Ecology and Environmental Remediation Laboratory, Department of Botany, Gauhati University, Guwahati-14, Assam, India.
Environ Sci Pollut Res Int. 2022 Aug;29(38):57579-57590. doi: 10.1007/s11356-022-19922-4. Epub 2022 Mar 30.
The phytoremediation potential and enzymatic defense of a medicinal herb Leucas aspera was studied in the crude oil contaminated soil. The productivity, antioxidants, and phytochemical and functional group profiles of the plant species in stress conditions were investigated. Besides, changes in enzymes, beneficial bacterial population, and physico-chemical and total oil and grease (TOG) profiles in the contaminated soil were also studied. The results showed improvement in physico-chemical conditions, increase in beneficial bacterial population (4.1-5.4 folds), and decrease in TOG (31.3%) level of the contaminated soil by end of the experimental trials. The L. aspera treated contaminated soil showed enhancement in dehydrogenase (32.3%), urease (102.8%), alkaline phosphatase (174.4%), catalase (68.5%), amylase (76.16%), and cellulase (23.6%) activities by end of the experimental trials. Furthermore, there were significant variations in leaf area index, chlorophyll, and biomass contents of the experimental plant as against the initial level and control. Besides, the significant reduction in IC values (24-27.4%) of L. aspera samples grown in contaminated soil confirms the strong antioxidant enzymatic defense of the plant species against the crude oil associated abiotic stress. The Fourier-transform infrared (FT-IR) analysis confirmed the uptake and metabolism of aliphatic hydrocarbons, aldehydes, alkyl halides, and nitro compounds by the experimental plant from the contaminated soil.
研究了在受原油污染的土壤中,药用植物 Leucas aspera 的植物修复潜力和酶防御能力。研究了植物在胁迫条件下的生产力、抗氧化剂、植物化学物质和功能基团特征。此外,还研究了受污染土壤中酶、有益细菌种群以及理化性质和总油和油脂 (TOG) 特征的变化。结果表明,受污染土壤的理化条件得到改善,有益细菌种群增加(4.1-5.4 倍),TOG(总油和油脂)水平降低(31.3%)。在实验结束时,受 L. aspera 处理的受污染土壤的脱氢酶(32.3%)、脲酶(102.8%)、碱性磷酸酶(174.4%)、过氧化氢酶(68.5%)、淀粉酶(76.16%)和纤维素酶(23.6%)活性增强。此外,与初始水平和对照相比,实验植物的叶面积指数、叶绿素和生物量含量均有显著变化。此外,在受污染土壤中生长的 L. aspera 样品的 IC 值(24-27.4%)显著降低,这证实了该植物物种对与原油相关的非生物胁迫具有强大的抗氧化酶防御能力。傅里叶变换红外(FT-IR)分析证实了实验植物从受污染土壤中吸收和代谢脂肪族烃、醛、烷基卤化物和硝基化合物。