Environmental Science Division, National Botanical Research Institute, Lucknow, 226001, India.
Ecotoxicology. 2011 Jan;20(1):166-76. doi: 10.1007/s10646-010-0568-y. Epub 2010 Nov 17.
Different combinations of four bacterial strains isolated from fly ash were used by us to study their impact on phytoextraction of metals from fly ash by Brassica juncea grown in fly ash amended with farm yard manure (50:50 w/w). Out of 11 bacterial consortia, a combination of two strains i.e. Paenibacillus macerans NBRFT5 + Bacillus pumilus NBRFT9 (C7) inoculated in the rhizosphere was found to enhance Pb accumulation maximally by 278%, Mn by 75%, Zn by 163%, Cr by 226% and Ni by 414% compared to control. It is possible that these bacteria, known for N(2) fixation, solubilization of phosphorus and uptake of micronutrient, could promote the plant growth resulting in higher accumulation of metals. However, a combination of four bacteria, namely Micrococcus roseus NBRFT2 + Bacillus endophyticus NBRFT4 + Paenibacillus macerans NBRFT5 + Bacillus pumilus NBRFT9 (C4) was able to increase Cd uptake maximally by 237%. Further, the translocation of metal was invariably more from root to stem than from stem to leaf which was regulated by plant transport mechanism and metal mobility. Bacteria are known to excrete protons, organic acids, enzymes and siderophores to enhance the mobilization of metals which boosted the phytoextraction of metals from fly ash.
我们使用从粉煤灰中分离出的四种细菌菌株的不同组合来研究它们对芥菜在添加了农田粪肥的粉煤灰(50:50w/w)中生长时对粉煤灰中金属的植物提取的影响。在 11 个细菌共生体中,我们发现两种菌株的组合,即粘质沙雷氏菌 NBRFT5+短小芽孢杆菌 NBRFT9(C7)接种在根际,可使 Pb 积累量最大增加 278%,Mn 增加 75%,Zn 增加 163%,Cr 增加 226%,Ni 增加 414%,与对照相比。这些细菌以固氮、磷溶解和微量元素吸收而闻名,它们可能促进了植物的生长,从而导致了更高的金属积累。然而,四种细菌的组合,即玫瑰微球菌 NBRFT2+内生芽孢杆菌 NBRFT4+粘质沙雷氏菌 NBRFT5+短小芽孢杆菌 NBRFT9(C4),可使 Cd 吸收量最大增加 237%。此外,金属的转运总是从根部到茎部多于从茎部到叶片,这是由植物转运机制和金属的移动性调节的。细菌被认为会分泌质子、有机酸、酶和铁载体来增强金属的迁移,从而促进了粉煤灰中金属的植物提取。