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September 5, 2025Plant Biotechnology Journal5 citationsOpen Access

OsCK2 Phosphorylates OsSIZ1 to Regulate Phosphate Starvation Response and Defence Response in Rice

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MXMengyang XieXYXiaoli YangCWChen Wang

Key Points

  • Phosphate starvation response improved with mutations in osck2β3, linking it to osSIZ1 activity.
  • Transcriptome analysis revealed the 'osck2-osSIZ1' module influences defence responses and gene expression.
  • The phosphorylation of osSIZ1 by osck2 enhances stability, promoting phosphorus acquisition and pathogen resistance.
  • Overexpression of a mutated osSIZ1 variant led to increased defence responses without affecting rice growth.

Abstract

Phosphorus is a crucial nutrient for the normal growth and development of rice. Enhancing the efficiency of phosphorus acquisition in plants is vital for optimising soil phosphorus utilisation. The SUMO E3 ligase OsSIZ1 is an important factor for regulating plant phosphorus acquisition and starvation response in rice. However, how its activity responds to Pi-supplied conditions remains unknown. In this study, we discovered that the mutations in OsCK2β3, which encodes a regulatory subunit of CK2, influenced the Pi starvation response. The global level of SUMOylation was found to decrease in Osck2β3 mutants, mirroring the effects observed under Pi-deficiency treatment. Additionally, we identified that OsCK2 can interact with and phosphorylate OsSIZ1, thereby impacting its stability. Transcriptome analysis with Ossiz1 and Osck2β3 mutants revealed that the 'OsCK2-OsSIZ1' module primarily regulates defence responses by influencing the expression of genes associated with the biosynthesis of diterpenoid phytoalexins and pathogenesis-related genes, in addition to impacting the response to phosphate starvation. Notably, the overexpression of a variant of OsSIZ1, in which the phosphorylation sites targeted by OsCK2 were mutated, enhanced phosphorus acquisition and defence responses while preserving normal growth. Consequently, we not only showed how OsSIZ1 activity responds to Pi starvation but also created a variant of OsSIZ1 that improves phosphorus acquisition efficiency and enhances resistance against multiple pathogens, all without inducing growth defects.

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Cite This Study

Xie et al. (2025) studied this question.

synapsesocial.com/papers/68bb3ef72b87ece8dc95775ahttps://doi.org/10.1111/pbi.70342
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Also Consider

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  1. 1OsMAPK20-1 and OsMAPK20-4 phosphorylate OsCK2β3 to regulate its stability in response to phosphate starvation in rice2026
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  3. 3Rice phosphate transporter reduces the low phosphate response through jasmonate signaling2026
  4. 4OsPHR2 and OsMYC2 coordinate phosphate starvation-induced sakuranetin biosynthesis for enhanced rice blast resistance2026 · 2 citations
  5. 5OsPCK1 regulates photosynthate transport from source to sink and affects grain filling in rice2026