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Phosphate deprivation-induced changes in tomato are mediated by an interaction between brassinosteroid signaling and zinc

Gozde S. Demirer, Donald J. Gibson, Xiaoyan Yue, Kelly Pan, Eshel Elishav, Hitaishi Khandal, Guy Horev, Danuše Tarkowská, Alex Cantó-Pastor, Shuyao Kong, Concepcion Manzano, Julin N. Maloof, Sigal Savaldi-Goldstein, Siobhan M. Brady

Research output: Contribution to journalArticlepeer-review

Abstract

Inorganic phosphate (Pi) is a necessary macronutrient for basic biological processes. Plants modulate their root system architecture (RSA) and cellular processes to adapt to Pi deprivation albeit with a growth penalty. Excess application of Pi fertilizer, on the contrary, leads to eutrophication and has a negative environmental impact. We compared RSA, root hair elongation, acid phosphatase activity, metal ion accumulation, and brassinosteroid hormone levels of Solanum lycopersicum (tomato) and Solanum pennellii, which is a wild relative of tomato, under Pi sufficiency and deficiency conditions to understand the molecular mechanism of Pi deprivation response in tomato. We showed that S. pennellii is partially insensitive to phosphate deprivation. Furthermore, it mounts a constitutive response under phosphate sufficiency. We demonstrate that activated brassinosteroid signaling through a tomato BZR1 ortholog gives rise to the same constitutive phosphate deficiency response, which is dependent on zinc overaccumulation. Collectively, these results reveal an additional strategy by which plants can adapt to phosphate starvation.

Original languageEnglish
Pages (from-to)1368-1383
Number of pages16
JournalNEW PHYTOLOGIST
Volume239
Issue number4
DOIs
StatePublished - Aug 2023

Keywords

  • Solanum pennellii
  • brassinosteroid signaling
  • interactions between nutrients and hormones
  • nutrient deprivation
  • phosphate
  • tomato
  • zinc

All Science Journal Classification (ASJC) codes

  • Physiology
  • Plant Science

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