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Biochemical indicators of green photosynthetic bacteria Chlorobium limicola response to Cu(2+) action

机译:绿色光合细菌的生化指标氯钴酸浓度对Cu(2+)作用的反应

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Photolithotrophic sulfur bacteria are involved in biota functioning and have a biotechnological potential for bioremediation of contaminated environment, but the mechanisms of xenobiotics, in particular of heavy metal ions damaging action and the pathways of photolithotrophic bacteria adaptation under these conditions have not been established. In this work, the biochemical indicators of green photosynthetic bacteria Chlorobium limicola response to Cu ions were studied. C. limicola cells were incubated during one hour in buffer containing copper (II) sulfate in 0.05–0.5 mM concentrations and grown for 8 days in GSB medium. The content of Cusup2+/sup in cells was estimated by atomic absorption spectroscopy. The activity of enzymes of antioxidant defense, photosynthetic pigments and glutathione content, indexes of lipids unsaturation and membrane viscosity as markers of membrane fluidity were estimated. It was shown that the response of green photosynthetic bacteria C. limicola to Cusup2+/sup action varied depending on cations concentration. Under the influence of metal salt at 0.05 mM concentration, the activity of antioxidant enzymes, GSH/GSSG ratio, the content of photosynthetic pigments and membrane fluidity indexes were higher as compared with control. Under the increase of copper (II) sulfate concentration to 0.25 mM, the activity of antioxidant enzymes was lower compared to the response of the cells under the influence of 0.05 mM copper (II) and the GSSG content was increased. Under the influence of 0.5 mM copper (II) the indexes of membrane fluidity did not differ from the control, but superoxide dismutase and peroxidase activity inhibition and the further decrease of GSH/GSSG ratio were observed followed by the highest Cusup2+/sup cations accumulation in cells and significant decrease of bacteria biomass growth.
机译:光型脱硫硫细菌参与生物脂肪功能,并且具有污染环境生物修复的生物技术潜力,但尚未建立在这些条件下的重金属离子损伤作用和光训练型细菌适应的途径。在这项工作中,研究了绿色光合细菌的生化指标对Cu离子的氯钴乳糖反应。将柠檬茶细胞在含有铜(II)硫酸铜的缓冲液中在0.05-0.5mM浓度下培养,并在GSB培养基中生长8天。通过原子吸收光谱估计细胞中Cu 2 + / sup>的含量。估计抗氧化防御,光合颜料和谷胱甘肽含量,脂质不饱和度和膜粘度作为膜流动标记的酶的活性。结果表明,根据阳离子浓度,绿色光合细菌C.柠檬酸至Cu 2 + 动作的响应。在0.05mM浓度下的金属盐的影响下,与对照相比,抗氧化酶的活性,GSH / GSSG比,光合色素的含量和膜流动指标较高。在铜(II)硫酸盐浓度的增加至0.25mm的情况下,与细胞在0.05mM铜(II)的影响下,抗氧化剂酶的活性降低,并且GSSG含量增加。在0.5mm的铜的影响下(ii)膜流动性的指标与对照没有不同,但是超氧化物歧化酶和过氧化物酶活性抑制和GSH / GSSG比的进一步降低,然后是最高的Cu 2+。 细胞中的阳离子积累,细菌生物量生长显着降低。

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