Fate and ecotoxicological effects of pyriproxyfen in aquatic ecosystems

被引:0
作者
James Devillers
机构
[1] CTIS,
来源
Environmental Science and Pollution Research | 2020年 / 27卷
关键词
Pyriproxyfen, insect growth regulator, environmental fate; Aquatic toxicity; Residue analysis;
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学科分类号
摘要
Pyriproxyfen is an insect growth regulator acting as larvicide against a large spectrum of public health insect pests, especially dipterans. It is also widely used in agriculture and horticulture for the control of many insect species. Disrupting the endocrine system by mimicking the activity of the juvenile hormone, pyriproxyfen interferes with metamorphosis in insects and prevents them from reaching maturity and reproducing. Because the aquatic ecosystems can be directly or indirectly contaminated by pyriproxyfen, the goal of this study was to establish the aquatic ecotoxicological profile of pyriproxyfen and to identify the gaps that need to be filled. Pyriproxyfen is photodegraded quickly in water. In the absence of organic matter, its persistence in aerobic water media is also limited especially with high temperature and sunlight. Analysis of the laboratory and in situ results for more than 60 aquatic algae, plants, invertebrates, and vertebrates shows that the toxicity of pyriproxyfen is highly variable including within a same taxonomical group. Abiotic and biotic factors can highly influence the toxicity of the molecule. Pyriproxyfen disrupts the development of numerous species and adversely impacts various physiological events. It can also disturb the behavior of the organisms such as their predatory and swimming performances. Although some experimental studies focus on the environmental fate of pyriproxyfen metabolites, those dealing with their aquatic ecotoxicity assessment are scarce. In the same way, the limited number of studies dealing with the search of pyriproxyfen residues in lake, river, and other natural aquatic media does not include the identification of the metabolites.
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页码:16052 / 16068
页数:16
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共 378 条
[1]  
Abdu U(2001)Physiological effects of methyl farnesoate and pyriproxyfen on wintering female crayfish, Aquaculture 202 163-175
[2]  
Barki A(1995)Comparative toxicity of selected larvicides and insect growth regulators to a Florida laboratory population of J Am Mosq Control Assoc 11 72-76
[3]  
Karplus I(1999)Laboratory evaluation of selected larvicides and insect growth regulators against field-collected J Am Mosq Control Assoc 15 43-47
[4]  
Barel S(2018) larvae from urban Dhaka, Bangladesh Aquat Toxicol 205 213-226
[5]  
Takac P(2018)Characterization of brain acetylcholinesterase of bentonic fish Ecotoxicol Environ Saf 166 311-319
[6]  
Yehezkel G(2014): perspectives of application in pesticides and metal ions biomonitoring J Hazard Mater 265 271-279
[7]  
Laufer H(2017)Microcystin and pyriproxyfen are toxic to early stages of development in Pest Manag Sci 73 2456-2464
[8]  
Sagi A(1996): an experimental and modelling study J Am Mosq Control Assoc 12 721-724
[9]  
Ali A(1998)Patterns of presence and concentration of pesticides in fish and waters of the Júcar River (Eastern Spain) J Am Mosq Control Assoc 14 463-466
[10]  
Nayar JK(2002)Effects of pyriproxyfen on wild populations of the housefly, J Econ Entomol 95 294-298