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DNA DAMAGE AND REPAIR IN YEAST (Saccharomyces cerevisiae) CELLS EXPOSED TO LEAD

机译:暴露于铅中的酵母细胞中的DNA损伤和修复

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The DNA damage and repair effects of yeast (Saccharomyces cerevisiae) cells induced by lead (Pb) were tested in this study. yeast cells were cultured for 72 h at the following Pb concentrations: 0 (controls), 1ppm (11.6μg.dl) and 8 ppm (92.6μ g/dl), and 0.1 g kappa-selenocarrageenan (10000μg Se/g) used as repair reagent was added directly to the yeast culture medium (100ml) for the repair assays. The percentage of damaged cells was observed from fluorescence microscope. Statistical analysis showed that the two lead doses damaged DNA structure of yeast cells significantly, and the higher concentration made more serious damage than that of the lower concentration. With the addition of kappa-selenocarrageenan, DNA damage was repaired to some degree. Furthermore, the accumulation effects of DNA damage from the parent generation to the filial generation yeast cells was also investigated. At t he lower lead concentration, the accumulation effects were more significant than that at the higher concentration.
机译:在这项研究中测试了铅(Pb)诱导的酵母(Saccharomyces cerevisiae)酵母细胞的DNA损伤和修复作用。酵母细胞在以下Pb浓度下培养72小时:0(对照),1ppm(11.6μg.dl)和8ppm(92.6μg/ dl),以及0.1gκ-硒代角叉菜胶(10000μgSe / g)将修复试剂直接添加到酵母培养基(100ml)中进行修复测定。从荧光显微镜观察受损细胞的百分比。统计分析表明,两次给药均显着破坏了酵母细胞的DNA结构,而较高的浓度比较低的浓度对酵母细胞的破坏更为严重。加入κ-硒角叉菜胶后,DNA损伤得到了一定程度的修复。此外,还研究了从亲代到孝子代酵母细胞的DNA损伤的累积效应。在较低的铅浓度下,累积效应比在较高的铅浓度下更为显着。

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