Watschke T L, Mumma R O, Linde D T, et al. Surface Runoff of Selected Pesticides Applied to Turfgrasses[M]//Fate and Management of Turfgrass Chemicals. Washington DC:American Chemical Society, 1999:94-105
迭庆杞,黄泽春,杨玉飞,等.我国农药工业危险废物产生和污染特性研究[J].环境工程技术学报, 2021, 11(6):1266-1272 Die Q Q, Huang Z C, Yang Y F, et al. Research on the generation and pollution characteristics of pesticide industrial hazardous wastes in China[J]. Journal of Environmental Engineering Technology, 2021, 11(6):1266-1272(in Chinese)
Fu Y, Yang T, Zhao J, et al. Determination of eight pesticides in Lycium barbarum by LC-MS/MS and dietary risk assessment[J]. Food Chemistry, 2017, 218:192-198
刘园,杨卫萍,魏琛,等.枯水期贵阳市饮用水源农药污染特征及健康风险[J].地球与环境, 2015, 43(6):653-659 Liu Y, Yang W P, Wei C, et al. Pollution characteristics and health risk assessment of pesticide in drinking water of Guiyang City, China during withered water period[J]. Earth and Environment, 2015, 43(6):653-659(in Chinese)
刘娜,金小伟,薛荔栋,等.太湖流域药物和个人护理品污染调查与生态风险评估[J].中国环境科学, 2017, 37(9):3515-3522 Liu N, Jin X W, Xue L D, et al. Concentrations distribution and ecological risk assessment of pharmaceuticals and personal care products in Taihu Lake[J]. China Environmental Science, 2017, 37(9):3515-3522(in Chinese)
游明华.天然水中9种三唑类农药的检测方法及其非生物降解研究[D].厦门:厦门大学, 2008:39You M H. Determination and abiotic degradation of nine trizole pesticides in natural aquatic environments[D]. Xiamen:Xiamen University, 2008:39(in Chinese)
Wang Z K, Tian Z N, Chen L, et al. Stereoselective metabolism and potential adverse effects of chiral fungicide triadimenol on Eremias argus [J]. Environmental Science and Pollution Research International, 2020, 27(8):7823-7834
Xu P, Huang L D. Stereoselective bioaccumulation, transformation, and toxicity of triadimefon in Scenedesmus obliquus [J]. Chirality, 2017, 29(2):61-69
Liu T T, Diao J L, Di S S, et al. Stereoselective bioaccumulation and metabolite formation of triadimefon in Tubifex tubifex [J]. Environmental Science&Technology, 2014, 48(12):6687-6693
Li M, Li S Y, Yao T T, et al. Waterborne exposure to triadimefon causes thyroid endocrine disruption and developmental delay in Xenopus laevis tadpoles[J]. Aquatic Toxicology, 2016, 177:190-197
Zhang W J, Deng Y, Chen L, et al. Effect of triadimefon and its metabolite on adult amphibians Xenopus laevis [J]. Chemosphere, 2020, 243:125288
Zhang W J, Deng Y, Chen L, et al. Comparing the effect of triadimefon and its metabolite on male and female Xenopus laevis :Obstructed growth and gonad morphology[J]. Chemosphere, 2020, 259:127415
de la Paz J F, Beiza N, Paredes-Zúñiga S, et al. Triazole fungicides inhibit zebrafish hatching by blocking the secretory function of hatching gland cells[J]. International Journal of Molecular Sciences, 2017, 18(4):710
Hassold E, Backhaus T. Chronic toxicity of five structurally diverse demethylase-inhibiting fungicides to the crustacean Daphnia magna :A comparative assessment[J]. Environmental Toxicology and Chemistry, 2009, 28(6):1218-1226
Paredes-Zúñiga S, Trost N, de la Paz J F, et al. Behavioral effects of triadimefon in zebrafish are associated with alterations of the dopaminergic and serotonergic pathways[J]. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 2019, 92:118-126
Ward W O, Delker D A, Hester S D, et al. Transcriptional profiles in liver from mice treated with hepatotumorigenic and nonhepatotumorigenic triazole conazole fungicides:Propiconazole, triadimefon, and myclobutanil[J]. Toxicologic Pathology, 2006, 34(7):863-878
Liu H C, Chu T Y, Chen L L, et al. The cardiovascular toxicity of triadimefon in early life stage of zebrafish and potential implications to human health[J]. Environmental Pollution, 2017, 231:1093-1103
Jiang J H, Hu G J, Zhang C P, et al. Toxicological analysis of triadimefon on endocrine disruption and oxidative stress during rare minnow ( Gobiocypris rarus ) larvae development[J]. Environmental Science and Pollution Research International, 2017, 24(34):26681-26691
Wu S G, Hu G J, Zhao X P, et al. Synergistic potential of fenvalerate and triadimefon on endocrine disruption and oxidative stress during rare minnow embryo development[J]. Environmental Toxicology, 2018, 33(7):759-769
