-异丙甲草胺的0.116、0.106、0.081和L。分别为0.068 mg L-1。这表明,除草胺甲草胺外,除草胺甲草胺外,对氯吡喃二甲毒素的毒性也更大。 rac-metolachlor处理的C.pyrenoidosa Ch1a和Ch1b浓度高于S-metolachlor处理的C.pyrenoidosa。通常,经S-异丙甲草胺处理的拟南芥C的过氧化氢酶活性高于暴露于rac-Metallchlor的丙二醛。过氧化氢酶活性在两种除草剂的高浓度下均被抑制。通过透射电子显微镜观察在两种除草剂中生长的细胞的超微结构形态。细胞壁与细胞膜分离,在叶绿体中观察到积累的淀粉颗粒,在细胞质中也观察到一些脂质滴和未知的电子不透明沉积物。探索了rac-和S-异丙甲草胺对吡喃假单胞菌的毒性机理,并确定了rac-和S-异丙甲草胺对吡喃假单胞菌的对映选择性毒性。这些结果将有助于加深对rac-和S-异丙甲草胺的生物介导环境过程的了解。

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