十二烷基硫酸钠对利比亚沿海经济鱼(沙丁鱼)rapd污染物指示带的影响

T. Habib, M. El-Sayed, F. Ali, Tawfiq M. Almsatar
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引用次数: 0

摘要

作为合成洗涤剂的十二烷基硫酸钠在海洋环境中的存在主要是由于其存在于复杂的家庭和工业废水中,以及在某些应用中(例如,石油分散剂和杀虫剂)直接释放。据报道,SLS有毒,影响鱼类等水生动物、酵母和细菌等微生物的生存。它对老鼠和人类等哺乳动物也有毒性,但程度较轻。许多研究表明,未经处理的废水直接排放到含有阴离子表面活性剂的水环境中,由于藻类的生长消耗了水生生物生命所需的氧气,对水环境造成了严重的破坏。这些损害不仅是由阴离子表面活性剂(SLS)的存在引起的,而且还与水生环境中的其他污染物相互作用,增加了它们对水生生物的毒性作用。然而,这种洗涤剂成了公害,因为它们既不能溶解也不能生物降解。本研究旨在通过文献综述,评估SLS作为合成洗涤剂在利比亚的黎波里沿海地区的命运,并量化其对沙丁鱼(Sardine aurita) DNA突变的影响,并与其他物种进行比较。本研究结果为洗涤剂废水引起的鱼类DNA突变的基因组毒性提供了功能证据。本研究为一种简单的基因测试提供了理论基础,以确定洗涤剂对利比亚沿海地区水生生态系统的影响。
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RAPD-Contaminant Indicative Bands Induced by Sodium Lauryl Sulfate of Economic Fish (Sardine Aurita) from Libyan Coasts
The presence of sodium Lauryl sulfates (SLS) as synthetic detergents, in marine environment arises mainly from its presence in complex domestic and industrial effluents as well as its release directly from some applications (e.g., oil dispersants and pesticides). It has been reported that SLS is toxic and affects survival of aquatic animals such as fishes, microbes like yeasts and bacteria. It is also toxic to mammals like mice and humans but to a lesser extent. Many studies have shown that the direct discharge of untreated wastewater into aquatic environment containing anionic surfactants causes significant damage to the aquatic environment due to the growth of algae that consume oxygen needed for the life of aquatic organisms. These damages in the aquatic environment are caused not only by the presence of anionic surfactants (SLS), but also by their interaction with other pollutants in the aquatic environment, which increases their toxic effect on aquatic organisms. Such detergents, however, became a public nuisance because they were neither soluble nor biodegradable. The present study intended to evaluate the fate of SLS as synthetic detergents on Tripoli coastal site of Libya, and quantifying their impacts on fish (Sardine aurita) DNA mutation, compared with other species through literature review. Our results provide functional evidence for genome toxicity of fish, of the DNA mutation caused by detergents effluents. This study provides the rationale for a simple genetic test to identify the impacts of detergents on aquatic ecosystem of Libyan coastal region.
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