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January 23, 2026Letters in Applied Microbiology0 citations

Endophytic Drought-Tolerant Bacterial Community Dynamics Across Contrasting Agroclimatic Zones

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LHLopamudra HazraSBSudipto BiswasKSKunal Kumar Saha

Key Points

  • The research aims to explore the diversity and functional capabilities of endophytic bacterial communities in rice landraces affected by water limitations.
  • Used 16S rRNA amplicon sequencing to analyze bacterial communities.
  • Conducted predictive functional profiling using PICRUSt2.
  • Screened cultures for drought tolerance through biochemical validation.
  • Focused on indigenous upland and lowland cultivars from West Bengal, India.
  • Identified distinct endophytic communities with upland rice showing higher stress-adapted taxa.
  • Notable increase in KEGG pathways related to osmolyte biosynthesis and antioxidant defense in upland microbiomes.
  • Isolates like Enterobacter sp. KNR1 and Klebsiella sp. GBR1 showed strong tolerance to osmotic stress.

Abstract

Abstract Rice (Oryza sativa) sustains more than half of the global population but is particularly vulnerable to water limitation in rainfed upland and lowland ecosystems. Endophytic microbiomes represent a sustainable strategy for improving drought resilience, yet their diversity and functional potential in traditional rice landraces remain underexplored. This study investigated endophytic bacterial communities associated with indigenous upland and lowland cultivars of West Bengal, India, using 16S rRNA amplicon sequencing, predictive functional profiling, culture-based screening, and biochemical validation. Distinct microbial assemblages revealed for diverse agro-ecosystems, with upland cultivars enriched in stress-adapted taxa such as Proteobacteria, Actinobacteria, and Firmicutes. PICRUSt2 predictions indicated higher representation of KEGG pathways associated with osmolyte biosynthesis, antioxidant defence and compatible solute metabolism in upland microbiomes. Culture isolates, notably Enterobacter sp. KNR1 and Klebsiella sp. GBR1, exhibited strong tolerance to PEG-induced osmotic stress, producing elevated proline, glycine betaine, EPS, and IAA, alongside efficient root colonization in susceptible rice. Collectively, these findings establish indigenous upland rice as a reservoir of functionally resilient endophytes and provide a foundation for developing microbial consortia to enhance rice performance under water-limited conditions.

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Cite This Study

Hazra et al. (2026) studied this question.

synapsesocial.com/papers/69730f78c8125b09b0d1f3a8https://doi.org/10.1093/lambio/ovag013
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