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February 5, 2026The EMBO Journal5 citationsOpen Access

Salt-stress-induced tomato sweetening involves an SlSnRK2.6-SlZHD8 sugar accumulation cascade triggered by root-derived abscisic acid

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JXJinghao XuZZZhiliang ZhangJWJ. Y. Wei

Key Points

  • This research aims to uncover the molecular mechanisms by which salt stress enhances sugar accumulation in tomato fruit.
  • Used tomato (Solanum lycopersicum) as a model organism to study salt stress effects.
  • Investigated the role of root-derived abscisic acid (ABA) in sugar accumulation during salt stress.
  • Analyzed the interactions between SlSnRK2.6, SlZHD8, SlSUS3, and SlSWEET12 in fruit sugar pathways.
  • Salt stress increases fruit sweetness through enhanced sugar accumulation.
  • ABA transport from roots activates SlSnRK2.6, leading to phosphorylation of SlZHD8.
  • Phosphorylation of SlZHD8 reduces its stability and DNA-binding, relieving repression of sugar-related genes.

Abstract

Abstract Crop quality arises from the interplay of genetics and environment. While moderate salt stress is known to enhance fruit sweetness, the underlying molecular mechanisms remain unclear. Using tomato ( Solanum lycopersicum ) as a model, this study investigates how salt stress promotes fruit sugar accumulation. Root-derived abscisic acid (ABA) transport to fruit acts as the key signal under salt stress. Elevated fruit-ABA activates the kinase SlSnRK2.6, which phosphorylates the SlZHD8 transcription factor. This phosphorylation inhibits SlZHD8 function by reducing its protein stability and DNA-binding, thereby relieving its repression of SlSUS3 and SlSWEET12 to enhance fruit-sugar accumulation. Furthermore, the SlSnRK2.6-SlZHD8-SlSWEET12 module also regulates root-sugar accumulation and confers salt tolerance. Evolutionary analysis revealed a beneficial ZHD8 haplotype, whose reduced promoter-binding affinity promotes fruit-sugar accumulation under normal conditions and enhances salt tolerance. These findings explain how stress enhances quality and highlight the potential of key mutations of ZHD8, particularly the beneficial haplotype, for breeding tomatoes with improved sugar content and salt tolerance.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69843422f1d9ada3c1fb1f12https://doi.org/10.1038/s44318-026-00708-0
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