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High-energy-level metabolism and transport occur at the transition from closed to open flowers

Authors :
Monica Borghi
Leonardo Perez de Souza
Takayuki Tohge
Jianing Mi
Giovanni Melandri
Sebastian Proost
Marina C M Martins
Salim Al-Babili
Harro J Bouwmeester
Alisdair R Fernie
Plant Hormone Biology (SILS, FNWI)
Source :
Plant Physiology, 190(1), 319-339. American Society of Plant Biologists
Publication Year :
2022
Publisher :
American Society of Plant Biologists, 2022.

Abstract

During the maturation phase of flower development, the onset of anthesis visibly marks the transition from buds to open flowers, during which petals stretch out, nectar secretion commences, and pollination occurs. Analysis of the metabolic changes occurring during this developmental transition has primarily focused on specific classes of metabolites, such as pigments and scent emission, and far less on the whole network of primary and secondary metabolites. To investigate the metabolic changes occurring at anthesis, we performed multi-platform metabolomics alongside RNA sequencing in individual florets harvested from the main inflorescence of Arabidopsis (Arabidopsis thaliana) ecotype Col-0. To trace metabolic fluxes at the level of the whole inflorescence and individual florets, we further integrated these studies with radiolabeled experiments. These extensive analyses revealed high-energy-level metabolism and transport of carbohydrates and amino acids, supporting intense metabolic rearrangements occurring at the time of this floral transition. These comprehensive data are discussed in the context of our current understanding of the metabolic shifts underlying flower opening. We envision that this analysis will facilitate the introgression of floral metabolic traits promoting pollination in crop species for which a comprehensive knowledge of flower metabolism is still limited. ispartof: PLANT PHYSIOLOGY vol:190 issue:1 pages:319-339 ispartof: location:United States status: published

Details

Language :
English
ISSN :
15322548 and 00320889
Volume :
190
Issue :
1
Database :
OpenAIRE
Journal :
Plant Physiology
Accession number :
edsair.doi.dedup.....2cd17779fe6a71af39068a68390fcb99