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自然界中的微生物生物膜:挖掘其在农业应用中的潜力。

Microbial biofilms in nature: unlocking their potential for agricultural applications.

机构信息

TERI Deakin Nanobiotechnology Centre, Sustainable Agriculture Division, The Energy and Resources Institute, TERI Gram, Gwal Pahari, Gurugram, Haryana, India.

School of Life and Environmental Sciences, Deakin University, Geelong, Vic, Australia.

出版信息

J Appl Microbiol. 2020 Aug;129(2):199-211. doi: 10.1111/jam.14609. Epub 2020 Feb 20.

Abstract

Soil environments are dynamic and the plant rhizosphere harbours a phenomenal diversity of micro-organisms which exchange signals and beneficial nutrients. Bipartite beneficial or symbiotic interactions with host roots, such as mycorrhizae and various bacteria, are relatively well characterized. In addition, a tripartite interaction also exists between plant roots, arbuscular mycorrhizal fungi (AMF) and associated bacteria. Bacterial biofilms exist as a sheet of bacterial cells in association with AMF structures, embedded within a self-produced exopolysaccharide matrix. Such biofilms may play important functional roles within these tripartite interactions. However, the details about such interactions in the rhizosphere and their relevant functional relationships have not been elucidated. This review explores the current understanding of naturally occurring microbial biofilms, and their interaction with biotic surfaces, especially AMF. The possible roles played by bacterial biofilms and the potential for their application for a more productive and sustainable agriculture is discussed in this review.

摘要

土壤环境是动态的,植物根际中蕴藏着丰富多样的微生物,它们可以相互交换信号和有益的养分。与宿主根系(如菌根和各种细菌)的二分有益或共生相互作用相对较好地得到了描述。此外,植物根系、丛枝菌根真菌(AMF)和相关细菌之间也存在着三分相互作用。细菌生物膜是与 AMF 结构相关联的细菌细胞层,嵌入在自身产生的胞外多糖基质中。这种生物膜可能在这三种相互作用中发挥着重要的功能作用。然而,关于这些根际中的相互作用及其相关功能关系的细节尚未阐明。本综述探讨了自然发生的微生物生物膜及其与生物表面(特别是 AMF)相互作用的当前理解。本综述讨论了细菌生物膜所扮演的可能角色以及它们在更具生产力和可持续农业中的应用潜力。

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