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Mechanisms of biochar-mediated alleviation of toxicity of trace elements in plants: a critical review

机译:生物炭介导的植物中微量元素毒性的机制:批判性评论

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Trace elements (TEs) contamination is one of the main abiotic stresses which limit plant growth and deteriorate the food quality by their entry into food chain. In recent, biochar (BC) soil amendment has been widely reported for the reduction of TE(s) uptake and toxicity in plants. This review summarizes the role of BC in enhancing TE(s) tolerance in plants. Under TE(s) stress, BC application increased plant growth, biomass, photosynthetic pigments, grain yield, and quality. The key mechanisms evoked are immobilization of TE(s) in the soil, increase in soil pH, alteration of TE(s) redox state in the soil, and improvement in soil physical and biological properties under TE(s) stress. However, these mechanisms vary with plant species, genotypes, growth conditions, duration of stress imposed, BC type, and preparation methods. This review highlights the potential for improving plant resistance to TE(s) stress by BC application and provides a theoretical basis for application of BC in TE(s) contaminated soils worldwide.
机译:微量元素(TES)污染是主要的非生物胁迫之一,限制植物生长,并通过进入食物链来恶化食品质量。最近,Biochar(BC)土壤修正已被普遍据报道,用于减少TE(S)摄取和毒性的毒性。本综述总结了BC在提高植物中的TE(S)耐受性。在TE(S)应力下,BC申请增加了植物生长,生物质,光合色素,籽粒产量和质量。引起的关键机制是固定土壤中的TE(S),土壤pH增加,土壤中的TE(S)氧化还原状态的改变,以及TE(S)应力下的土壤物理性质和生物学性质的改善。然而,这些机制与植物物种,基因型,生长条件,应力的施加持续时间,BC类型和制备方法而有所不同。本综述突出了BC申请改善植物耐药胁迫的可能性,并为全世界污染土壤中的污染土壤提供了理论依据。

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