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Toxicity assessment of agrochemical Almix in Heteropneustes fossilis through histopathological alterations

机译:通过组织病理学改变评估化石杂草中农用化学混合物的毒性

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摘要

The present study was designed to assess the adverse effects of the agrochemical Almix on comparative basis in gill, liver and kidney of through histological and ultrastructural observations under field (8 g/acre) and laboratory (66.67 mg/L) conditions. Exposure duration of both experiments was 30 days. Gill showed atrophy in secondary lamellae, hypertrophied gill epithelium, damage in chloride and pillar cells, and detachment of chloride cells from gill epithelium under laboratory condition, but hypertrophy in gill epithelium and fusion in secondary lamellae were seen under field condition. In gill, scanning electron microscopy (SEM) showed fragmentation in microridges, hyper-secretion of mucus and loss of normal array in microridges, while transmission electron microscopy (TEM) displayed dilated mitochondria and rough endoplasmic reticulum (RER), abnormal sized vacuolation in chloride cells under laboratory condition. In liver, hypertrophied and pyknotic nuclei, disarrangement of hepatic cords, and cytoplasmic vacuolation were prominent under laboratory study but in field condition the liver showed little alterations. TEM study showed severe degeneration in RER and mitochondria and cytoplasmic vacuolation under laboratory condition but dilated mitochondria were prominent in field observation. Kidney showed severe nephropathic effects including degenerative changes in proximal and distal convolute tubule, damage in glomerulus under light microscopy, while deformity in nucleus, fragmentation in RER, severe vacuolation and necrosis in kidney were prominent under TEM study. The results clearly demonstrated that responses were more prominent in laboratory than field study. Thus the responses displayed by different tissues of concerned fish species exposed to Almix could be considered as indications of herbicide toxicity in aquatic ecosystem.
机译:本研究旨在通过野外(8 g /英亩)和实验室(66.67 mg / L)条件下的组织学和超微结构观察,以比较的方式评估农药Almix对g,肝和肾的不良影响。两个实验的暴露持续时间为30天。 laboratory在实验室条件下显示出次级薄片的萎缩,肥大的g上皮,氯化物和柱状细胞的损伤以及chloride细胞上皮中的氯化物细胞脱离,但在野外条件下发现了g上皮的肥大和继发性薄片的融合。在g中,扫描电子显微镜(SEM)显示微脊破裂,粘液过度分泌和微脊失去正常排列,而透射电子显微镜(TEM)显示线粒体扩张和内质网粗糙(RER),氯化物的大小空泡异常细胞在实验室条件下。在实验室研究中,肝脏的肥大和强直性核,肝索排列紊乱以及胞质空泡化很明显,但在野外条件下,肝脏几乎没有变化。 TEM研究表明,在实验室条件下,RER和线粒体严重变性,细胞质空泡化,但在现场观察中,线粒体扩张明显。肾脏表现出严重的肾病学作用,包括近端和远端回旋小管的退行性改变,在光学显微镜下肾小球的损害,而在TEM研究中,核的畸形,RER的破裂,肾脏的严重空泡和坏死是突出的。结果清楚地表明,在实验室中的反应比现场研究更为突出。因此,暴露于Almix中的有关鱼类物种的不同组织所表现出的反应可以被认为是水生生态系统中除草剂毒性的迹象。

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