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生物炭与促生根际细菌的联合应用提高了……对重金属和干旱胁迫的耐受性。

Combined Application of Biochar and Plant Growth-Promoting Rhizobacteria Improves Heavy Metal and Drought Stress Tolerance in .

作者信息

Anbuganesan Vadivel, Vishnupradeep Ramasamy, Bruno L Benedict, Sharmila Krishnan, Freitas Helena, Rajkumar Mani

机构信息

Department of Environmental Sciences, Bharathiar University, Coimbatore 641046, India.

Centre for Functional Ecology-Science for People & the Planet, Department of Life Sciences, University of Coimbra, 3000-456 Coimbra, Portugal.

出版信息

Plants (Basel). 2024 Apr 19;13(8):1143. doi: 10.3390/plants13081143.

Abstract

Plants are often exposed to multiple stresses, including heavy metals (HM) and drought, which limit the plant growth and productivity. Though biochar or plant growth-promoting rhizobacteria (PGPR) have been widely used for alleviating HM or drought stress in plants, the study of the effects of combined treatment with biochar and PGPR under simultaneous HM and drought stress is limited. This study investigated individual and combined effects of groundnut shell biochar (GS-BC) and PGPR strain ARN7 on growth, physiology, and HM accumulation, along with their impact on soil enzymes under HM (Ni and Zn), drought, or HM+drought stress. It was observed that even under HM+drought stress, growth, total chlorophyll, proteins, phenolics, and relative water contents were increased in response to combined GS-BC and ARN7 treatment. Furthermore, the combined treatment positively influenced plant superoxide dismutase, ascorbate peroxidase, and catalase activities, while reducing electrolyte leakage and phenolics, malondialdehyde, and proline under HM, drought, or HM+drought stress. Interestingly, the combined GS-BC and ARN7 treatment decreased HM accumulation and the bioaccumulation factor in , highlighting that the combined treatment is suitable for improving HM phytostabilization. Additionally, GS-BC increased soil enzymatic activities and ARN7 colonization irrespective of HM and drought stress. As far as we know, this study is the first to illustrate that combined biochar and PGPR treatment could lessen the adverse effects of both HM and drought, suggesting that such treatment can be used in water-deficient HM-contaminated areas to improve plant growth and reduce HM accumulation in plants.

摘要

植物常常会遭受多种胁迫,包括重金属(HM)和干旱,这些胁迫会限制植物的生长和生产力。尽管生物炭或植物促生根际细菌(PGPR)已被广泛用于缓解植物中的重金属或干旱胁迫,但关于在重金属和干旱同时胁迫下生物炭与PGPR联合处理效果的研究却很有限。本研究调查了花生壳生物炭(GS-BC)和PGPR菌株ARN7对植物生长、生理及重金属积累的单独和联合影响,以及它们在重金属(镍和锌)、干旱或重金属+干旱胁迫下对土壤酶的影响。结果发现,即使在重金属+干旱胁迫下,联合GS-BC和ARN7处理仍能使植物的生长、总叶绿素、蛋白质、酚类物质和相对含水量增加。此外,联合处理对植物超氧化物歧化酶、抗坏血酸过氧化物酶和过氧化氢酶活性有积极影响,同时在重金属、干旱或重金属+干旱胁迫下降低了电解质渗漏、酚类物质、丙二醛和脯氨酸的含量。有趣的是,联合GS-BC和ARN7处理降低了植物体内重金属的积累和生物富集系数,这表明联合处理适用于改善重金属的植物稳定化。此外,无论重金属和干旱胁迫如何,GS-BC都能提高土壤酶活性和ARN7的定殖率。据我们所知,本研究首次表明生物炭与PGPR联合处理可减轻重金属和干旱的不利影响,这表明这种处理方法可用于缺水的重金属污染地区,以促进植物生长并减少植物体内重金属的积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dbd/11053748/052f817ca1c4/plants-13-01143-g001.jpg

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