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植物联合修复土壤重金属污染的最新进展。

Recent advances in phyto-combined remediation of heavy metal pollution in soil.

机构信息

Hunan Province Key Laboratory of Plant Functional Genomics and Developmental Regulation, College of Biology, Hunan University, Changsha 410082, PR China.

State Key Laboratory of Utilization of Woody Oil Resource, Hunan Academy of Forestry, Changsha 410004, PR China.

出版信息

Biotechnol Adv. 2024 May-Jun;72:108337. doi: 10.1016/j.biotechadv.2024.108337. Epub 2024 Mar 7.

Abstract

The global industrialization and modernization have witnessed a rapid progress made in agricultural production, along with the issue of soil heavy metal (HM) pollution, which has posed severe threats to soil quality, crop yield, and human health. Phytoremediation, as an alternative to physical and chemical methods, offers a more cost-effective, eco-friendly, and aesthetically appealing means for in-situ remediation. Despite its advantages, traditional phytoremediation faces challenges, including variable soil physicochemical properties, the bioavailability of HMs, and the slow growth and limited biomass of plants used for remediation. This study presents a critical overview of the predominant plant-based HM remediation strategies. It expounds upon the mechanisms of plant absorption, translocation, accumulation, and detoxification of HMs. Moreover, the advancements and practical applications of phyto-combined remediation strategies, such as the addition of exogenous substances, genetic modification of plants, enhancement by rhizosphere microorganisms, and intensification of agricultural technologies, are synthesized. In addition, this paper also emphasizes the economic and practical feasibility of some strategies, proposing solutions to extant challenges in traditional phytoremediation. It advocates for the development of cost-effective, minimally polluting, and biocompatible exogenous substances, along with the careful selection and application of hyperaccumulating plants. We further delineate specific future research avenues, such as refining genetic engineering techniques to avoid adverse impacts on plant growth and the ecosystem, and tailoring phyto-combined strategies to diverse soil types and HM pollutants. These proposed directions aim to enhance the practical application of phytoremediation and its integration into a broader remediation framework, thereby addressing the urgent need for sustainable soil decontamination and protection of ecological and human health.

摘要

全球工业化和现代化进程中,农业生产取得了飞速发展,但随之而来的土壤重金属(HM)污染问题也对土壤质量、作物产量和人类健康构成了严重威胁。与物理化学方法相比,植物修复作为一种替代方法,具有成本效益高、生态友好和美观等优点,更适合原位修复。然而,传统的植物修复方法也面临一些挑战,包括土壤理化性质的变化、HM 的生物可利用性、修复植物的生长缓慢和生物量有限等。本研究对主要的基于植物的 HM 修复策略进行了批判性的综述。阐述了植物吸收、转运、积累和解毒 HM 的机制。此外,还综合了植物联合修复策略的进展和实际应用,如添加外源物质、植物遗传修饰、根际微生物增强和农业技术强化等。此外,本文还强调了一些策略的经济和实际可行性,提出了解决传统植物修复中现存挑战的方法。提倡开发经济高效、低污染、生物相容性好的外源物质,并谨慎选择和应用超积累植物。我们进一步阐述了具体的未来研究方向,如完善遗传工程技术以避免对植物生长和生态系统的不利影响,以及针对不同土壤类型和 HM 污染物定制植物联合修复策略。这些建议的方向旨在增强植物修复的实际应用,并将其纳入更广泛的修复框架中,以满足可持续土壤净化和保护生态及人类健康的迫切需求。

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