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Nuclear characteristics of cells and organisms exposed to agrochemicals contaminating aquatic ecosystems.

机译:暴露于污染水生生态系统的农药的细胞和生物的核特征。

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As modern agriculture has become more reliant on herbicides for weed management an increase in these chemicals contaminating aquatic ecosystems has occurred. The potential consequences of herbicide exposure to non-target organisms are not completely known. The main objective of these studies was to investigate the effects of herbicides reported to contaminate waterways and to evaluate the impacts of the herbicide contaminants using nuclear endpoints.; One initial concern is that in most laboratory studies the pure technical form of the herbicides are used in experimental analysis whereas the field grade formulations are what the organisms in the environment are exposed. A cellular in vitro test system was used to determine the concentrations at which cytotoxicity occurred. No differences were found between the technical and field grade formulations. As a result the technical grade herbicides were used in the remaining studies. The next step was to evaluate the cytotoxicity and impacts on the cell cycle of herbicide contaminants in comparison to aquatic herbicides registered for use in the aquatic environment. The herbicide contaminants were found to be no more cytotoxic or to cause no greater alterations to the cell cycle than the aquatic management herbicides utilizing the in vitro test system.; One current concern of the scientific community is the documented amphibian declines. Chemical herbicide contamination is one of the suspected contributing factors. The egg and larval stages of most amphibians occur in the water and as a result amidst chemical contamination. The potential effects of one of the most common herbicide contaminants, atrazine, were further investigated on non-target organisms in anurans. The genotoxicity and impacts on metamorphing anuran larvae were explored in two species. Atrazine was found not to be genotoxic to either species, but differential effects on development dependent upon the nuclear characteristics of metamorphosis were observed.; The final objective was to adapt a recently developed cytogenetic technique for use in anurans. The primed in situ labeling (PRINS) technique was applied to localize a specific developmentally important DNA sequence in anuran chromosomes. This technique has the potential to be an important tool in assessing developmental nuclear changes in metamorphing anurans.
机译:随着现代农业越来越多地使用除草剂进行杂草管理,这些化学物质污染了水生生态系统的现象也在增加。除草剂暴露于非目标生物的潜在后果尚不完全清楚。这些研究的主要目的是调查除草剂污染水道的影响,并通过核终点评估除草剂污染物的影响。最初的担忧是,在大多数实验室研究中,除草剂的纯技术形式都用于实验分析,而现场级配方则是环境中有机物的暴露方式。使用细胞体外测试系统来确定发生细胞毒性的浓度。在技​​术级和现场级配方之间未发现差异。结果,在其余的研究中使用了工业级除草剂。与注册用于水生环境的水生除草剂相比,下一步是评估除草剂污染物的细胞毒性和对细胞周期的影响。与使用体外试验系统的水生管理除草剂相比,发现除草剂污染物不再具有细胞毒性或对细胞周期没有更大的改变。科学界当前关注的一个问题是有记录的两栖动物数量下降。化学除草剂污染是可疑的促成因素之一。大多数两栖动物的卵和幼体阶段都发生在水中,并且是化学污染的结果。进一步研究了最常见的除草剂污染物之一阿特拉津对无核生物中非目标生物的潜在影响。在两个物种中探索了遗传毒性及其对变态无核幼虫的影响。发现去津对这两种物种均无遗传毒性,但是观察到对发育的不同影响取决于变态反应的核特征。最终目标是使最近开发的细胞遗传学技术适用于无核生物。应用灌注原位标记(PRINS)技术在无核染色体中定位特定的重要发育DNA序列。这项技术有可能成为评估变态无核生物中发育核变化的重要工具。

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