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Ammonia toxicity and adaptive response in marine fishes - A review

机译:海洋鱼类中的氨毒性和适应性反应 - 评论

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摘要

High environmental ammonia has become a universal problem for aquatic animals, especially in fish and induces a range of ecotoxicological effects. Perhaps waterborne ammonia is one of the most notorious pollutants in aquatic habitats. The effects of rising ammonia levels do not act in isolation; increasing human pressure including climate change (e.g. temperature, rising CO2, hypoxia etc.) creates a variety of additional deleterious impacts on animals. The salinity gradient of some marine ecosystems has gradually reduced over the last few decades, which alters a suite of physiological and behavioural performance of marine fish with a severe threat on osmo-regulation. It has been documented that environmental salinity influences the ammonia toxicity in several marine species. Such interactive effect between ammonia toxicity and salinity challenge on differential physiological and metabolic compensatory responses has not been fully revealed in fish. It is essential to pay attention to the levels of salinity and ammonia in environment, and how the two interact, particularly when dealing with estuarine aquaculture.
机译:高环境氨已成为水生动物的普遍问题,特别是在鱼类中,诱导一系列生态毒理学作用。也许水性氨是水生栖息地最臭名昭着的污染物之一。氨水位上升的影响不会被隔离行事;增加人的压力,包括气候变化(例如,温度,CO2,缺氧等)对动物产生各种额外的有害影响。在过去的几十年里,一些海洋生态系统的盐度梯度逐渐减少,这改变了海洋鱼类的一套生理和行为性能,对莫斯莫监管具有严重的威胁。已经记录了环境盐度影响了几种海洋物种中的氨毒性。氨毒性和盐度攻击之间的这种互动效果在鱼类中尚未完全揭示差异生理和代谢补偿性反应。重要的是要注意环境中的盐度和氨水量,以及两种互动的程度,特别是在处理河口水产养殖时。

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