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利用丛枝菌根真菌对土壤和水进行可持续修复:综述

Sustainable Remediation of Soil and Water Utilizing Arbuscular Mycorrhizal Fungi: A Review.

作者信息

Zhang Xueqi, Wang Zongcheng, Lu Yebin, Wei Jun, Qi Shiying, Wu Boran, Cheng Shuiping

机构信息

Key Laboratory of Yangtze River Water Environment, Ministry of Education, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.

Power China Huadong Engineering Corporation Limited, Hangzhou 311122, China.

出版信息

Microorganisms. 2024 Jun 21;12(7):1255. doi: 10.3390/microorganisms12071255.

Abstract

Phytoremediation is recognized as an environmentally friendly technique. However, the low biomass production, high time consumption, and exposure to combined toxic stress from contaminated media weaken the potential of phytoremediation. As a class of plant-beneficial microorganisms, arbuscular mycorrhizal fungi (AMF) can promote plant nutrient uptake, improve plant habitats, and regulate abiotic stresses, and the utilization of AMF to enhance phytoremediation is considered to be an effective way to enhance the remediation efficiency. In this paper, we searched 520 papers published during the period 2000-2023 on the topic of AMF-assisted phytoremediation from the Web of Science core collection database. We analyzed the author co-authorship, country, and keyword co-occurrence clustering by VOSviewer. We summarized the advances in research and proposed prospective studies on AMF-assisted phytoremediation. The bibliometric analyses showed that heavy metal, soil, stress tolerance, and growth promotion were the research hotspots. AMF-plant symbiosis has been used in water and soil in different scenarios for the remediation of heavy metal pollution and organic pollution, among others. The potential mechanisms of pollutant removal in which AMF are directly involved through hyphal exudate binding and stabilization, accumulation in their structures, and nutrient exchange with the host plant are highlighted. In addition, the tolerance strategies of AMF through influencing the subcellular distribution of contaminants as well as chemical form shifts, activation of plant defenses, and induction of differential gene expression in plants are presented. We proposed that future research should screen anaerobic-tolerant AMF strains, examine bacterial interactions with AMF, and utilize AMF for combined pollutant removal to accelerate practical applications.

摘要

植物修复被认为是一种环境友好型技术。然而,低生物量产量、高时间消耗以及来自污染介质的复合毒性胁迫暴露削弱了植物修复的潜力。作为一类对植物有益的微生物,丛枝菌根真菌(AMF)可以促进植物养分吸收、改善植物生长环境并调节非生物胁迫,利用AMF来增强植物修复被认为是提高修复效率的有效途径。在本文中,我们从Web of Science核心合集数据库中检索了2000年至2023年期间发表的520篇关于AMF辅助植物修复主题的论文。我们通过VOSviewer分析了作者合作情况、国家以及关键词共现聚类。我们总结了研究进展,并提出了关于AMF辅助植物修复的前瞻性研究。文献计量分析表明,重金属、土壤、胁迫耐受性和生长促进是研究热点。AMF与植物的共生关系已被用于不同场景的水和土壤中,以修复重金属污染和有机污染等。强调了AMF通过菌丝分泌物结合与稳定、在其结构中的积累以及与宿主植物的养分交换直接参与污染物去除的潜在机制。此外,还介绍了AMF通过影响污染物的亚细胞分布以及化学形态转变、激活植物防御和诱导植物差异基因表达的耐受策略。我们建议未来的研究应筛选耐厌氧的AMF菌株,研究细菌与AMF的相互作用,并利用AMF去除复合污染物以加速实际应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a8a/11279267/db27e460b19e/microorganisms-12-01255-g001.jpg

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