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April 1, 2026Plant Direct0 citationsOpen Access

A Potential Role for MYB93 Regulating Sulfur Responses in Arabidopsis and Tomato

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XCXulyu CaoSoil and Fertilizer Institute of Hunan ProvinceHWHelen WilkinsonUniversity of BirminghamBHBethany HuttonUniversity of Birmingham

Key Points

  • The study aims to investigate the role of MYB93 in regulating sulfur responses and its impact on lateral root development in Arabidopsis and tomato.
  • Analyzed AtMYB93 transcript levels in response to sulfur deprivation
  • Compared lateral root development between wild-type and Atmyb93 mutant lines
  • Examined the response of tomato MYB93 homologs to sulfur stress
  • Conducted elemental analysis of sulfur levels in Atmyb93 mutants and Sl MYB93-overexpressing plants
  • AtMYB93 is upregulated by sulfur deprivation
  • Atmyb93 mutants have elevated shoot sulfur levels compared to wild-type
  • Sl MYB93 inhibits lateral root development in Arabidopsis
  • MYB93 homologs in dicots show root enrichment and response to sulfur stress

Abstract

ABSTRACT Sulfur (S) is an important nutrient that has wide‐ranging effects on plant health and metabolism. Several classes of transcription factors respond to S deprivation, including R2R3‐MYBs. In Arabidopsis , the AtMYB93 transcription factor‐encoding gene is upregulated by S deprivation. At MYB93 has a non‐redundant function in lateral root development and redundant functions regulating suberin biosynthesis alongside related MYB transcription factors. Whether At MYB93's potential role in plant S responses relates to lateral root development, and the extent to which either function is conserved outside Arabidopsis , are unknown. We show that a tomato MYB93 homolog ( Sl MYB93) can inhibit lateral root development in Arabidopsis . Putative MYB93 homologs in many dicots show root enrichment and tomato MYB93 ‐related genes show upregulation by S stress. The transcriptome of Atmyb93 mutant roots implicates At MYB93 in responses to S, while elemental analysis demonstrates that the Atmyb93 mutant has elevated shoot S levels while tomato Sl MYB93‐overexpressing plants have reduced shoot S. We uncover a stimulatory effect of S deprivation on Arabidopsis adventitious root development. However, Atmyb93 mutants do not show significant changes in sensitivity to S with respect to lateral or adventitious root development, most likely due to some functional redundancy. Moreover, AtMYB93 promoter activity is not spatially regulated by S deprivation. Taken together, our data suggest that MYB93 may have a role in mediating the regulation of S levels alongside other root transcription factors.

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Cite This Study

Cao et al. (2026) studied this question.

synapsesocial.com/papers/69cd7a915652765b073a7dd5https://doi.org/10.1002/pld3.70157
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