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Isolation identification and characterization of arsenic transforming exogenous endophytic Citrobacter sp. RPT from roots of Pteris vittata

机译:砷转化外源内生柠檬酸杆菌的分离鉴定和鉴定。凤尾草根的RPT

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摘要

The aim of the present study was to assess the arsenic (As) transformation potential of endophytic bacteria isolated from roots of Pteris vittata plant. The endophytic bacterium was tested for minimal inhibitory concentration (MIC) against As. The endophytic strain RPT exhibited the highest resistance to As(V) (400 mg/l). Phylogenetic analysis of the 16S rRNA sequence suggested that strain RPT was a member of genus Citrobacter. The As transformation assay revealed As(III) oxidation and As(V) reduction potential of Citrobacter sp. RPT. The As resistance mechanism was further confirmed by amplification of arsC and aoxB genes. The growth kinetics of strain RPT was altered slightly in the presence of different concentration (100–400 mg/l) of As stress. Temperature and pH influenced the As removal rate. The maximum As removal was observed at pH 7.0 (74%) and 37 °C (70.9%). The results suggest that strain RPT can survive under the As stress and has been identified as a potential candidate for application in bioremediation of As in contaminated environments.
机译:本研究的目的是评估从凤尾植物根部分离出的内生细菌的砷(As)转化潜力。测试了内生细菌对As的最小抑制浓度(MIC)。内生菌株RPT对As(V)的抵抗力最高(400 mg / l)。对16S rRNA序列的系统进化分析表明,RPT菌株是柠檬杆菌属的成员。 As转化试验揭示了柠檬酸杆菌的As(III)氧化和As(V)还原电位。 RPT。通过扩增arsC和aoxB基因进一步证实了As抗性机制。在不同浓度(100-400 mg / l)的砷胁迫下,RPT菌株的生长动力学略有改变。温度和pH值影响As去除率。在pH 7.0(74%)和37°C(70.9%)时观察到最大的As去除率。结果表明,RPT菌株可以在As胁迫下存活,并且已被确定为在污染环境中As生物修复中应用的潜在候选者。

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