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February 28, 2026Science7 citations

OsWRI1a coordinates systemic growth responses to nitrogen availability in rice

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CSChengbo ShenZJZhe JiWJWu Jiao

Key Points

  • The aim is to understand how OsWRI1a regulates growth in rice in response to nitrogen availability.
  • Identified the role of OsWRI1a in rice growth
  • Investigated its effects on root and shoot development in response to nitrogen
  • Analyzed a specific haplotype of OsWRI1a for its efficiency under nitrogen deficiency
  • OsWRI1a coordinates root and shoot growth in response to nitrogen supply
  • Promotes auxin accumulation in roots to enhance development
  • Identified a haplotype that improves nitrogen-use efficiency and grain yield

Abstract

Nitrogen (N) deficiency–induced increases in the root-to-shoot biomass ratio in plants are adaptive in nature but suboptimal for agriculture. Understanding the regulatory mechanisms governing this developmental plasticity could help improve crop performance while reducing fertilizer application. We identified OsWRI1a (WRINKLED1a) as a regulatory hub coordinating rice root and shoot growth in response to external N supply, thereby stabilizing the root-to-shoot ratio. In roots, OsWRI1a enhances N-responsive development by promoting auxin accumulation. Meanwhile, shoot OsWRI1a stimulates tiller development and therefore shoot growth. We identified an elite OsWRI1a haplotype that minimizes root-to-shoot ratio fluctuation under N deficiency, improving N-use efficiency and grain yield. Our findings reveal a central mechanism coordinating N-responsive growth allocation for sustainable agriculture.

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Cite This Study

Shen et al. (2026) studied this question.

synapsesocial.com/papers/69a2877b0a974eb0d3c03383https://doi.org/10.1126/science.aeb8384
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