Evaluating the toxicological effects of agrochemicals on glucocorticoid receptor and serum cortisol level in Mozambique tilapia

Parth Pandya, A. Upadhyay, Bhumi Thakkar, Pragna Parikh
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引用次数: 9

Abstract

Abstract The agricultural sector is considered to be the backbone of a countries economy. To increase the crop yield, there is an extensive use of agrochemicals in the form of insecticides, herbicides, nutrient mixture, fungicides, etc. This is necessarily involved in controlling the unwanted organisms; however, it leads to toxicity in a nearby ecosystem. Aquatic habitats being a complexed ecosystem are distressed with the increasing concentration of agrochemicals, which leads to an alteration in nontarget species at various trophic levels. Fishes are considered to be the dynamic players of this ecosystem and are the first one to be acquainted with any contaminants present in it. In this context, the present study was aimed to find the sublethal effects (1/10th of the LC50 value) of four different agrochemicals (imidacloprid—insecticide, pyrazosulfuron ethyl—herbicide, curzate—fungicide and micronutrient mixture) on the stress physiology of Oreochromis mossambicus. The hormonal titer of cortisol and gene expression of its receptor was carried out to understand the toxicity of diverse agrochemicals. The results suggested that there was a significant decrease in hormonal titer of cortisol upon the exposure of curzate and imidacloprid, with a significant downregulation of glucocorticoid receptor under the exposure of imidacloprid. Thus, the novel findings suggest that fishes were found to be devoid of stress response which may be due to hypothalamus pituitary interrenal exhaustion.
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评价农药对莫桑比克罗非鱼糖皮质激素受体和血清皮质醇水平的毒理学影响
摘要农业部门被认为是一个国家经济的支柱。为了提高作物产量,广泛使用杀虫剂、除草剂、营养混合物、杀菌剂等形式的农用化学品。这必然涉及控制有害生物;然而,它会导致附近生态系统的毒性。水生栖息地是一个复杂的生态系统,由于农用化学品浓度的增加,导致非目标物种在不同营养水平上发生变化。鱼类被认为是这个生态系统的动态参与者,是第一个了解其中存在的任何污染物的人。在这种情况下,本研究旨在探讨四种不同农药(杀虫剂吡虫啉、除草剂吡嘧磺隆、杀真菌剂curzate和微量营养素混合物)对莫桑比克Oreochromis mossambicus胁迫生理的亚致死效应(LC50值的1/10)。进行皮质醇的激素滴度及其受体的基因表达,以了解各种农用化学品的毒性。结果表明,curzate和吡虫啉暴露后皮质醇的激素滴度显著降低,吡虫啉接触后糖皮质激素受体显著下调。因此,新的发现表明,鱼类没有应激反应,这可能是由于下丘脑-垂体-肾间耗竭所致。
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Cogent Biology
Cogent Biology MULTIDISCIPLINARY SCIENCES-
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