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Communication

Field to Greenhouse: How Stable Is the Soil Microbiome after Removal from the Field?

by
Priyanka Kushwaha
1,
Ana L. Soto Velázquez
1,
Colleen McMahan
2 and
Julia W. Neilson
1,*
1
Department of Environmental Science, The University of Arizona, Tucson, AZ 85721, USA
2
USDA Agricultural Research Service, Western Regional Research Center, Albany, CA 94710, USA
*
Author to whom correspondence should be addressed.
Microorganisms 2024, 12(1), 110; https://doi.org/10.3390/microorganisms12010110
Submission received: 7 December 2023 / Revised: 29 December 2023 / Accepted: 3 January 2024 / Published: 5 January 2024
(This article belongs to the Special Issue The Effect of Soil Microbes on Plant Growth and Crop Protection)

Abstract

Plant-soil feedback (PSF) processes impact plant productivity and ecosystem function, but they are poorly understood because PSFs vary significantly with plant and soil type, plant growth stage, and environmental conditions. Controlled greenhouse studies are essential to unravel the mechanisms associating PSFs with plant productivity; however, successful implementation of these controlled experiments is constrained by our understanding of the persistence of the soil microbiome during the transition from field to greenhouse. This study evaluates the preservation potential of a field soil microbiome when stored in the laboratory under field temperature and moisture levels. Soil microbial diversity, taxonomic composition, and functional potential were evaluated via amplicon sequencing at the start of storage (W0), week 3 (W3), week 6 (W6), and week 9 (W9) to determine the effect of storage time on soil microbiome integrity. Though microbial richness remained stable, Shannon diversity indices decreased significantly at W6 for bacteria/archaea and W3 for fungi. Bacterial/archaeal community composition also remained stable, whereas the fungal community changed significantly during the first 3 weeks. Functional predictions revealed increased capacity for chemoheterotrophy for bacteria/archaea and decreased relative proportions of arbuscular mycorrhizal and ectomycorrhizal fungi. We show that preservation of the field soil microbiome must be a fundamental component of experimental design. Either greenhouse experiments should be initiated within 3 weeks of field soil collection, or a preliminary incubation study should be conducted to determine the time and storage conditions required to sustain the integrity of the specific field soil microbiome being studied.
Keywords: soil storage; plant–soil feedbacks; soil legacy; soil microbiome stability soil storage; plant–soil feedbacks; soil legacy; soil microbiome stability

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MDPI and ACS Style

Kushwaha, P.; Soto Velázquez, A.L.; McMahan, C.; Neilson, J.W. Field to Greenhouse: How Stable Is the Soil Microbiome after Removal from the Field? Microorganisms 2024, 12, 110. https://doi.org/10.3390/microorganisms12010110

AMA Style

Kushwaha P, Soto Velázquez AL, McMahan C, Neilson JW. Field to Greenhouse: How Stable Is the Soil Microbiome after Removal from the Field? Microorganisms. 2024; 12(1):110. https://doi.org/10.3390/microorganisms12010110

Chicago/Turabian Style

Kushwaha, Priyanka, Ana L. Soto Velázquez, Colleen McMahan, and Julia W. Neilson. 2024. "Field to Greenhouse: How Stable Is the Soil Microbiome after Removal from the Field?" Microorganisms 12, no. 1: 110. https://doi.org/10.3390/microorganisms12010110

APA Style

Kushwaha, P., Soto Velázquez, A. L., McMahan, C., & Neilson, J. W. (2024). Field to Greenhouse: How Stable Is the Soil Microbiome after Removal from the Field? Microorganisms, 12(1), 110. https://doi.org/10.3390/microorganisms12010110

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