National Institute for Biotechnology and Genetic Engineering, Faisalabad, Pakistan.
Chemosphere. 2013 Jan;90(4):1317-32. doi: 10.1016/j.chemosphere.2012.09.045. Epub 2012 Oct 8.
Plant-bacteria partnerships have been extensively studied and applied to improve crop yield. In addition to their application in agriculture, a promising field to exploit plant-bacteria partnerships is the remediation of soil and water polluted with hydrocarbons. Application of effective plant-bacteria partnerships for the remediation of hydrocarbons depend mainly on the presence and metabolic activities of plant associated rhizo- and endophytic bacteria possessing specific genes required for the degradation of hydrocarbon pollutants. Plants and their associated bacteria interact with each other whereby plant supplies the bacteria with a special carbon source that stimulates the bacteria to degrade organic contaminants in the soil. In return, plant associated-bacteria can support their host plant to overcome contaminated-induced stress responses, and improve plant growth and development. In addition, plants further get benefits from their associated-bacteria possessing hydrocarbon-degradation potential, leading to enhanced hydrocarbon mineralization and lowering of both phytotoxicity and evapotranspiration of volatile hydrocarbons. A better understanding of plant-bacteria partnerships could be exploited to enhance the remediation of hydrocarbon contaminated soils in conjunction with sustainable production of non-food crops for biomass and biofuel production.
植物-细菌共生关系已被广泛研究和应用于提高作物产量。除了在农业中的应用,开发植物-细菌共生关系的一个有前途的领域是修复受碳氢化合物污染的土壤和水。有效应用植物-细菌共生关系来修复碳氢化合物主要取决于存在和代谢活动的植物相关的根际和内生细菌,这些细菌具有降解碳氢化合物污染物所需的特定基因。植物及其相关细菌相互作用,植物为细菌提供特殊的碳源,刺激细菌降解土壤中的有机污染物。作为回报,植物相关细菌可以支持其宿主植物克服污染引起的应激反应,促进植物生长和发育。此外,植物还从具有碳氢化合物降解潜力的相关细菌中获益,从而增强碳氢化合物的矿化作用,降低挥发性碳氢化合物的植物毒性和蒸散作用。更好地了解植物-细菌共生关系,可以与非粮食作物的可持续生产相结合,用于生物量和生物燃料生产,从而增强对受碳氢化合物污染土壤的修复。