数字农科院2.0

Prediction of Potential Risk for Flupyradifurone and Its Transformation Products to Hydrobionts

文献类型: 外文期刊

作者: Shen, Chao;Pan, Xinglu;Wu, Xiaohu;Xu, Jun;Zheng, Yongquan;Dong, Fengshou

作者机构:

关键词: flupyradifurone;transformation products;6-chloropyridinering;aquatic species;ecological risk

期刊名称: JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY

ISSN: 0021-8561

年卷期: 2024 年

页码:

收录情况: SCIE(2024版) ; ; EI(2024版)

摘要: Flupyradifurone (FPF) is considered the latest generation of neonicotinoid insecticides. Here, we investigated the toxicity and ecological risk of FPF and its aerobic transformation products (TPs) to aquatic species using the method of prediction. We found that FPF exhibited moderate or high toxicity to some aquatic species. The 5% hazardous concentration of FPF was 3.84 mu g/L for aquatic organisms. We obtained 91 aerobic TPs for FPF, and almost half of FPF TPs exhibited toxicity to fish or Daphnia. Eleven of the TPs of FPF exhibited a high or moderate risk to aquatic ecosystems. All FPF TPs with high and moderate risks contained a 6-chloropyridine ring structure, indicating that the derivant of a pyridine ring exhibits potential risks to aquatic ecosystems. Our results provide insight into the potential risk of FPF to aquatic ecosystems and could be used to help set criteria to control pollution caused by FPF.

分类号:

  • 相关文献

[1]Predicting and assessing the toxicity and ecological risk of seven widely used neonicotinoid insecticides and their aerobic transformation products to aquatic organisms. Chao Shen,Xinglu Pan,Xiaohu Wu,Jun Xu,Fengshou Dong,Yongquan Zheng. 2022

[2]Simultaneous determination of flupyradifurone and its two metabolites in fruits, vegetables, and grains by a modified quick, easy, cheap, effective, rugged, and safe method using ultra high performance liquid chromatography with tandem mass spectrometry. Liu, Xingang,Wu, Xiaohu,Dong, Fengshou,Xu, Jun,Zheng, Yongquan.

[3]Exposure to flupyradifurone affect health of biocontrol parasitoid Binodoxys communis (Hymenoptera: Braconidae) via disrupting detoxification metabolism and lipid synthesis. Gao X.,Zhao L.,Zhu X.,Wang L.,Zhang K.,Li D.,Ji J.,Niu L.,Luo J.,Cui J.. 2023

[4]Acute oral toxicity, apoptosis, and immune response in nurse bees (Apis mellifera) induced by flupyradifurone. Jing Gao,Yi Guo,Jin Chen,Qing Yun Diao,Qiang Wang,Ping Li Dai,Li Zhang,Wen Min Li,Yan Yan Wu. 2023

[5]Multiple stresses induced by chronic exposure to flupyradifurone affect honey bee physiological states. Jin Chen,Yong Jun Liu,Qiang Wang,Li Zhang,Sa Yang,Wang Jiang Feng,Min Shi,Jing Gao,Ping Li Dai,Yan Yan Wu. 2024

[6]Combined effects of microplastics and flupyradifurone on gut microbiota and oxidative status of honeybees (Apis mellifera L.). Tong An,Wangjiang Feng,Han Li,Yanyan Wu,Pingli Dai,Yong Jun Liu. 2025

[7]Rapid and accurate determination of dichlorvos in water by liquid chromatography-electrospray ionization-tandem mass spectrometry. Yang, Lan,Liu, Yan Hong,An, Li Zhe,Li, You-bin.

[8]Identification and ecotoxicity prediction of pyrisoxazole transformation products formed in soil and water using an effective HRMS workflow. Bin Jiao,Yuxiao Zhu,Jun Xu,Fengshou Dong,Xiaohu Wu,Xingang Liu,Yongquan Zheng. 2022

[9]Abiotic transformation of kresoxim-methyl in aquatic environments: Structure elucidation of transformation products by LC-HRMS and toxicity assessment. Man Y.,Wu C.,Yu B.,Mao L.,Zhu L.,Zhang L.,Zhang Y.,Jiang H.,Yuan S.,Zheng Y.,Liu X.. 2023

[10]Efficient biodegradation of chlortetracycline in high concentration from strong-acidity pharmaceutical residue with degrading fungi. Yanju Li,Haibo Chen,Yuzhou Wang,Zhengli Yang,Huiyan Zhang. 2022

[11]Photodegradation of enestroburin in water by simulated sunlight irradiation: Kinetics, isomerization, transformation products identification and toxicity assessment. Zhu Y.,Zheng Y.,Jiao B.,Zuo H.,Dong F.,Wu X.,Pan X.,Xu J.. 2022

[12]Pesticides in Greenhouse Airborne Particulate Matter: Occurrence, Distribution, Transformation Products, and Potential Human Exposure Risks. Gao K.,Wang S.,Li R.,Dong F.,Zheng Y.,Li Y.. 2024

[13]Pesticides can be a substantial source of trifluoroacetate (TFA) to water resources. Hanna Joerss,Finnian Freeling,Stefan van Leeuwen,Juliane Hollender,Xingang Liu,Karsten Nödler,Zhanyun Wang,Bochi Yu,Daniel Zahn,Gabriel Sigmund. 2024

[14]Degradation of enestroburin in the water-sediment system: kinetics, transformation products identification and toxicity assessment to aquatic organisms. Zuo, Hanyu,Zhu, Yuxiao,Dong, Fengshou,Wu, Xiaohu,Pan, Xinglu,Zheng, Yongquan,Xu, Jun. 2024

[15]Identification of Dufulin photolysis and hydrolysis products in water using a 13C stable isotope assisted HPLC-HRMS strategy. Bochi Yu,Yanli Man,Gabriel Sigmund,Pingping Wang,Jun Xie,Wei Wang,Lan Zhang,Liangang Mao,Lizhen Zhu,Chi Wu,Xingang Liu. 2025

[16]Integration of nontarget screening and QSAR modeling to identify novel butachlor transformation products of high priority in soil and water environment. Feng Chen,Chi Wu,Lan Zhang,Liangang Mao,Lizhen Zhu,Xingang Liu. 2025

[17]Comprehensive risk assessment for five SDHI fungicides with AhR agonistic activity to aquatic ecosystems. Chao Shen,Xiaoyan Ding,Wenhua Rao,Jinfeng Hu,Tao Lin,Xian zhi Zhou,Yongquan Zheng,Fengshou Dong,Guocheng Fan. 2025

[18]Computational Toxicology Insights into Pyriproxyfen and Its Transformation Products: An Overlooked Driver of Aquatic Toxicity and Endocrine Disruption. Min Li, Lang Chen,Han Gao,Leyuan Ji,Feng Chen,Lan Zhang,Liangang Mao,Lizhen Zhu,Xingang Liu,Chi Wu. 2025

[19]Different influences of field aging on nickel toxicity to Folsomia candida in two types of soil. Liu, Yu-Rong,Li, Jing,He, Ji-Zheng,Zheng, Yuan-Ming,Ma, Yi-Bing.

[20]Quantitative source apportionment, risk assessment and distribution of heavy metals in agricultural soils from southern Shandong Peninsula of China. Haiwei Liu,Yan Zhang,Jiashuo Yang,Haiyun Wang,Yile Li,Yi Shi,Decheng Li,Peter E. Holm,Quan Ou,Wenyou Hu. 2021

作者其他论文 更多>>