Department of Biochemistry, College of Basic Science and Humanities, Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand, 263145, India.
Arch Microbiol. 2021 Sep;203(7):4499-4507. doi: 10.1007/s00203-021-02439-8. Epub 2021 Jun 19.
In this study pendimethalin degrading indigenous soil bacterium was isolated from rice field (supplemented with pendimethalin) and identified as, Pseudomonas strain PD1 on the basis of 16S rRNA phylogenetic analysis. Biodegradation of pendimethalin by this strain was evaluated by spectrophotometric scanning and FTIR analysis of degraded compounds in minimal salt media. Decrease in concentration of pendimethalin at λ (430 nm) under spectrophotometric scanning is a measurement of time taken by bacterium strain PD1 to degrade pendimethalin. Degraded products were further analyzed by comparing stretching and bending pattern of chemical groups attached to compounds using FTIR spectroscopy. FTIR profile represented disappearance of nitrate group in degraded product by bacterium strain PD1 in minimal salt medium. Molecular docking of pendimethalin on nitro-reductase was done to suggest first enzyme of pathway used by bacterium strain PD1 to degrade pendimethalin. Analysis on degradation by strain PD1 shows that newly isolated strain PD1 can degrade 77.05% of pendimethalin at 50 mgL concentration in 30 h incubation under room temperature. Thus, the study here shed a light on degradation potential of Pseudomonas.
在这项研究中,从稻田(添加了二甲戊灵)中分离出一种能够降解二甲戊灵的土著土壤细菌,并根据 16S rRNA 系统发育分析将其鉴定为假单胞菌 PD1 菌株。通过分光光度扫描和 FTIR 分析最小盐介质中降解化合物,评估了该菌株对二甲戊灵的生物降解能力。在分光光度扫描下,λ(430nm)处二甲戊灵浓度的降低是细菌 PD1 菌株降解二甲戊灵所需时间的衡量标准。通过比较用 FTIR 光谱法附着在化合物上的化学基团的伸缩和弯曲模式,进一步分析了降解产物。FTIR 图谱表示细菌 PD1 在最小盐介质中降解产物中硝酸盐基团的消失。对硝基还原酶上的二甲戊灵进行分子对接,以提出细菌 PD1 菌株用于降解二甲戊灵的途径的第一个酶。对 PD1 菌株的降解分析表明,新分离的 PD1 菌株在室温下 30h 孵育、50mg/L 浓度下可降解 77.05%的二甲戊灵。因此,本研究阐明了假单胞菌的降解潜力。