Plant terrestrialization: an environmental pull on the evolution of multi-sourced streptophyte phenolics.

Sophie de Vries, Jan de Vries, Cäcilia F Kunz

Journal: Philosophical transactions of the Royal Society of London. Series B, Biological sciences 2024;379(1914):20230358

PMID: 39343031

Abstract

Phenolic compounds of land plants are varied: they are chemodiverse, are sourced from different biosynthetic routes and fulfil a broad spectrum of functions that range from signalling phytohormones, to protective shields against stressors, to structural compounds. Their action defines the biology of land plants as we know it. Often, their roles are tied to environmental responses that, however, impacted already the algal progenitors of land plants, streptophyte algae. Indeed, many streptophyte algae successfully dwell in terrestrial habitats and have homologues for enzymatic routes for the production of important phenolic compounds, such as the phenylpropanoid pathway. Here, we synthesize what is known about the production of specialized phenolic compounds across hundreds of millions of years of streptophyte evolution. We propose an evolutionary scenario in which selective pressures borne out of environmental cues shaped the chemodiversity of phenolics in streptophytes. This article is part of the theme issue 'The evolution of plant metabolism'.

Address: Department of Applied Bioinformatics, Institute for Microbiology and Genetics, University of Goettingen , Goettingen 37077, Germany.; Department of Applied Bioinformatics, Institute for Microbiology and Genetics, University of Goettingen , Goettingen 37077, Germany.; Campus Institute Data Science (CIDAS), University of Goettingen , Goettingen 37077, Germany.; Goettingen Center for Molecular Biosciences (GZMB), Department of Applied Bioinformatics, University of Goettingen , Goettingen 37077, Germany.
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