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May 26, 2026Agronomy0 citationsOpen Access

Salinity Mitigation in Tomato Using a Halophilic Endophytic Consortium by Seed Priming: From Germination to Production

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MGMa. del Carmen Ángeles González-ChávezJGJesús Adrián Barajas GonzálezRCRogelio Carrillo-González

Key Points

  • This research aims to evaluate the effects of different seed priming treatments on tomato plants under salinity stress.
  • Seed priming treatments included hydro-, halo-, bacterio-, and halo-bacteriopriming.
  • The study was conducted under two salinity conditions (0 and 16 mM NaCl).
  • Physiological and nutritional variables were analyzed using multivariate statistical methods.
  • Bacteriopriming reduced germination time and improved seedling emergence uniformity.
  • Bacteriopriming increased concentrations of K, Mg, and Zn in leaves and fruits while depleting Na uptake.
  • Yield and beta-carotene concentration in tomato fruits increased significantly due to improved nutritional balance.

Abstract

Salinity is a critical agricultural threat that reduces the productivity of several crops. Tomato (Solanum lycopersicum) is the world’s second most significant horticultural commodity, which struggles due to salt concentrations in irrigation water, even in hydroponic systems. This research evaluated seed priming treatments (hydro-, halo-, bacterio-, and halo-bacteriopriming) at different phenological stages under two salinity conditions (0 and 16 mM NaCl) to improve crop production. After evaluating physiological variables and multivariate statistical analyses, this study’s main breakthroughs are: Priming treatments modified the physiological, nutritional, and productive metabolism of tomato plants. Bacterio- and halo-bacteriopriming using an endophytic and halophytic bacterial consortium reduced germination time, enhancing uniformity and synchronizing seedling emergence. Bacteriopriming enhanced N, P, Ca and Zn absorption in seedlings. In the vegetative and reproductive stages, bacteriopriming consistently increased concentrations of K, Mg, and Zn in leaves and fruits but depleted Na uptake. Improving the nutritional balance resulted in not only a higher concentration of chlorophyll but also an increase in the yield and beta-carotene concentration in tomato fruits. The results demonstrated that halo-bacteriopriming may be a biotechnological strategy for mitigating saline stress, optimizing tomato growth and nutraceutical quality, because it outperformed the plant response in all stages of development compared to the control and hydro- and haloprimed treatments.

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Cite This Study

González-Chávez et al. (2026) studied this question.

synapsesocial.com/papers/6a153a88b5d9c58d83e8d226https://doi.org/10.3390/agronomy16111039
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