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The legacy of terrestrial plant evolution on cell wall fine structure.

Authors :
Fangel, Jonatan U.
Sørensen, Klavs Martin
Jacobsen, Niels
Mravec, Jozef
Ahl, Louise Isager
Bakshani, Cassie
Mikkelsen, Maria Dalgaard
Engelsen, Søren Balling
Willats, William
Ulvskov, Peter
Source :
Plant, Cell & Environment. Apr2024, Vol. 47 Issue 4, p1238-1254. 17p.
Publication Year :
2024

Abstract

The evolution of land flora was an epochal event in the history of planet Earth. The success of plants, and especially flowering plants, in colonizing all but the most hostile environments required multiple mechanisms of adaptation. The mainly polysaccharide‐based cell walls of flowering plants, which are indispensable for water transport and structural support, are one of the most important adaptations to life on land. Thus, development of vasculature is regarded as a seminal event in cell wall evolution, but the impact of further refinements and diversification of cell wall compositions and architectures on radiation of flowering plant families is less well understood. We approached this from a glyco‐profiling perspective and, using carbohydrate microarrays and monoclonal antibodies, studied the cell walls of 287 plant species selected to represent important evolutionary dichotomies and adaptation to a variety of habitats. The results support the conclusion that radiation of flowering plant families was indeed accompanied by changes in cell wall fine structure and that these changes can obscure earlier evolutionary events. Convergent cell wall adaptations identified by our analyses do not appear to be associated with plants with similar lifestyles but that are taxonomically distantly related. We conclude that cell wall structure is linked to phylogeny more strongly than to habitat or lifestyle and propose that there are many approaches of adaptation to any given ecological niche. Summary statement: Plant material from 287 species was selected to represent important evolutionary dichotomies and adaptations. We characterized polymer compositions to investigate correlations between cell wall fine structure and evolution. Cell wall structure was linked more to phylogeny than habitat or lifestyle. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01407791
Volume :
47
Issue :
4
Database :
Academic Search Index
Journal :
Plant, Cell & Environment
Publication Type :
Academic Journal
Accession number :
175826794
Full Text :
https://doi.org/10.1111/pce.14785