Meng Xiurou, Wang Fei, Li Yunfang, Deng Pengyu, Hu Deyu, Zhang Yuping
State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang 550025, PR China.
State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang 550025, PR China.
Sci Total Environ. 2022 Jun 1;823:153791. doi: 10.1016/j.scitotenv.2022.153791. Epub 2022 Feb 9.
Glufosinate-ammonium, a widely used chiral herbicide, has become the focus of attention because of its toxicity toward non-target organisms and its degradation behavior in the environment. With the introduction of L-glufosinate-ammonium products, the toxicity and environmental behavior of rac-glufosinate-ammonium and L-glufosinate-ammonium have become the subject of increasing interest. The overall goal of this study was to investigate the differences in toxicity and biodegradation of rac-glufosinate-ammonium and L-glufosinate-ammonium in an aquatic organism, Scenedesmus obliquus. The toxicity of rac-glufosinate-ammonium and L-glufosinate-ammonium to S. obliquus was compared by measuring EC, malondialdehyde (MDA) content, protein content and antioxidant enzyme activity. The 96-h EC values of rac-glufosinate-ammonium and L-glufosinate-ammonium were 57.22 μg/mL and 25.55 μg/mL, respectively, which indicated that L-glufosinate-ammonium was more toxic to S. obliquus than rac-glufosinate-ammonium. Based on the MDA content, protein content, and antioxidant enzyme (SOD and CAT) activity, we found that L-glufosinate-ammonium could cause more serious oxidative damage than rac-glufosinate-ammonium. The residual amount of glufosinate-ammonium and its metabolites in the culture medium and S. obliquus were determined by HPLC-HRMS. Comparison of glufosinate-ammonium concentrations in algae-free and algae-containing media, showed that glufosinate-ammonium degradation in the S. obliquus system was significantly increased, and the degradation rate of L-glufosinate-ammonium was faster than that of D-glufosinate-ammonium. No enantiomerization was observed for pure L-glufosinate-ammonium treatment. N-acetyl-glufosinate was identified as the main metabolite of glufosinate-ammonium.
草铵膦铵盐是一种广泛使用的手性除草剂,由于其对非靶标生物的毒性及其在环境中的降解行为,已成为人们关注的焦点。随着L-草铵膦铵盐产品的推出,外消旋草铵膦铵盐和L-草铵膦铵盐的毒性及环境行为越来越受到关注。本研究的总体目标是调查外消旋草铵膦铵盐和L-草铵膦铵盐对水生生物斜生栅藻的毒性和生物降解差异。通过测定半数有效浓度(EC)、丙二醛(MDA)含量、蛋白质含量和抗氧化酶活性,比较了外消旋草铵膦铵盐和L-草铵膦铵盐对斜生栅藻的毒性。外消旋草铵膦铵盐和L-草铵膦铵盐的96小时EC值分别为57.22μg/mL和25.55μg/mL,这表明L-草铵膦铵盐对斜生栅藻的毒性比外消旋草铵膦铵盐更大。基于MDA含量、蛋白质含量和抗氧化酶(超氧化物歧化酶和过氧化氢酶)活性,我们发现L-草铵膦铵盐比外消旋草铵膦铵盐能引起更严重的氧化损伤。采用高效液相色谱-高分辨质谱法测定了培养基和斜生栅藻中草铵膦铵盐及其代谢产物的残留量。比较无藻和含藻培养基中草铵膦铵盐的浓度,结果表明斜生栅藻体系中草铵膦铵盐的降解显著增加,且L-草铵膦铵盐的降解速率比D-草铵膦铵盐快。纯L-草铵膦铵盐处理未观察到对映体转化。N-乙酰草铵膦被鉴定为草铵膦铵盐的主要代谢产物。