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在多污染土壤中,通过接种内生菌进行高度推广的植物修复:植物生物化学和根际土壤生态功能行为。

Highly promoted phytoremediation with endophyte inoculation in multi-contaminated soil: plant biochemical and rhizosphere soil ecological functioning behavior.

机构信息

School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing, 100083, China.

Beijing Key Laboratory On Resource-Oriented Treatment of Industrial Pollutants, Beijing, 100083, China.

出版信息

Environ Sci Pollut Res Int. 2022 Dec;29(59):89063-89080. doi: 10.1007/s11356-022-21689-7. Epub 2022 Jul 18.

Abstract

Rhizosphere soil ecological functioning behavior is of critical importance for regulating phytoremediation efficiency during microbial-assisted phytoremediation for multi-heavy metal-polluted soils. In this study, Trifolium repens L. and its endophyte Pseudomonas putida were used to investigate the ecological responses of the microbe-plant-soil system in Cd, Cr, and Pb co-contaminated soil. The results showed that endophyte Pseudomonas putida significantly increased plant biomass by 22.26-22.78% and phytoremediation efficiency by 29.73-64.01%. The increased phytoremediation efficiency may be related to the improvement of photosynthetic pigment content and antioxidant enzyme activities in leaves and the enhancement of rhizosphere soil ecological functioning. With endophyte application, soil nutrient content was significantly increased and heavy metal bioavailability was enhanced that residual fraction was reduced by 3.79-12.87%. Besides, the relative abundance of ecologically beneficial rhizobacteria such as Bacteriovorax and Arthrobacter was increased by 3.04-8.53% and 0.80-1.64%, respectively. Endophyte inoculation also significantly increased all the functional genes involved in cellular processes, genetic information processing, environmental information processing, and metabolism. This study indicated that the application of endophytes has a positive effect on the biochemical responses of Trifolium repens L. and could significantly improve rhizosphere ecological functioning in multi-heavy metal contamination, which provided clear strategies for regulating phytoremediation.

摘要

根际土壤生态功能行为对于调控微生物辅助植物修复多重金属污染土壤过程中的植物修复效率至关重要。本研究采用三叶草及其内生菌 Pseudomonas putida 来研究微生物-植物-土壤系统在 Cd、Cr 和 Pb 复合污染土壤中的生态响应。结果表明,内生菌 Pseudomonas putida 显著提高了植物生物量 22.26-22.78%和植物修复效率 29.73-64.01%。提高的植物修复效率可能与叶片中光合色素含量和抗氧化酶活性的提高以及根际土壤生态功能的增强有关。内生菌的应用显著增加了土壤养分含量,提高了重金属生物有效性,降低了残留态的含量 3.79-12.87%。此外,生态有益菌如 Bacteriovorax 和 Arthrobacter 的相对丰度分别增加了 3.04-8.53%和 0.80-1.64%。内生菌接种还显著增加了所有与细胞过程、遗传信息处理、环境信息处理和代谢相关的功能基因。本研究表明,内生菌的应用对三叶草的生化反应有积极影响,并能显著改善多重金属污染条件下的根际生态功能,为调控植物修复提供了明确的策略。

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