Potential use of fungal-bacterial co-cultures for the removal of organic pollutants.

IF 8.1 2区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Critical Reviews in Biotechnology Pub Date : 2022-05-01 Epub Date: 2021-07-29 DOI:10.1080/07388551.2021.1940831
Erika J Espinosa-Ortiz, Eldon R Rene, Robin Gerlach
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引用次数: 28

Abstract

Fungi and bacteria coexist in a wide variety of natural and artificial environments which can lead to their association and interaction - ranging from antagonism to cooperation - that can affect the survival, colonization, spatial distribution and stress resistance of the interacting partners. The use of polymicrobial cultivation approaches has facilitated a more thorough understanding of microbial dynamics in mixed microbial communities, such as those composed of fungi and bacteria, and their influence on ecosystem functions. Mixed (multi-domain) microbial communities exhibit unique associations and interactions that could result in more efficient systems for the degradation and removal of organic pollutants. Several previous studies have reported enhanced biodegradation of certain pollutants when using combined fungal-bacterial treatments compared to pure cultures or communities of either fungi or bacteria (single domain systems). This article reviews: (i) the mechanisms of pollutant degradation that can occur in fungal-bacterial systems (e.g.: co-degradation, production of secondary metabolites, enhancement of degradative enzyme production, and transport of bacteria by fungal mycelia); (ii) case studies using fungal-bacterial co-cultures for the removal of various organic pollutants (synthetic dyes, polycyclic aromatic hydrocarbons, pesticides, and other trace or volatile organic compounds) in different environmental matrices (e.g. water, gas/vapors, soil); (iii) the key aspects of engineering artificial fungal-bacterial co-cultures, and (iv) the current challenges and future perspectives of using fungal-bacterial co-cultures for environmental remediation.

真菌-细菌共培养去除有机污染物的潜在用途。
真菌和细菌共存于各种各样的自然和人工环境中,这可能导致它们的联系和相互作用-从对抗到合作-可以影响相互作用伙伴的生存,定植,空间分布和抗逆性。多微生物培养方法的使用有助于更彻底地了解混合微生物群落(如真菌和细菌组成的微生物群落)中的微生物动力学及其对生态系统功能的影响。混合(多域)微生物群落表现出独特的关联和相互作用,可能导致更有效的系统降解和去除有机污染物。先前的一些研究报道,与纯培养物或真菌或细菌群落(单域系统)相比,使用真菌-细菌联合处理可增强某些污染物的生物降解。本文综述了:(1)真菌-细菌系统中污染物降解的机制(例如:共降解、次生代谢物的产生、降解酶生产的增强和真菌菌丝的细菌运输);(ii)利用真菌-细菌共培养去除不同环境基质(如水、气体/蒸气、土壤)中的各种有机污染物(合成染料、多环芳烃、农药和其他微量或挥发性有机化合物)的案例研究;(iii)工程人工真菌-细菌共培养的关键方面,以及(iv)利用真菌-细菌共培养进行环境修复的当前挑战和未来前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Critical Reviews in Biotechnology
Critical Reviews in Biotechnology 工程技术-生物工程与应用微生物
CiteScore
20.80
自引率
1.10%
发文量
71
审稿时长
4.8 months
期刊介绍: Biotechnological techniques, from fermentation to genetic manipulation, have become increasingly relevant to the food and beverage, fuel production, chemical and pharmaceutical, and waste management industries. Consequently, academic as well as industrial institutions need to keep abreast of the concepts, data, and methodologies evolved by continuing research. This journal provides a forum of critical evaluation of recent and current publications and, periodically, for state-of-the-art reports from various geographic areas around the world. Contributing authors are recognized experts in their fields, and each article is reviewed by an objective expert to ensure accuracy and objectivity of the presentation.
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