真菌生物修复:机制、应用和未来前景概述

IF 9 Q1 ENVIRONMENTAL SCIENCES
Yuvaraj Dinakarkumar , Gnanasekaran Ramakrishnan , Koteswara Reddy Gujjula , Vishali Vasu , Priyadharishini Balamurugan , Gayathri Murali
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引用次数: 0

摘要

真菌生物修复利用真菌的天然代谢能力对各种污染物进行降解和解毒,是解决环境污染问题的一种前景广阔的可持续方法。本综述全面概述了真菌生物修复的机制、应用和未来前景。真菌拥有独特的丰富酶库,包括裂解酶、过氧化物酶和水解酶,可将复杂的有机化合物、重金属和异种生物分解成危害较小的物质。真菌的多功能性使其能够应用于各种环境,包括土壤、水和空气修复。真菌生物修复的功效体现在其降解多环芳烃 (PAH)、多氯联苯 (PCB) 和石油碳氢化合物等持久性有机污染物的能力,以及通过生物吸附和生物累积固定和转化重金属的能力。本综述还讨论了与真菌生物修复相关的挑战和局限性,如需要优化环境条件和潜在的生态影响。综述强调了未来的研究方向,包括整合用于阐明真菌代谢途径的全息技术,以及开发生物技术创新,以扩大真菌生物修复过程的规模。这篇综述强调了真菌在环境修复中的关键作用,并强调有必要继续开展研究和技术进步,以充分发挥真菌在应对全球环境挑战方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fungal bioremediation: An overview of the mechanisms, applications and future perspectives

Fungal bioremediation represents a promising and sustainable approach to addressing environmental pollution by exploiting the natural metabolic capabilities of fungi to degrade and detoxify a wide array of pollutants. This review provides a comprehensive overview of the mechanisms, applications, and future perspectives of fungal bioremediation. Fungi are uniquely equipped with an extensive arsenal of enzymes, including laccases, peroxidases, and hydrolases, which facilitate the breakdown of complex organic compounds, heavy metals, and xenobiotics into less harmful substances. The versatility of fungi enables their application across various environmental contexts, including soil, water, and air remediation. The efficacy of fungal bioremediation is demonstrated in its ability to degrade persistent organic pollutants such as polycyclic aromatic hydrocarbons (PAHs), polychlorinated biphenyls (PCBs), and petroleum hydrocarbons, as well as to immobilize and transform heavy metals through biosorption and bioaccumulation. This review also discusses the challenges and limitations associated with fungal bioremediation, such as the need for optimized environmental conditions and potential ecological impacts. Future research directions are highlighted, including the integration of omics technologies for the elucidation of fungal metabolic pathways and the development of biotechnological innovations to scale up fungal bioremediation processes. This review underscores the critical role of fungi in environmental remediation and emphasizes the need for continued research and technological advancements to harness their full potential in addressing global environmental challenges.

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来源期刊
CiteScore
15.40
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