Dipartimento di Bioscienze e Territorio, Università degli Studi del Molise, 86090, Pesche, Italy.
Dipartimento Agricoltura, Ambiente e Alimenti, Università degli Studi del Molise, 86100, Campobasso, Italy.
Environ Sci Pollut Res Int. 2014 Feb;21(3):1796-1808. doi: 10.1007/s11356-013-2073-3. Epub 2013 Aug 25.
The plant-microorganism combinations may contribute to the success of phytoextraction of heavy metal-polluted soil. The purpose of this study was to investigate the effects of cadmium (Cd) soil concentration on selected physiological parameters of the poplar clone "I-214" inoculated at root level with a strain (BT4) of Pseudomonas fluorescens and a commercial product based on microbial consortia (Micosat F Fito®). Plants were subjected to Cd treatment of 40 mg kg(-1) in greenhouse. The effects of plant-microbe interactions, plant growth, leaf physiology, and microbial activity were periodically monitored. Metal concentration and translocation factors in plant tissues proved enhanced Cd uptake in roots of plants inoculated with P. fluorescens and transfer to shoots in plants inoculated with Micosat F Fito®, suggesting a promising strategy for using microbes in support of Cd uptake. Plant-microbe integration increased total removal of Cd, without interfering with plant growth, while improving the photosynthetic capacity. Two major mechanisms of metal phytoextraction inducted by microbial inoculation may be suggested: improved Cd accumulation in roots inoculated with P. fluorescens, implying phytostabilization prospective and high Cd transfer to shoots of inoculated plants, outlining enhanced metal translocation.
植物-微生物组合可能有助于重金属污染土壤的植物提取成功。本研究的目的是研究根水平接种荧光假单胞菌(BT4)菌株和基于微生物群落的商业产品(Micosat F Fito®)对杨树无性系“I-214”选定生理参数的影响,这些植物在温室中接受 40 mg kg(-1) 的 Cd 处理。定期监测植物-微生物相互作用、植物生长、叶片生理学和微生物活性的影响。植物组织中的金属浓度和迁移因子证明,接种 P. fluorescens 的植物根系吸收 Cd 增加,并转移到接种 Micosat F Fito®的植物地上部分,这表明利用微生物支持 Cd 吸收是一种很有前景的策略。植物-微生物整合增加了 Cd 的总去除量,而不干扰植物的生长,同时提高了光合作用能力。微生物接种诱导的金属植物提取的两个主要机制可能是:接种 P. fluorescens 的根中 Cd 的积累增加,暗示了植物稳定化的前景和接种植物地上部分 Cd 的高转移,突出了金属的增强转移。