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February 21, 2026Current Opinion in Plant Biology0 citationsOpen Access

Beyond elongation: The multifaceted roles of gibberellins in symbiosis and root development

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KVKaren VelandiaCDColleen DrapekEFEloise Foo

Key Points

  • This review aims to understand the diverse functions of gibberellins and DELLA proteins in root development and symbiotic interactions.
  • Analysis of gibberellin and DELLA functions in relation to root organogenesis and symbiotic signaling.
  • Examination of hormonal interactions and spatial-temporal dynamics in plant development.
  • Review of current literature on gibberellins' roles across various plant species.
  • Gibberellins and DELLA proteins are critical regulators of symbiotic signaling and root development.
  • Gibberellin promotes DELLA degradation, influencing microbial infection and nodule organogenesis.
  • Research identifies the need for understanding hormonal crosstalk in the modulation of plant symbiotic interactions.

Abstract

Plants regulate root development in response to fluctuating environmental conditions, including establishing symbiotic relationships with arbuscular mycorrhizal fungi and nitrogen-fixing bacteria under nutrient limitation. These processes are orchestrated by plant hormones, particularly gibberellins, and the repressors of gibberellin signalling, DELLA proteins. Gibberellin and DELLAs serve as critical regulators in symbiotic signalling and root organogenesis, integrating hormonal and environmental cues with cellular patterning to direct plant development. This review explores the current understanding of gibberellin and DELLA function in symbiosis and root development, including an analysis of the conservation and divergence of their function in land plant evolution. DELLA proteins play a pivotal role in the common symbiotic signalling pathway, modulating transcriptional responses essential for both arbuscular mycorrhizal and rhizobial symbioses. While gibberellin suppresses early symbiotic signalling and microbial infection by promoting DELLA degradation, gibberellin positively regulates nodule organogenesis and function, demonstrating a cell- and stage-dependent role in symbiotic associations. Indeed, precise spatial and temporal dynamics of gibberellin signalling occurs during nodulation and root development. Key avenues for future research are identified, including understanding how the crosstalk between gibberellin and other key plant hormones fine-tune symbiosis and root development.

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Cite This Study

Velandia et al. (2026) studied this question.

synapsesocial.com/papers/69994a7f873532290d01ef7ahttps://doi.org/10.1016/j.pbi.2026.102858
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