Microbe to Microbiome: A Paradigm Shift in the Application of Microorganisms for Sustainable Agriculture
- PMID: 33408712
- PMCID: PMC7779556
- DOI: 10.3389/fmicb.2020.622926
Microbe to Microbiome: A Paradigm Shift in the Application of Microorganisms for Sustainable Agriculture
Abstract
Light, water and healthy soil are three essential natural resources required for agricultural productivity. Industrialization of agriculture has resulted in intensification of cropping practices using enormous amounts of chemical pesticides and fertilizers that damage these natural resources. Therefore, there is a need to embrace agriculture practices that do not depend on greater use of fertilizers and water to meet the growing demand of global food requirements. Plants and soil harbor millions of microorganisms, which collectively form a microbial community known as the microbiome. An effective microbiome can offer benefits to its host, including plant growth promotion, nutrient use efficiency, and control of pests and phytopathogens. Therefore, there is an immediate need to bring functional potential of plant-associated microbiome and its innovation into crop production. In addition to that, new scientific methodologies that can track the nutrient flux through the plant, its resident microbiome and surrounding soil, will offer new opportunities for the design of more efficient microbial consortia design. It is now increasingly acknowledged that the diversity of a microbial inoculum is as important as its plant growth promoting ability. Not surprisingly, outcomes from such plant and soil microbiome studies have resulted in a paradigm shift away from single, specific soil microbes to a more holistic microbiome approach for enhancing crop productivity and the restoration of soil health. Herein, we have reviewed this paradigm shift and discussed various aspects of benign microbiome-based approaches for sustainable agriculture.
Keywords: cover crop; microbial consortia; mycorrhiza; rhizobacteria; rhizosphere.
Copyright © 2020 Ray, Lakshmanan, Labbé and Craven.
Conflict of interest statement
The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.
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References
-
- Acosta-Martínez V., Burow G., Zobeck T., Allen V. (2010). Soil microbial communities and function in alternative systems to continuous cotton. Soil Sci. Soc. Am. J. 74 1181–1192. 10.2136/sssaj2008.0065 - DOI
-
- Allen A., Vandever M. (2005). The Conservation Reserve Program: planting for the future. US Geol. Surv. 2005:5145.
-
- Allen M. F., Allen M. F. (1991). The ecology of mycorrhizae. Cambridge: Cambridge University Press.
-
- Armalytë J., Skerniškytë J., Bakienë E., Krasauskas R., Šiugždinienë R., Kareivienë V., et al. (2019). Microbial diversity and antimicrobial resistance profile in microbiota from soils of conventional and organic farming systems. Front. Microbiol. 10:892. 10.3389/fmicb.2019.00892 - DOI - PMC - PubMed
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