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Evaluation of genotoxic variations in plant model systems in a case of metal stressors

机译:评估金属胁迫下植物模型系统的遗传毒性变化

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This study was designed to assess the effects of long term, high metal exposition (cadmium, lead, copper, nickel and zinc) on DNA damage in four plant model systems [Taraxacum officinale (Asteraceae), Matricaria recutita L. (Asteraceae), Robinia pseudoacacia L. (Fabaceae), and Urtica dioica (Urticaceae)]. DNA stability was investigated by a Random Amplified Polymorphic DNA (RAPD) technique. Agarose-gel electrophoresis revealed total of 37 bands with different molecular weights ranging from 1250 to 5000 bp. It generated distinctive polymorphism value of 72.97% (27 bands) total in four plant species investigated. The dendrogram constructed using NTSYSpc programme showed that there is grouping in separate clusters of the same plant model collected from two different areas (metal-exposed and control samples). The study concluded that the long term metal-exposing periods had genotoxic stress on macromolecules of plant model systems investigated and biomarkers used should be augmented for reliable estimates of genotoxicity after exposure of plants to metal stressors.
机译:这项研究旨在评估长期,高金属暴露(镉,铅,铜,镍和锌)对四种植物模型系统中的DNA损伤的影响[蒲公英](菊科),Matricaria recutita L.(菊科),刺槐pseudoacacia L.(Fabaceae)和Urtica dioica(Urticaceae)]。通过随机扩增多态性DNA(RAPD)技术研究了DNA的稳定性。琼脂糖凝胶电泳显示共有37条带,分子量从1250到5000 bp不等。在所研究的四种植物中,它产生的独特多态性值为72.97%(27条带)。使用NTSYSpc程序构建的树状图显示,从两个不同区域(暴露于金属的样品和对照样品)收集的同一工厂模型的单独簇中存在分组。该研究的结论是,长期的金属暴露期对所研究的植物模型系统的大分子具有遗传毒性胁迫,应增加所使用的生物标记物,以使植物暴露于金属胁迫下后能可靠地估算遗传毒性。

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