Related Experiment Video
Updated: Dec 22, 2025

Using Phylogenetic Analysis to Investigate Eukaryotic Gene Origin
Published on: August 14, 2018
The mitochondrial phylogeny of land plants shows support for Setaphyta under composition-heterogeneous substitution
Filipe Sousa1, Peter Civáň1,2, João Brazão1
1Centro de Ciências do Mar, Universidade do Algarve, Faro, Portugal.
Abstract:
Congruence among analyses of plant genomic data partitions (nuclear, chloroplast and mitochondrial) is a strong indicator of accuracy in plant molecular phylogenetics. Recent analyses of both nuclear and chloroplast genome data of land plants (embryophytes) have, controversially, been shown to support monophyly of both bryophytes (mosses, liverworts, and hornworts) and tracheophytes (lycopods, ferns, and seed plants), with mosses and liverworts forming the clade Setaphyta. However, relationships inferred from mitochondria are incongruent with these results, and typically indicate paraphyly of bryophytes with liverworts alone resolved as the earliest-branching land plant group. Here, we reconstruct the mitochondrial land plant phylogeny from a newly compiled data set. When among-lineage composition heterogeneity is accounted for in analyses of codon-degenerate nucleotide and amino acid data, the clade Setaphyta is recovered with high support, and hornworts are supported as the earliest-branching lineage of land plants. These new mitochondrial analyses demonstrate partial congruence with current hypotheses based on nuclear and chloroplast genome data, and provide further incentive for revision of how plants arose on land.
Related Concept Videos
Phylogenetic Trees
Introduction to Plant Diversity
Phylogeny
Non-vascular Seedless Plants
Seedless Vascular Plants
Diversity of Protists III