Zhang W J, Lu Y L, Huang L D, et al. Comparison of triadimefon and its metabolite on acute toxicity and chronic effects during the early development of Rana nigromaculata tadpoles[J]. Ecotoxicology and Environmental Safety, 2018, 156:247-254
Liu S Y, Jin Q, Huang X H, et al. Disruption of zebrafish ( Danio rerio ) sexual development after full life-cycle exposure to environmental levels of triadimefon[J]. Environmental Toxicology and Pharmacology, 2014, 37(1):468-475
刘娜,金小伟,王业耀,等.三唑酮对青鳉鱼和大型溞不同测试终点的毒性效应评价[J].中国环境科学, 2016, 36(7):2205-2211 Liu N, Jin X W, Wang Y Y, et al. Toxicity effect of triadimefon based on Oryzias latipes and Daphnia magna with different test endpoints[J]. China Environmental Science, 2016, 36(7):2205-2211(in Chinese)
刘娜,金小伟,穆云松,等.三唑酮在水环境中的环境行为、毒性效应及生态风险[J].生态毒理学报, 2017, 12(4):65-75 Liu N, Jin X W, Mu Y S, et al. Review of environmental behavior, toxicity and ecological risk of triadimefon in the aquatic environment[J]. Asian Journal of Ecotoxicology, 2017, 12(4):65-75(in Chinese)
高嘉蔚,赵莎莎,李富云,等.微塑料对大型溞摄食和抗氧化防御系统的影响[J].环境科学研究, 2021, 34(5):1205-1212 Gao J W, Zhao S S, Li F Y, et al. Effects of microplastics on feeding behavior and antioxidant system of Daphnia magna [J]. Research of Environmental Sciences, 2021, 34(5):1205-1212(in Chinese)
Shaw J R, Pfrender M E, Eads B D, et al. Daphnia as an emerging model for toxicological genomics[J]. Advances in Experimental Biology, 2008, 2:165-328
Chen Y, Huang J, Xing L Q, et al. Effects of multigenerational exposures of D. magna to environmentally relevant concentrations of pentachlorophenol[J]. Environmental Science and Pollution Research, 2014, 21(1):234-243
Organization for Economic Co-operation and Development (OECD). Test No. 211: Daphnia magna reproduction test[R]. Paris:OECD, 2008
Organization for Economic Co-operation and Development (OECD). Test No. 201:Freshwater alga and cyanobacteria:Growth inhibition[R]. Paris:OECD, 2008
Quinn B, Gagné F, Blaise C, et al. Evaluation of the lethal and sub-lethal toxicity and potential endocrine disrupting effect of nonylphenol on the zebra mussel ( Dreissena polymorpha )[J]. Comparative Biochemistry and Physiology Toxicology&Pharmacology, 2006, 142(1-2):118-127
Ford A T, LeBlanc G A. Endocrine disruption in invertebrates:A survey of research progress[J]. Environmental Science&Technology, 2020, 54(21):13365-13369
胡方华,宋文华,丁峰,等.三唑酮对大型溞21天慢性毒性效应[J].生态毒理学报, 2012, 7(2):171-176 Hu F H, Song W H, Ding F, et al. 21-d chronic toxicity of triadimefon to Daphnia magna [J]. Asian Journal of Ecotoxicology, 2012, 7(2):171-176(in Chinese)
Cui F, Chai T T, Qian L, et al. Effects of three diamides (chlorantraniliprole, cyantraniliprole and flubendiamide) on life history, embryonic development and oxidative stress biomarkers of Daphnia magna [J]. Chemosphere, 2017, 169:107-116
Horwitz J. Alpha-crystallin[J]. Experimental Eye Research, 2003, 76(2):145-153
Walker Q D, Lewis M H, Crofton K M, et al. Triadimefon, a triazole fungicide, induces stereotyped behavior and alters monoamine metabolism in rats[J]. Toxicology and Applied Pharmacology, 1990, 102(3):474-485
Gagnaire F, Micillino J C. Effects of triadimefon on extracellular dopamine, DOPAC, HVA and 5-HIAA in adult rat striatum[J]. Toxicology, 2006, 217(2-3):91-104
Liu S Y, Chang J H, Zhao Y, et al. Changes of thyroid hormone levels and related gene expression in zebrafish on early life stage exposure to triadimefon[J]. Environmental Toxicology and Pharmacology, 2011, 32(3):472-477
Kenneke J F, Mazur C S, Ritger S E, et al. Mechanistic investigation of the noncytochrome P450-mediated metabolism of triadimefon to triadimenol in hepatic microsomes[J]. Chemical Research in Toxicology, 2008, 21(10):1997-2004
Jones E L, Demaria M C, Wright M D. Tetraspanins in cellular immunity[J]. Biochemical Society Transactions, 2011, 39(2):506-511
Termini C M, Gillette J M. Tetraspanins function as regulators of cellular signaling[J]. Frontiers in Cell and Developmental Biology, 2017, 5:34
Jung S, Kim M J, Sellaththurai S, et al. Generation of Cd63-deficient zebrafish to analyze the role of Cd63 in viral infection[J]. Fish&Shellfish Immunology, 2021, 111:152-159