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Physico-chemical characteristics and impact of aquatic pollutants on the vital organs of a freshwater fish Glossogobius giuris

机译:物理化学特性和水生污染物对淡水鱼的重要器官的影响.Glogogobius giuris

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摘要

Environmental pollutants such as pesticides, industrial wastes and other organic wastes pose serious risks to many aquatic organisms. Accordingly a great deal of previous research has characterized physiological mechanisms of toxicity in animals exposed to contaminants. In contrast, effects of aquatic contaminants on fish pathology and physicochemical characteristics of aquatic system are less frequently studied. To investigate present position of the dam water physico-chemical characteristics and histopathological changes in fish was undertaken. Analysis exhibited richness in nitrogen, phosphates, in addition to high value of total dissolved solids, total alkalinity, DO, BOD and organic matter. The histological damage caused to the fish Glossogobius giuris by various aquatic pollutants present in polluted water body. A microscopic study exhibits the Swelling Gill Lamellae (SGL) and fusion of secondary lamellae (FL) of gill filaments and oedematous separation of basement membrane from epithelial lining of the Secondary Lamellae (SL) was also noticed. Cellular hypertrophy followed by vacuolization in Thyroid Follicles (TF), irregular pluripotent haemoblasts (hae) in haematopoietic tissue and vacuolated erythrocytes (RBC's), neutrophils and monocytes in the peripheral blood. The results obtained suggests that the gills,thyroid,haematopoietic tissue and peripheral blood cells were structurally altered in polluted water body fishes. Such alterations could affect vital physiological functions such as respiration, osmotic and ionic regulation of the gills, storage and secretion in thyroid follicles, haemopoesis of the kidney and oxygen carrying capacity, haemoglobin content in erythrocytes and loss of immune mechanism, phagocytosis in leucocytes, which intum could ultimately affect the survival and growth of G. giuris. Thus all possible remedial measures should be adopted to prevent the occurrence of contamination in the aquatic environment. © 2010 Academic Journals Inc.
机译:农药,工业废物和其他有机废物等环境污染物对许多水生生物构成了严重的风险。因此,大量先前的研究已经表征了暴露于污染物的动物的毒性生理机制。相反,很少研究水生污染物对鱼类病理学和水生系统理化特性的影响。为了调查大坝水的物理化学特征和鱼类的组织病理学变化的现状。分析显示,除了高含量的总溶解固体,总碱度,DO,BOD和有机物外,还富含氮,磷酸盐。受污染的水体中存在的各种水污染物对鱼类Glossogobius giuris造成的组织学损害。显微研究显示,G薄片膨大(SGL),filament丝次生薄片(FL)融合,基底膜从次生薄片(SL)的上皮内层水肿分离。细胞肥大,然后在甲状腺滤泡(TF)中空泡,造血组织中不规则的多能成血细胞(hae)和外周血中空泡的红细胞(RBC),中性粒细胞和单核细胞。结果表明,污染水体鱼类的g,甲状腺,造血组织和外周血细胞结构发生了改变。这种改变可能会影响重要的生理功能,例如呼吸、,的渗透和离子调节,甲状腺滤泡的存储和分泌,肾脏的造血和氧气携带能力,红细胞中的血红蛋白含量以及免疫机制的丧失,白细胞的吞噬作用, intum可能最终影响G. giuris的生存和生长。因此,应采取所有可能的补救措施,以防止在水生环境中发生污染。 ©2010 Academic Journals Inc.。

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