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June 12, 2024PlantsOpen Access

NaCl Modifies Biochemical Traits in Bacterial Endophytes Isolated from Halophytes: Towards Salinity Stress Mitigation Using Consortia

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Authors

JGJesús Adrián Barajas GonzálezYRYersaín Ely Keller de la RosaRCRogelio Carrillo‐González

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Overview

In vitro analysis demonstrates that sodium chloride alters nutrient solubilization in halophyte bacterial endophytes, highlighting their potential as consortia to mitigate plant salinity stress.

Key Points

  • Presence of sodium chloride alters nutrient solubilization and enzymatic activity across diverse bacterial endophytes isolated from six halophytes.
  • Eleven bacterial isolates tolerate 2.5 M sodium chloride, and tartaric acid consistently drives phosphorus, zinc, and potassium solubilization.
  • Biochemical assays in vitro reveal organic acids mediate nutrient release, highlighting bacterial consortia to mitigate salinity stress in glycophytes.

Cite This Study

González et al. (2024) studied this question.

synapsesocial.com/papers/68e650a0b6db6435875e0ae5https://doi.org/10.3390/plants13121626
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1NaCl Modifies Biochemical Traits in Bacterial Endophytes Isolated from Halophytes: Towards Salinity Stress Mitigation Using Consortia2024
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  3. 3Halotolerant Bacterial Inoculation Mitigates Salinity‐Induced Morpho‐Physiological Stress in Rhodes Grass ( <scp> <i>Chloris gayana</i> </scp> K.)2026 · 1 citations
  4. 4Integrated physiological and molecular approaches to study salt-induced adaptation in halophytes collected from extremely saline lands2024 · 1 citations
  5. 5Diversity and Potential Plant Growth-Promoting Traits of Cultivable Bacteria Associated with Three Halophytes2024