Literature DB >> 34325585

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

Erika J Espinosa-Ortiz1,2, Eldon R Rene3, Robin Gerlach1,2.   

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.

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Keywords:  Bioremediation; bacteria; fungi; fungal-bacterial interactions; co-cultures; soil remediation; waste gas treatment; wastewater treatment

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Year:  2021        PMID: 34325585     DOI: 10.1080/07388551.2021.1940831

Source DB:  PubMed          Journal:  Crit Rev Biotechnol        ISSN: 0738-8551            Impact factor:   8.429


  2 in total

1.  Draft Genome Sequences of Two Sphingobium Species Associated with Hexachlorocyclohexane (HCH) Degradation Isolated from an HCH-Contaminated Soil.

Authors:  Nelson Khan; Rodolfo Brizola Toscan; Accadius Lunayo; Benson Wamalwa; Edward Muge; Francis J Mulaa; René Kallies; Hauke Harms; Lukas Y Wick; Ulisses Nunes da Rocha
Journal:  Microbiol Resour Announc       Date:  2022-02-17

2.  Design and construction of 3D printed devices to investigate active and passive bacterial dispersal on hydrated surfaces.

Authors:  Thierry Kuhn; Matteo Buffi; Saskia Bindschedler; Patrick S Chain; Diego Gonzalez; Claire E Stanley; Lukas Y Wick; Pilar Junier; Xiang-Yi Li Richter
Journal:  BMC Biol       Date:  2022-09-14       Impact factor: 7.364

  2 in total

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