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Effects of arsenate (As5+) on growth and production of glutathione (GSH) and phytochelatins (PCs) in chlorella vulgaris

机译:砷酸(As5 +)对寻常小球藻生长和生产谷胱甘肽(GSH)和植物螯合素(PCs)的影响

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摘要

The effect of arsenate (As5+) on growth and chlorophyll a production in Chlorella vulgaris, its removal by C. vulgaris and the role of glutathione (GSH) and phytochelatins (PCs) were investigated.\udC. vulgaris was tolerant to As5+ at up to 200 mg/L and was capable of consistently removing around 70% of the As5+ present in growth media over a wide range of exposure concentrations. Spectral analysis revealed that PCs and their arsenic-combined complexes were absent indicating that the high bioaccumulation and tolerance to arsenic observed was not due to intracellular chelation. In contrast, GSH was found in all samples ranging from 0.8 mg/L in the control to 6.5mg/L in media containing 200 mg/L As5+ suggesting that GSH plays a more prominent role in the detoxification of As5+ in C. vulgaris than PC. At concentrations below 100 mg/L cell surface binding and other mechanisms may play the primary role in As5+ detoxification, whereas above this concentration As5+ begins to accumulate inside the algal cells and activates a number of intracellular cell defence mechanisms, such as increased production of GSH. \udThe overall findings complement field studies which suggest C.vulgaris as an increasingly promising low cost As phytoremediation method for developing countries.\ud[Abstract as appears on publisher's website]
机译:研究了砷酸盐(As5 +)对小球藻生长和叶绿素a的产生,其被普通衣藻去除的作用以及谷胱甘肽(GSH)和植物螯合素(PCs)的作用。\ udC。寻常型最多可耐受200 mg / L的As5 +,并且能够在广泛的暴露浓度范围内持续去除生长培养基中约70%的As5 +。光谱分析表明,PC及其砷结合的复合物不存在,这表明观察到的高生物蓄积性和对砷的耐受性不是由于细胞内螯合。相比之下,所有样品中的GSH含量从对照组的0.8 mg / L到含有200 mg / L As5 +的培养基中的6.5mg / L不等,这表明GSH在寻常型棒状杆菌的As5 +解毒中比PC发挥更重要的作用。 。浓度低于100 mg / L时,细胞表面结合和其他机制可能在As5 +解毒中起主要作用,而高于该浓度时,As5 +开始在藻类细胞内部蓄积并激活多种细胞内细胞防御机制,例如增加GSH的产生。 \ ud总体研究结果补充了田间研究,这表明寻常小球藻已成为发展中国家越来越有希望的低成本植物修复方法。\ ud [摘自出版商网站]

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