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Lead Toxicity, Adsorption and Resistance in Chlorella Sp.

机译:小球藻中的铅毒性,吸附和抗性

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These days, unicellular green microalgae have been widely used for removal of toxic heavy metals from contaminated soil and water bodies. In the present investigation, a lead resistant PbR-11 strain isolated from Chlorella sp. by EMS mutagenesis was compared against the wild type (WT) of the same species for Pb2+ accumulating capacity. Growth of both the tested algal cells, PbR-11 and WT (control) were found to be retarded with increasing Pb2+ concentrations in the medium. However, higher ID50 value of the PbR-11 exhibited some degree of resistance to the metal toxicity. When exposed to the liquid medium containing 50 mM Pb2+, kinetic experiments showed rapid removal and adsorption of the metal ions in both the algal cells during the first few hours. Compared to WT, the PbR-11 showed significantly higher percentage removal and adsorption of Pb2+ at 15 minutes and 48 hours interval of time respectively. Extracellular Pb2+ adsorption was found significantly higher than intracellular uptake in the tested algal cells although both the processes occurred simultaneously. Total Pb2+accumulation and distribution between the external and internal cell fractions of the PbR-11 were significantly higher to that of the WT. Thus, the strain appeared more useful for remediation of contaminated sites.DOI: http://dx.doi.org/10.3126/on.v10i1.7778
机译:如今,单细胞绿色微藻已被广泛用于从受污染的土壤和水体中去除有毒重金属。在本研究中,从小球藻(Chlorella sp。)分离出的铅抗性PbR-11菌株。通过EMS诱变,与相同物种的野生型(WT)的Pb2 +积累能力进行了比较。发现测试的藻类细胞PbR-11和WT(对照)的生长均随着培养基中Pb2 +浓度的增加而受阻。但是,较高的PbR-11 ID50值对金属毒性表现出一定程度的抗性。当暴露于含有50 mM Pb2 +的液体介质中时,动力学实验表明在最初的几个小时内,两个藻类细胞中的金属离子都被快速去除和吸附。与WT相比,PbR-11分别在15分钟和48小时的时间间隔内显示出更高的Pb2 +去除率和吸附率。尽管两个过程同时发生,但在测试的藻类细胞中发现细胞外Pb2 +的吸附明显高于细胞内的吸收。 PbR-11的外部和内部细胞部分之间的总Pb2 +积累和分布显着高于WT。因此,该菌株似乎对修复污染部位更有用.DOI:http://dx.doi.org/10.3126/on.v10i1.7778

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