Full text 2026

The Importance of the <i>Physcomitrium patens</i> Genome in the Evolutionary Genomics of Terrestrial Plants

Lima AFDC, Alves WBDS, Matos LFP, et al.

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Abstract

Mosses (Bryophyta) comprises a group of terrestrial plants that colonized land more than 450 million years ago that play fundamental ecological and evolutionary roles, particularly in polar and peatland ecosystems. The sequencing of <i>Physcomitrium patens</i> marked a milestone in bryophyte genomics, establishing mosses as model organisms for evolutionary and functional studies. However, the recent advent of next-generation sequencing technologies has broadened genomic exploration beyond <i>P. patens</i>, unveiling the genetic diversity of additional bryophyte species. Notably, the genomes of <i>Sphagnum fallax</i>, <i>Sphagnum magellanicum</i>, the liverwort <i>Marchantia polymorpha</i> and hornworts from <i>Athoceros</i> genus have provided new insights into carbon fixation mechanisms, ecological adaptations, and lineage-specific evolutionary traits. These advances have enabled large-scale comparative analyses and expanded the understanding of conserved and divergent genomic features among bryophytes. The integration of these datasets into public databases such as Phytozome and NCBI Genome has created a robust framework for investigating plant genome evolution and biotechnological potential. Altogether, the expanding genomic landscape of bryophytes reveals their remarkable evolutionary plasticity and underscores their importance as key models for studying adaptation, metabolism, and genomic innovation in terrestrial plants.

Keywords

Moss Plant evolution Gene Expression Plant Biotechnology Model Organisms Physcomitrium Patens Bryophyte Genomics