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Mbadinga Zamar, D.-L.

Publications and source records attributed to Mbadinga Zamar, D.-L..

2 recordsLinked to original sources

A single genetic innovation at the origin of plant terrestrialization

How the functional innovations that enabled plants to first colonize land 450 million years ago evolved remains puzzling. Here, we show that the gain of a single family of enzymes was pivotal in the evolution of two of these innovations, the cuticle that protect plants from dehydration and UV light, and the Arbuscular Mycorrhizal symbiosis promoting water and nutrient uptake. We show that functional phosphatase domain Glycerol-3-Phosphate Acyl Transferase (p-GPATs) evolved in the first land plants, concomitantly with the cuticle and symbiosis. Mutation of two p-GPATs from the liverwort Marchantia paleacea is sufficient to abolish both cuticle formation and AM symbiosis, leading to major developmental defects. We propose that the evolution of p-GPATs in land plants acted as a two birds-one stone innovation, diverting intracellular lipids to the extracellular space and providing a simple path to the evolution of two traits essential for the colonization of land.

plant biology↗

The Marchantia pangenome reveals ancient mechanisms of plant adaptation to the environment

Plant adaptation to a terrestrial life 450 million years ago played a major role in the evolution of life on Earth. This shift from an aquatic environment has been mostly studied by focusing on flowering plants. Here, we gathered a collection of 133 accessions of the non-vascular plants Marchantia polymorpha and studied its intraspecific diversity using selection signature analyses, genome-environment association study and a gene-centered pangenome. We identified adaptive features shared with flowering plants, such as peroxidases or nucleotide-binding and leucine-rich repeat (NLR), which likely played a role in the adaptation of the first land plants to the terrestrial habitat. The M. polymorpha pangenome also harbored lineage-specific accessory genes absent from seed plants. We conclude that different land plants lineages still share many elements from the genetic toolkit evolved by their most recent common ancestor to adapt to the terrestrial habitat, refined by lineage specific polymorphisms and gene family evolutions.

plant biology↗