Toxicity assessment of agrochemical Almix in Heteropneustes fossilis through histopathological alterations

Author:

Samanta Palas12,Das Rituparna1,Pal Sandipan3,Mukherjee Aloke Kumar4,Senapati Tarakeshwar5,Kole Debraj1,Ghosh Apurba Ratan1

Affiliation:

1. Ecotoxicology Lab , Department of Environmental Science , The University of Burdwan , Golapbag, Burdwan 713104 , West Bengal, India

2. Division of Environmental Science and Ecological Engineering , Korea University , Anam-dong, Sungbuk-gu , Seoul 136-713 , Republic of Korea

3. Department of Environmental Science , Aghorekamini Prakashchandra Mahavidyalaya , Subhasnagar, Bengai, Hooghly 712611 , West Bengal, India

4. P.G. Department of Conservation Biology , Durgapur Govt. College , Durgapur 713214 , West Bengal, India

5. School of Basic and Applied Sciences , Poornima University , Jaipur 302022 , Rajasthan, India

Abstract

Abstract The present study was designed to assess the adverse effects of the agrochemical Almix on comparative basis in gill, liver and kidney of Heteropneustes fossilis 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.

Publisher

Walter de Gruyter GmbH

Subject

Health, Toxicology and Mutagenesis,Pharmacology,Toxicology

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