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腐生真菌在共污染场地中有机和无机污染物生物降解或转化中的作用。

Roles of saprotrophic fungi in biodegradation or transformation of organic and inorganic pollutants in co-contaminated sites.

机构信息

Laboratorio di Biodiversità dei Funghi, Dipartimento di Biologia Ambientale, Sapienza Università di Roma, 00185, Rome, Italy.

Centro di Ricerca Agricoltura e Ambiente, Consiglio per la Ricerca in agricoltura e l'analisi dell'Economia Agraria (CREA-AA), 00184, Rome, Italy.

出版信息

Appl Microbiol Biotechnol. 2019 Jan;103(1):53-68. doi: 10.1007/s00253-018-9451-1. Epub 2018 Oct 25.

Abstract

For decades, human activities, industrialization, and agriculture have contaminated soils and water with several compounds, including potentially toxic metals and organic persistent xenobiotics. The co-occurrence of those toxicants poses challenging environmental problems, as complicated chemical interactions and synergies can arise and lead to severe and toxic effects on organisms. The use of fungi, alone or with bacteria, for bioremediation purposes is a growing biotechnology with high potential in terms of cost-effectiveness, an environmental-friendly perspective and feasibility, and often representing a sustainable nature-based solution. This paper reviews different ecological, metabolic, and physiological aspects involved in fungal bioremediation of co-contaminated soils and water systems, not only addressing best methods and approaches to assess the simultaneous presence of metals and organic toxic compounds and their consequences on provided ecosystem services but also the interactions between fungi and bacteria, in order to suggest further study directions in this field.

摘要

几十年来,人类活动、工业化和农业生产导致土壤和水体受到多种化合物的污染,其中包括潜在毒性的金属和有机持久性污染物。这些有毒物质的共同存在构成了具有挑战性的环境问题,因为复杂的化学相互作用和协同作用可能会出现,并对生物体产生严重和毒性的影响。利用真菌,单独或与细菌一起,进行生物修复是一种具有高成本效益、环境友好型观点和可行性的生物技术,而且通常代表着一种可持续的基于自然的解决方案。本文综述了真菌对受污染土壤和水系统进行生物修复时涉及的不同生态、代谢和生理方面,不仅探讨了评估金属和有机有毒化合物同时存在的最佳方法和方法,以及它们对提供的生态系统服务的影响,还探讨了真菌和细菌之间的相互作用,以便为该领域的进一步研究提供方向。

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