异丙磷和硫丹对淡水鱼脱氢酶活性的影响

Nagaraju Bantu, Z. Hagos, Chaitanya Krishna, G. Krishnan, Rathnamma Vakita, Suneetha Karimasetty, Nirmala Kumari Bantu
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引用次数: 5

摘要

本试验旨在研究异丙酚和硫丹对淡水鱼脱氢酶活性的影响。健康淡水鱼Labeo rohita (Hamilton)采自印度Nandivelugu养鱼场。根据初步致死毒性测试(96小时LC50即100 μg -1),从印度Guntur当地的农药商店购买了丙诺福和硫丹农药;1.2 mg l-1和1/10 96小时LC50即10 μg l-1;致死和亚致死浓度分别为0.12mg l-1和)。驯化后,将鱼以10尾为一组,在15 L的试验水中分别暴露于致死和亚致死浓度的环境中1天和8天。观察实验动物不同组织中琥珀酸脱氢酶(SDH)、乳酸脱氢酶(LDH)和苹果酸脱氢酶(MDH)的波动。在暴露于异丙酚和硫丹后,LDH的活性高度升高,表明在有氧氧化降低的情况下,厌氧呼吸增加以满足能量需求。经亚致死浓度和致死浓度的异丙磷和硫丹处理后,鱼体内SDH活性迅速降低。与他们各自的控制相比。农药胁迫导致的SDH活性普遍降低与线粒体脱序对线粒体超结构、结构完整性和通透性的抑制有关。由于草酰乙酸的抑制,MDH活性水平降低;TCA循环脱氢酶活性的降低可能与乙酸形成CO2时线粒体的解体相一致。对罗氏L. rohita脱氢酶均有较深的影响,但相对于对罗氏L. rohita脱氢酶,对罗氏L. rohita脱氢酶的影响更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Profenofos and Carbosulfan on Dehydrogenase activity of Freshwater fish, Labeo rohita (Hamilton)
Experiments were intended to study effects of profenofos and carbosulfan on the activities of dehydrogenase of freshwater fish, Labeo rohita. Healthy freshwater fish, Labeo rohita (Hamilton) were collected from the Nandivelugu fishfarm, India. Profenofos and carbosulfan pesticides were purchased from local pesticide store in Guntur, India, based on the preliminary lethal toxicity tests (96 hr LC50 i.e. 100 μg l-1; 1.2 mg l-1 and 1/10th 96 hr LC50 i.e.10 μg l-1; 0.12mg l-1 and) were selected as lethal and sublethal concentrations. After the acclimation, fish were exposed to lethal and sublethal concentrations in groups of 10 fish in 15 L of the test water in test chambers for 1 and 8 days. Fluctuations in succinate dehydrogenase (SDH), lactate dehydrogenase (LDH) and malate dehydrogenase (MDH) were observed in different tissues of the experimental animal. The activity of LDH was highly elevated following profenofos and carbosulfan exposure indicating increased anaerobic respiration to meet the energy demands where aerobic oxidation is lowered. Rapid depletion of SDH activity in all tissues of fish, L. rohita treated with sublethal and lethal concentrations of profenofos and carbosulfan. When compared to their respective controls. The general reduction in SDH activity due to pesticidal stress was associated with the inhibition of mitochondrial respiratory mechanism of dearrangement on ultra-structure, architectural integrity and permeability of mitochondria. Decreased MDH activity levels due to the inhibition exerted by oxaloacetate; maybe decrease in the activity of TCA cycle dehydrogenase is consistent with the disintegration of mitochondria of CO2 formation from acetate. Both profenofos and carbosulfan intoxication exerted a profound influence on the dehydrogenase enzymes of fish L. rohita but comparatively profenofos treated fish tissues showed more deterioration when compared to carbosulfan treated fish.
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