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March 3, 2026SHILAP Revista de lepidopterología2 citationsOpen Access

Changes in the Rhizospheric Microbiota of Pepitilla Maize in Response to Drought: Functional and Taxonomic Analysis

RZRicardo Zacamo-VelázquezLGLorena Jacqueline Gómez-GodínezHRHumberto Ramírez-Vega

Key Points

  • The study finds significant changes in rhizospheric bacterial diversity during drought conditions, impacting maize physiology.
  • Bacterial diversity was measured using massive sequencing of the 16S rRNA gene, highlighting distinct microbial communities under stress.
  • Certain taxa, including Actinobacteriota and Acidobacteriota, increased in abundance during drought, correlating with physiological changes.
  • Understanding these microbial shifts may help develop strategies to enhance maize resilience against drought effects.

Abstract

Native maize varieties provide important information for counteracting the effects of climate change, which leads to agricultural drought. The native rhizospheric microbiota is an ecological niche that maintains a close relationship with the plant and helps mitigate the effects of drought on it. The objective of this study was to describe the composition and structure of the rhizospheric bacterial communities of the native Pepitilla maize plants under conditions of water stress. An experiment was conducted under greenhouse conditions with three irrigation regimes and a control with normal irrigation. The responses of the plants to drought and the rhizospheric bacterial microbiota were measured before, during, and after the drought. Bacterial diversity was analyzed from rhizospheric soil using massive sequencing of the 16S rRNA gene. The drought model applied in the experiment had a negative effect on the plants, affecting their physiological, morphological, and biochemical functions. Diversity analyses showed statistical differences between the conditions during and after the drought in most cases. A reduction and modification in bacterial abundance was observed during the drought condition across different taxonomic groups, the most representative being the phyla Actinobacteriota, Pseudomonadota, and Acidobacteriota; the families Acidobacteriaceae, Rhodanobacteraceae, Solirubrobacteraceae, Acidothermaceae, and Microbacteriaceae; and the genera Actinobacteria, Sphingomonas, Geodermatophilus, Conexibacter, and Acidothermus. It is worth noting that the taxa Actinobacteria and Proteobacteria, as well as the families Microbacteriaceae, Sphingomonadaceae, and UnclassifiedActinobacteria, were directly associated with the drought condition, as an increase in their relative abundance was observed. This information is very useful for understanding the relationship between certain taxa enriched during stress conditions and the physiology of maize plants.

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Cite This Study

Zacamo-Velázquez et al. (2026) studied this question.

synapsesocial.com/papers/69a75b90c6e9836116a2311bhttps://doi.org/10.3390/microorganisms14020291
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