Genotoxic and cytotoxic effects of pethoxamid herbicide on Allium cepa cells and its molecular docking studies to unravel genotoxicity mechanism

被引:0
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作者
Recep Liman
Muhammad Muddassir Ali
Erman Salih Istifli
İbrahim Hakkı Ciğerci
Elena Bonciu
机构
[1] Uşak University,Molecular Biology and Genetics Department, Faculty of Arts and Sciences
[2] University of Veterinary and Animal Sciences,Institute of Biochemistry and Biotechnology
[3] Cukurova University,Department of Biology, Faculty of Science and Literature
[4] Afyon Kocatepe University,Molecular Biology and Genetics Department, Faculty of Science and Literatures
[5] University of Craiova,Department of Agricultural and Forestry Technology, Faculty of Agronomy
关键词
DNA damage; Binding affinity; Long-chain fatty acids; Chromosomal aberrations; Mitotic index; Molecular docking; Pethoxamid;
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学科分类号
摘要
Pethoxamid is chloroacetamide herbicide. Pethoxamid is commonly used to kill different weeds in various crops. Pethoxamid can leach in the water and soil and can cause toxic effects to other non-target species. Current study is therefore aimed to perform the investigation of the cytotoxic and genotoxic effects of pethoxamid on Allium cepa cells.The root growth, mitotic index (MI), chromosomal aberrations (CAs), and DNA damage were assessed through root growth inhibition, A. cepa ana-telophase, and alkaline comet assays, respectively. Furthermore, molecular docking was performed to evaluate binding affinity of pethoxamid on DNA and very-long-chain fatty acid (VLCFA) synthases. In root growth inhibition test, onion root length was statistically significantly decreased in a concentration dependent manner. Concentration- and time-dependent decreases in MI were observed, whereas increase in CAs such as disturbed ana-telophase, chromosome laggards, stickiness, anaphase bridges, and DNA damage was caused by the pethoxamid on A. cepa root cells. Molecular docking revealed that pethoxamid binds selectively to GC-rich regions in the minor groove of the DNA structure and showed remarkable binding affinity against all synthases taking part in the sequential biosynthesis of VLCFAs. It was concluded that the pethoxamid-induced genotoxicity and cytotoxicity may be through multiple binding ability of this herbicide with DNA and VLCFA synthases.
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页码:63127 / 63140
页数:13
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