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An introduction about Genotoxicology Methods as Tools for Monitoring Aquatic Ecosystem: Present status and Future perspectives

机译:遗传毒理学方法作为监测水生生态系统的工具的介绍:现状和未来展望

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Pesticide residues with genotoxic potential reach the aquatic environment and constitute a major issue that give rise to concerns at local, regional, national and global scales. Fish serves as an excellent genetic model for the genetic hazard assessment as they are very sensitive to changes in their environment. As there is a close consortium of DNA damage, mutation and induction of various types of genetic disorders, genotoxicity tests like chromosomal aberration test, micronuclei and comet assay are gaining credence and since past few decades many tests have been developed for evaluating genetic alterations in aquatic organisms. These tests rely on the premise that any change to DNA may have enduring and ardent consequences. Thus, the first aim of the genotoxicology is to describe the outcome produced by toxic substances in various test species, but only from the genetic point of view and to draw conclusions that can be extrapolated to man. This review summarizes the genotoxicity tests developed till date and the role of piscine model in genotoxicology. The text also delves the latest knowledge and thinking on these cardinal approaches for the assessment of aquatic environmental health, management and conservation, besides providing useful repository for the researchers especially dealing with aquatic genotoxicity tests. The perspectives for further research on the use of genotoxicology tests were also highlighted.
机译:具有遗传毒性的农药残留物进入水生环境,构成一个重大问题,引起地方,区域,国家和全球范围的关注。鱼对环境变化非常敏感,因此可作为遗传危害评估的出色遗传模型。由于存在着密切的DNA损伤,突变和各种类型的遗传疾病诱因的联合体,基因毒性测试(例如染色体畸变测试,微核和彗星分析)获得了信任,并且自从过去的几十年以来,已经开发了许多用于评估水生遗传改变的测试。生物。这些测试所依据的前提是,DNA的任何变化都可能产生持久而艰巨的后果。因此,遗传毒理学的首要目标是描述各种测试物种中有毒物质产生的结果,但仅从遗传学角度出发,得出可以推断给人类的结论。这篇综述总结了迄今为止进行的遗传毒性测试以及鱼类模型在遗传毒理学中的作用。除了为研究人员尤其是从事水生遗传毒性测试的研究人员提供有用的资料库外,本文还研究了有关这些基本方法的最新知识和思想,以评估水生环境健康,管理和保护。还强调了对进一步利用基因毒理学测试进行研究的观点。

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