Sharma Babita, Shukla Pratyoosh
Enzyme Technology and Protein Bioinformatics Laboratory, Department of Microbiology, Maharshi Dayanand University, Rohtak, 124001, Haryana, India.
Enzyme Technology and Protein Bioinformatics Laboratory, Department of Microbiology, Maharshi Dayanand University, Rohtak, 124001, Haryana, India.
J Hazard Mater. 2021 Jan 5;401:123285. doi: 10.1016/j.jhazmat.2020.123285. Epub 2020 Jun 23.
This study explores the soil microorganisms for their Lead bioremediation capability. The MIC values of the six Lead resistant bacteria were evaluated, and the AAS studies of these isolates estimated their Lead accumulation percentage. The results showed that the isolate namely Bacillus cereus BPS-9 as identified based on 16S rDNA gene sequences was shown to have the highest Lead accumulation potential (79.26 %) and also selected for bioaccumulation studies. Despite the reduction in growth rate, the superoxide dismutase activity of B. cereus BPS-9 was increased with a rise in the concentration of Lead manifested through increased nitro-blue tetrazolium (NBT) reduction from 3.94 % to 77.48 %. Moreover, the biosorption capacity of B. cereus BPS-9 was 193.93 mg/g and the Langmuir isotherm model showed a value of R = 0.9. Furthermore, the FTIR analysis also established the role of C-H, C=C, N=N, N-H, and C-O functional groups in Lead adsorption and the SEM micrographs showed that the cells of B. cereus BPS-9 became dense, adhered and distorted after Lead adsorption. Finally, the In-silico results obtained by functional analysis through SEED viewer of the whole genome of B. cereus deciphered the presence of genes encoding heavy metal resistant proteins and transporters for the efflux of heavy metals.
本研究探索了土壤微生物的铅生物修复能力。评估了六种抗铅细菌的最低抑菌浓度(MIC)值,并且对这些分离株进行的原子吸收光谱(AAS)研究估算了它们的铅积累百分比。结果表明,基于16S rDNA基因序列鉴定的蜡样芽孢杆菌BPS-9分离株显示出最高的铅积累潜力(79.26%),并且也被选用于生物积累研究。尽管生长速率降低,但蜡样芽孢杆菌BPS-9的超氧化物歧化酶活性随着铅浓度的升高而增加,这通过硝基蓝四氮唑(NBT)还原率从3.94%增加到77.48%得以体现。此外,蜡样芽孢杆菌BPS-9的生物吸附容量为193.93 mg/g,朗缪尔等温线模型显示R值为0.9。此外,傅里叶变换红外光谱(FTIR)分析也确定了C-H、C=C、N=N、N-H和C-O官能团在铅吸附中的作用,扫描电子显微镜(SEM)显微照片显示,铅吸附后蜡样芽孢杆菌BPS-9的细胞变得致密、黏附且变形。最后,通过蜡样芽孢杆菌全基因组的SEED viewer功能分析获得的计算机模拟结果破译了编码重金属抗性蛋白和重金属外排转运蛋白的基因的存在。