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首页> 外文期刊>Environmental Science and Pollution Research >Impact of chlorpyrifos on behavior and histopathological indices in different tissues of freshwater fish Channa punctatus (Bloch)
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Impact of chlorpyrifos on behavior and histopathological indices in different tissues of freshwater fish Channa punctatus (Bloch)

机译:紫外线对淡水鱼通道不同组织行为和组织病理学指标的影响(BLOCH)

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摘要

The present systematic experiment was conducted to estimate the impact of behavioral and pathological indices on freshwater fish Channa punctatus exposed to sub-lethal concentration (5ppm) of an organophosphorus insecticide chlorpyrifos (CPF). Fish were segregated into four experimental groups (G1, control; G2, 10days; G3, 20days; and G4, 30days exposure), each group comprises 15 fish in triplicate. The behavioral and histological changes were assessed in each group. Severe behavioral changes were observed in the 30days, moderate changes in the 20days, and mild changes in the 10days exposure groups respectively when compared with the control group. The pathologic lesions such as inter lamellae space, necrotic lamellae, fused lamellae, and lifting of lamellae epithelium in gills; vacuolation, blood conjunctions, and necrotic hepatocytes in the liver; and lamina propria, fusion of villi, and flattened villi in the intestine were observed. These structural alterations of the gills, liver, and intestine could affect respiration, osmotic and ionic regulation; absorption, storage and secretion; digestion; and absorption of nutrients respectively, which in turn could adversely affect the growth and survival of freshwater fish Channa punctatus. This study serves as a biomonitoring tool for the effects of organophosphorus insecticide CPF on the aquatic biota.
机译:进行本系统的实验以估算行为和病理指数对暴露于有机磷杀虫剂氯吡啶(CPF)的亚致死浓度(5ppm)的淡水鱼类通道粉虱的影响。将鱼分离成四组(G1,控制; G2,1,10天; G3,20天;和G4,30天暴露),每组包括15份鱼。在每组中评估行为和组织学变化。在30天内观察到严重的行为变化,与对照组相比,20天的20天的温和变化分别在10天暴露组中的温和变化。病理病变,如薄片间隙,坏死的薄片,熔融薄片,并在鳃中提取Lamellae上皮;肝脏中的真空,血液连词和坏死性肝细胞;和Lamina Propria,Villi融合,肠道和肠藤绒毛的融合。鳃,肝脏和肠的这些结构改变可能会影响呼吸,渗透和离子调节;吸收,储存和分泌;消化;并分别吸收营养素,这反过来可能对淡水鱼通道粉状的生长和存活率产生不利影响。本研究用作有机磷杀虫剂CPF对水生生物症的生物监测工具。

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