Stepwise evolution of the developmental and symbiotic functions of DELLA in land plants

Summary DELLA proteins play diverse roles in development, plant-microbe interactions and stress responses, and are regulated by the hormone gibberellic acid (GA) in flowering plants. Here, we investigated the evolutionary conservation of functions of the single DELLA ortholog in the non-vascular model liverwort Marchantia paleacea , which lacks genes for perception and biosynthesis of bioactive GA. We found that GA-independent developmental phenotypes are conserved in M. paleacea , while neither DELLA , nor its close paralog GRAS13 are involved in establishment of arbuscular mycorrhizal symbiosis. We propose that symbiosis-related functions of DELLA evolved and have been maintained in vascular plants because GA-dependent regulation offered an additional, systemic, control layer on symbiosis.

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Publication Details

Journal
New Phytologist
Published
2026-09-28
DOI
https://doi.org/10.1111/nph.71597
Primary Topic
Plant Molecular Biology Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Stepwise evolution of the developmental and symbiotic functions of DELLA in land plants

Pierre‐Marc Delaux, Matheus E. Bianconi, Katharina Melkonian, Aurélie Le Ru et al.
New Phytologist
Plant Molecular Biology Research
article

Stepwise evolution of the developmental and symbiotic functions of DELLA in land plants

Pierre‐Marc Delaux, Matheus E. Bianconi, Katharina Melkonian, Aurélie Le Ru, Mélanie K. Rich, Jean Keller, Maxime Bonhomme, Tifenn Pellen, Katinka Bünger, Oceane Thiercelin
article en

Abstract

Summary DELLA proteins play diverse roles in development, plant-microbe interactions and stress responses, and are regulated by the hormone gibberellic acid (GA) in flowering plants. Here, we investigated the evolutionary conservation of functions of the single DELLA ortholog in the non-vascular model liverwort Marchantia paleacea , which lacks genes for perception and biosynthesis of bioactive GA. We found that GA-independent developmental phenotypes are conserved in M. paleacea , while neither DELLA , nor its close paralog GRAS13 are involved in establishment of arbuscular mycorrhizal symbiosis. We propose that symbiosis-related functions of DELLA evolved and have been maintained in vascular plants because GA-dependent regulation offered an additional, systemic, control layer on symbiosis.

New Phytologist
Centre National de la Recherche Scientifique (FR), Laboratoire de Recherche en Sciences Végétales (FR)
Deutsche Forschungsgemeinschaft, Agence Nationale de la Recherche
Life in Land
Openalex Percentile: Top 87%
Plant Molecular Biology Research
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Stepwise evolution of the developmental and symbiotic functions of DELLA in land plants — Pierre‐Marc Delaux, Matheus E. Bianconi, et al. · New Phytologist (2026) | TGRS Research Map | TGRS