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Microbial Extracellular Polymeric Substances: Ecological Function and Impact on Soil Aggregation

Frontiers in Microbiology · 2018 · Vol. 9 · pp. 1636–1636
Ohana Y. A. CostaJos M. RaaijmakersEiko E. Kuramae

Abstract

A wide range of microorganisms produce extracellular polymeric substances (EPS), highly hydrated polymers that are mainly composed of polysaccharides, proteins, and DNA. EPS are fundamental for microbial life and provide an ideal environment for chemical reactions, nutrient entrapment, and protection against environmental stresses such as salinity and drought. Microbial EPS can enhance the aggregation of soil particles and benefit plants by maintaining the moisture of the environment and trapping nutrients. In addition, EPS have unique characteristics, such as biocompatibility, gelling, and thickening capabilities, with industrial applications. However, despite decades of research on the industrial potential of EPS, only a few polymers are widely used in different areas, especially in agriculture. This review provides an overview of current knowledge on the ecological functions of microbial EPSs and their application in agricultural soils to improve soil particle aggregation, an important factor for soil structure, health, and fertility.

biodegradable polymer synthesis and propertiesMicroplastics and Plastic PollutionWastewater Treatment and Nitrogen RemovalExtracellular polymeric substanceSoil waterMicroorganismNutrientBiochemical engineeringEnvironmental scienceEcologyBiologyBacteriaSoil science
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References
The EPS Matrix: The “House of Biofilm Cells”
Journal of Bacteriology · 2007 · 1,737 citations
Extracellular polymeric substances of bacteria and their potential environmental applications
Journal of Environmental Management · 2014 · 1,030 citations
The biofilm matrix
Nature Reviews Microbiology · 2010 · 9,374 citations
Effects of Xanthan gum biopolymer on soil strengthening
Construction and Building Materials · 2014 · 700 citations
Soil structure and management: a review
Geoderma · 2004 · 4,221 citations
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