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February 28, 2026Plant Physiology and Biochemistry2 citationsOpen Access

Endophyte-Induced Physiological Adjustments to Improve Drought Tolerance in Rice

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MLMilan Kumar LalRAR.R. AbhishekPHPrashantkumar S. Hanjagi

Key Points

  • The study aims to evaluate how fungal endophytes enhance drought tolerance in different rice varieties.
  • Isolation of two fungal endophytes, Fusarium incarnatum and Fusarium equiseti, from extreme environments
  • Assessment of growth parameters and biochemical responses in three rice varieties under drought conditions
  • Correlation analysis to evaluate relationships between antioxidant enzyme activities and yield components
  • Endophyte colonization increased root and shoot biomass under drought conditions
  • SF5 outperformed K23 in enhancing physiological traits in most rice varieties
  • Both endophytes improved oxidative stress management, resulting in better growth and higher yields
  • Diverse responses were observed, with SF5 showing specificity in reproductive traits for Sahbhagi Dhan

Abstract

Fungal endophytes are known to improve plant resilience by influencing a wide range of physiological, biochemical, and molecular processes. The endophytes adapted to stress-prone habitats have emerged as promising biological agents for enhancing crop tolerance under water-limited conditions. In the present study, In the present study, two funagal endophytes, Fusarium incarnatum (K23) and Fusarium equiseti (SF5), isolated from contrasting extreme environments, mitigated the adverse effects of drought across three rice varieties namely, IR64, CR Dhan 307, and Sahbhagi Dhan. Endophyte colonization significantly increased root and shoot biomass under drought, with SF5 outperforming K23 in most parameters. Colonization of endophytes improved physiological and biochemical parameters under drought in all three rice varieties. Additionally, both endophytes contributed to oxidative stress management under drought. Agronomic traits, including plant height, panicle weight, and grain weight, were also significantly improved under drought conditions with endophyte colonization. SF5 showed specificity in enhancing reproductive traits in Sahbhagi Dhan, whereas K23 demonstrated broader efficacy across all varieties. Correlation analysis highlighted the interplay between antioxidant enzyme activities, and yield components. Current findings suggest that habitat-adapted endophytic fungi, offer an effective, variety-specific strategy to improve drought tolerance and crop productivity in rice. This research provides insights into beneficial endophytic inoculants for sustainable agriculture in water-limited environments. • Drought stress increased oxidative stress and reduced biomass in rice varieties, IR-64, CR Dhan-307 and Sahbhagi Dhan. • Fungal endophytes Fusarium incarnatum (K23) and Fusarium equiseti (SF5), reduced oxidative stress and improved growth and stress resilience under drought. • Stress resilience in endophyte colonised plants was associated with enhanced accumulation of compatible solute, proline, and increased activities of anti-oxidant enzymes. • Fungal endophytes enhanced the yield trait and exhibited a variety-specific response.

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Cite This Study

Lal et al. (2026) studied this question.

synapsesocial.com/papers/69a287460a974eb0d3c02d7dhttps://doi.org/10.1016/j.plaphy.2026.111175
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