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生物炭与植物生长促进细菌联合应用对作物生长及重金属积累的影响:一项荟萃分析

Combined application of biochar and PGPB on crop growth and heavy metals accumulation: A meta-analysis.

作者信息

Zhao Shanshan, Zhao Shuling, Wang Baiqun

机构信息

State Key Laboratory of Soil and Water Conservation and Desertification Control, The Research Center of Soil and Water Conservation and Ecological Environment, Chinese Academy of Sciences and Ministry of Education, Yangling, Shaanxi 712100, China; State Key Laboratory of Soil and Water Conservation and Desertification Control, Institute of Soil and Water Conservation, Chinese Academy of Sciences and Ministry of Water Resources, Yangling, Shaanxi 712100, China; University of Chinese Academy of Sciences, Beijing 100049, China.

State Key Laboratory of Soil and Water Conservation and Desertification Control, The Research Center of Soil and Water Conservation and Ecological Environment, Chinese Academy of Sciences and Ministry of Education, Yangling, Shaanxi 712100, China; State Key Laboratory of Soil and Water Conservation and Desertification Control, Institute of Soil and Water Conservation, Chinese Academy of Sciences and Ministry of Water Resources, Yangling, Shaanxi 712100, China; College of Soil and Water Conservation Science and Engineering, Northwest A&F University, Yangling 712100, China.

出版信息

Environ Pollut. 2025 Sep 15;381:126626. doi: 10.1016/j.envpol.2025.126626. Epub 2025 Jun 7.

Abstract

The combined application of biochar and plant growth-promoting bacteria (PGPB) has shown significant efficacy on alleviating plant heavy metals stress and remediating soil heavy metals pollution. Nevertheless, the underlying mechanism of the synergistic action of biochar and PGPB in the soil-plant system remain poorly understood. This investigation utilized a hierarchical meta-analysis approach to synthesize 237 datasets extracted from 59 studies, aiming to quantitatively evaluate the effectiveness of the co-application of biochar and PGPB in promoting plant growth and remediating soil heavy metals pollution. The combined treatment increased root and shoot biomass by 84 % and 116 %, respectively, while reducing heavy metal concentrations in roots (33 %), shoots (45 %), and soil (44 %). This treatment markedly enhanced plant nutrient absorption and stimulated soil enzyme induction, optimizing metabolic functions in the rhizosphere. Through comprehensive analysis of diverse plant physiological parameters, it was determined that the biochar and Pseudomonas combination exhibited optimal performance in biomass enhancement, whereas the Proteobacteria and biochar consortium had the most significant effect on decreasing the content of heavy metals in the plant and soil. Furthermore, the biochar and PGPB co-application showed the best results in mitigating Pb pollution stress. This study provides subatantive scientific basis for remediation of soil heavy metals pollution and plant stress mitigation.

摘要

生物炭与植物促生细菌(PGPB)的联合应用已显示出在缓解植物重金属胁迫和修复土壤重金属污染方面的显著效果。然而,生物炭与PGPB在土壤-植物系统中协同作用的潜在机制仍知之甚少。本研究采用分层荟萃分析方法,综合了从59项研究中提取的237个数据集,旨在定量评估生物炭与PGPB联合应用在促进植物生长和修复土壤重金属污染方面的有效性。联合处理使根生物量和地上部生物量分别增加了84%和116%,同时降低了根(33%)、地上部(45%)和土壤(44%)中的重金属浓度。这种处理显著增强了植物对养分的吸收,并刺激了土壤酶的诱导,优化了根际的代谢功能。通过对多种植物生理参数的综合分析,确定生物炭与假单胞菌组合在生物量增加方面表现最佳,而变形菌门与生物炭组合对降低植物和土壤中重金属含量的效果最为显著。此外,生物炭与PGPB联合应用在减轻铅污染胁迫方面效果最佳。本研究为土壤重金属污染修复和植物胁迫缓解提供了实质性的科学依据。

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