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Selection on soil microbiomes reveals reproducible impacts on plant function

The ISME Journal · 2014 · Vol. 9(4) · pp. 980–989
Kevin Panke-BuisseAngela C. PooleJulia K. GoodrichRuth E. LeyJenny Kao‐Kniffin

Abstract

Soil microorganisms found in the root zone impact plant growth and development, but the potential to harness these benefits is hampered by the sheer abundance and diversity of the players influencing desirable plant traits. Here, we report a high level of reproducibility of soil microbiomes in altering plant flowering time and soil functions when partnered within and between plant hosts. We used a multi-generation experimental system using Arabidopsis thaliana Col to select for soil microbiomes inducing earlier or later flowering times of their hosts. We then inoculated the selected microbiomes from the tenth generation of plantings into the soils of three additional A. thaliana genotypes (Ler, Be, RLD) and a related crucifer (Brassica rapa). With the exception of Ler, all other plant hosts showed a shift in flowering time corresponding with the inoculation of early- or late-flowering microbiomes. Analysis of the soil microbial community using 16 S rRNA gene sequencing showed distinct microbiota profiles assembling by flowering time treatment. Plant hosts grown with the late-flowering-associated microbiomes showed consequent increases in inflorescence biomass for three A. thaliana genotypes and an increase in total biomass for B. rapa. The increase in biomass was correlated with two- to five-fold enhancement of microbial extracellular enzyme activities associated with nitrogen mineralization in soils. The reproducibility of the flowering phenotype across plant hosts suggests that microbiomes can be selected to modify plant traits and coordinate changes in soil resource pools.

Plant-Microbe Interactions and ImmunityLegume Nitrogen Fixing SymbiosisSoil Carbon and Nitrogen DynamicsBiologyMicrobiomeBrassica rapaInflorescenceArabidopsis thalianaBotanyBiomass (ecology)Soil microbiologyEcosystemMicrobial ecology

MeSH terms

GenotypeSoilSoil MicrobiologyReproducibility of ResultsArabidopsisBiomassBrassica rapaFlowersMicrobiota

Funding

  • National Science Foundation
  • U.S. Department of Agriculture
  • Cooperative State Research, Education, and Extension Service
  • President's Council of Cornell Women
  • Division of Graduate Education
Citations
696
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49
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100%
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References
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Soil Biology and Biochemistry · 2009 · 1,420 citations
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