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March 15, 2026Rhizosphere0 citationsOpen Access

Switchgrass-associated soil microbes have subtle but distinct effects on germination vs. growth under drought

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TUTayler C. UlbrichLBLukas Bell-DereskeHEHarry Ervin

Key Points

  • This research aims to understand how soil microbes affect switchgrass fitness during drought, focusing on different life stages.
  • Conducted a greenhouse experiment with switchgrass using sterile bulk and live bulk soils.
  • Investigated microbial sources from bulk and rhizosphere soils.
  • Evaluated germination and seedling growth under drought conditions at multiple stages.
  • Analyzed changes in microbial community composition over time.
  • Drought and absence of microbes significantly reduced germination rates by 49% and 50%.
  • Microbial presence had minimal effects on older seedlings.
  • Bulk and rhizosphere soil communities became compositionally distinct after germination, but not during seedling stage.
  • Microbial effects varied between life stages, showing potential both positive and negative influences.

Abstract

Soil microbial communities can play a large role in plant fitness, including plants’ response to drought. How microbes mediate drought response may also differ across the plants’ life stage, but studies rarely study causal effects of microbes on plant fitness at multiple stages. We conducted a greenhouse experiment on switchgrass ( Panicum virgatum L.) to investigate how microbial presence (sterile bulk vs. live bulk soils) and microbial source (communities from bulk vs. rhizosphere soil) affect germination and seedling growth (life-stage) during drought. We also investigated how drought and life-stage alter the assembly of the inoculated communities. Both drought conditions and the absence of microbes reduced germination (49% and 50% fewer seedlings, respectively, p < 0.05), but there were few effects of microbial presence on older seedlings. In addition, microbial source had no effect on the evaluated plant traits, but interestingly, the initially similar bulk and rhizosphere communities became compositionally distinct after 34 days with germinating seeds, but not with seedlings. Therefore, it may be that the plants did respond to microbial source through changes in seed or root exudates, and calls for further study. Finally, while sometimes microbes did benefit plants under drought, we did not find evidence that they are especially beneficial in this condition. We suggest that microbes’ effects differ across plant life stage, and may be both positive and negative. Further research should advance understanding of plant stress tolerance within a framework of plant-microbiome co-development. • Microbial effects on plants vary by life-stage, and greater during germination • Soil microbial communities rarely buffered early-stage plant drought stress • Plant responses to rhizosphere and bulk soil taxa do not differ • Germinating seeds have distinct effects on microbial filtering and composition • We call for attention to soil sterilization artifacts in plant-microbial studies

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Cite This Study

Ulbrich et al. (2026) studied this question.

synapsesocial.com/papers/69b64ccdb42794e3e660df47https://doi.org/10.1016/j.rhisph.2026.101301
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