This is the final version. Available on open access from Cell Press via the DOI in this recordPlant (archaeplastid) evolution has transformed the biosphere, but we are only now beginning to learn how this took place through comparative genomics, phylogenetics, and the fossil record. This has illuminated the phylogeny of Archaeplastida, Viridiplantae, and Streptophyta, and has resolved the evolution of key characters, genes, and genomes - revealing that many key innovations evolved long before the clades with which they have been casually associated. Molecular clock analyses estimate that Streptophyta and Viridiplantae emerged in the late Mesoproterozoic to late Neoproterozoic, whereas Archaeplastida emerged in the late-mid Palaeoproterozoic...
Background: The large and diverse land plant lineage is nested within a clade of fresh water green a...
Mounting evidence suggests that terrestrialization of plants started in streptophyte green algae, fa...
achieved remarkable levels of metabolic sophistication before the end of the Archean around 2500 Ma ...
There can be no doubt that early land plant evolution transformed the planet but until recently, how...
The origin of plants and their colonization of land fundamentally transformed the terrestrial enviro...
Over the last 470 Ma, plant evolution has seen major evolutionary transitions, such as the move from...
The origin of land plants and their descendants was marked by the evolution of key adaptations to li...
The origin of land plants and their descendants was marked by the evolution of key adaptations to li...
Microbial communities have existed on land since at least the Neoarchean (2800 to 2500 million years...
The appearance of photosynthetic eukaryotes (algae and plants) dramatically altered the Earth's ecos...
Establishing the timescale of early land plant evolution is essential for testing hypotheses on the ...
Establishing the timescale of early land plant evolution is essential for testing hypotheses on the ...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...
© 2015 The Authors. Published by the Royal Society under the terms of the Creative Commons Attributi...
The colonization and radiation of multicellular plants on land that started over 470 Ma was one of t...
Background: The large and diverse land plant lineage is nested within a clade of fresh water green a...
Mounting evidence suggests that terrestrialization of plants started in streptophyte green algae, fa...
achieved remarkable levels of metabolic sophistication before the end of the Archean around 2500 Ma ...
There can be no doubt that early land plant evolution transformed the planet but until recently, how...
The origin of plants and their colonization of land fundamentally transformed the terrestrial enviro...
Over the last 470 Ma, plant evolution has seen major evolutionary transitions, such as the move from...
The origin of land plants and their descendants was marked by the evolution of key adaptations to li...
The origin of land plants and their descendants was marked by the evolution of key adaptations to li...
Microbial communities have existed on land since at least the Neoarchean (2800 to 2500 million years...
The appearance of photosynthetic eukaryotes (algae and plants) dramatically altered the Earth's ecos...
Establishing the timescale of early land plant evolution is essential for testing hypotheses on the ...
Establishing the timescale of early land plant evolution is essential for testing hypotheses on the ...
Understanding the process of evolution is crucial in biology because the diversity of life on earth ...
© 2015 The Authors. Published by the Royal Society under the terms of the Creative Commons Attributi...
The colonization and radiation of multicellular plants on land that started over 470 Ma was one of t...
Background: The large and diverse land plant lineage is nested within a clade of fresh water green a...
Mounting evidence suggests that terrestrialization of plants started in streptophyte green algae, fa...
achieved remarkable levels of metabolic sophistication before the end of the Archean around 2500 Ma ...