Effects of diazinon on olfactory epithelium and genes related to olfactory signal transduction in Caspian roach, Rutilus caspicus

Q3 Agricultural and Biological Sciences
Mahboubeh Hosseinzade, B. M. Amiri, Y. Iri, H. Poorbagher
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引用次数: 1

Abstract

Olfaction in fishes is biologically-essential chemoreceptors. It provokes important behaviors for the survival of fish such as feeding, reproduction, avoiding predator and intraspecific communication. Pesticides can affect the olfactory epithelium and genes related to olfactory transduction and impair olfactory function.  The present study aims to determine how toxicity of diazinon impacts olfaction of Caspian roach, Rutilus caspicus in histological and gene levels. We exposed fish (0.7 ± 0.05 g in weight) to 0, 1, 2 and 3 mg L-1 diazinon (60 fish in each 3- replicate 60-L glass tank) for 7 days in freshwater. Diazinon concentrations were chosen based on reports on its concentration in surface waters. Mortality rate, histological events of olfactory epithelium, and genes expression at the 7th day after diazinon exposure included a significant decrease in the number of olfactory receptor cells (ORCs), while increased goblet cells (GCs). In addition, G­protein αi (Gpαi) was significantly upregulated, whereas calmodulin-dependent kinase II α (CaMKIIα) was significantly downregulated after 7 days as compared to the control group. These results indicate that diazinon can impair olfactory function through effect on the olfactory epithelium and olfactory signal transduction pathways in the Caspian roach fingerlings.
二嗪农对里海蟑螂嗅觉上皮及嗅觉信号传导相关基因的影响
鱼类嗅觉是生物上必不可少的化学受体。它引发了鱼类生存的重要行为,如进食、繁殖、躲避捕食者和种内交流。农药会影响嗅觉上皮和与嗅觉转导相关的基因,损害嗅觉功能。本研究旨在确定二嗪农的毒性如何在组织学和基因水平上影响里海蟑螂的嗅觉。我们将鱼(0.7±0.05 g重量)暴露于0、1、2和3 mg L-1二嗪农(每个3个重复的60-L玻璃罐中有60条鱼)的淡水中7天。二嗪农的浓度是根据其在地表水中的浓度报告选择的。二嗪农暴露后第7天的死亡率、嗅觉上皮组织学事件和基因表达包括嗅觉受体细胞(ORCs)数量显著减少,而杯状细胞(GC)数量增加。此外,与对照组相比,G蛋白αi(Gpαi)显著上调,而钙调素依赖性激酶IIα(CaMKIIα)在7天后显著下调。这些结果表明,二嗪农可以通过影响里海蟑螂的嗅觉上皮和嗅觉信号传导途径来损害嗅觉功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
caspian journal of environmental sciences
caspian journal of environmental sciences Environmental Science-Environmental Science (all)
CiteScore
2.30
自引率
0.00%
发文量
0
审稿时长
5 weeks
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