4.8 Article

Fruit Growth in Arabidopsis Occurs via DELLA-Dependent and DELLA-Independent Gibberellin Responses

Journal

PLANT CELL
Volume 24, Issue 10, Pages 3982-3996

Publisher

AMER SOC PLANT BIOLOGISTS
DOI: 10.1105/tpc.112.103192

Keywords

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Funding

  1. GRO ISP grant from the Biotechnology and Biological Sciences Research Council [BB/J004588/1]
  2. John Innes Foundation
  3. Marie Curie Fellowship on the Early Stage Training Programme [MEST-CT-2005-019727]
  4. Biotechnology and Biological Sciences Research Council [P19972, BBS/E/J/00000583] Funding Source: researchfish

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Fruit growth and development depend on highly coordinated hormonal activities. The phytohormone gibberellin (GA) promotes growth by inducing degradation of the growth-repressing DELLA proteins; however, the extent to which DELLA proteins contribute to GA-mediated gynoecium and fruit development remains to be clarified. Here, we provide an in-depth characterization of the role of DELLA proteins in Arabidopsis thaliana fruit growth. We show that DELLA proteins are key regulators of reproductive organ size and important for ensuring optimal fertilization. We demonstrate that the seedless fruit growth (parthenocarpy) observed in della mutants can be directly attributed to the constitutive activation of GA signaling. It has been known for > 75 years that another hormone, auxin, can induce formation of seedless fruits. Using mutants with complete lack of DELLA activity, we show here that auxin-induced parthenocarpy occurs entirely through GA signaling in Arabidopsis. Finally, we uncover the existence of a DELLA-independent GA response that promotes fruit growth. This response requires GIBBERELLIN-INSENSITIVE DWARF1-mediated GA perception and a functional 26S proteasome and involves the basic helix-loop-helix protein SPATULA as a key component. Taken together, our results describe additional complexities in GA signaling during fruit development, which may be particularly important to optimize the conditions for successful reproduction.

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