Ferns are the closest sister group to all seed plants, yet little is known about their genomes other than that they are generally colossal. Here, we report on the genomes of Azolla filiculoides and Salvinia cucullata (Salviniales) and present evidence for episodic whole-genome duplication in ferns-one at the base of 'core leptosporangiates' and one specific to Azolla. One fernspecific gene that we identified, recently shown to confer high insect resistance, seems to have been derived from bacteria through horizontal gene transfer. Azolla coexists in a unique symbiosis with N-2-fixing cyanobacteria, and we demonstrate a clear pattern of cospeciation between the two partners. Furthermore, the Azolla genome lacks genes that are common to arbus...
Brouwer P, Bräutigam A, Külahoglu C, et al. Azolla domestication towards a biobased economy? New Phy...
To date, little is known about the evolution of fern genomes, with only two small genomes published ...
Background: An ancient cyanobacterial incorporation into a eukaryotic organism led to the evolution ...
Ferns are the closest sister group to all seed plants, yet little is known about their genomes other...
Ferns are the closest sister group to all seed plants, yet little is known about their genomes other...
Ferns are the closest sister group to all seed plants, yet little is known about their genomes other...
Cyanobacteria are an ancient and globally distributed group of photosynthetic prokaryotes including ...
Ferns are the only major lineage of vascular plants not represented by a sequenced nuclear genome. T...
Ferns are the only major lineage of vascular plants not represented by a sequenced nuclear genome. T...
Ferns from the Azolla genus are highly productive without nitrogen fertilizer because filamentous cy...
The large size and complexity of most fern genomes have hampered efforts to elucidate fundamental as...
AbstractThe aquatic ferns of the genus Azolla are nitrogen-fixing plants that have great potentials ...
Supplementary Information: Supplementary Text, Figs. 1–5 and Tables 1–14.Supplementary Data 1: Suppl...
Brouwer P, Bräutigam A, Külahoglu C, et al. Azolla domestication towards a biobased economy? New Phy...
To date, little is known about the evolution of fern genomes, with only two small genomes published ...
Background: An ancient cyanobacterial incorporation into a eukaryotic organism led to the evolution ...
Ferns are the closest sister group to all seed plants, yet little is known about their genomes other...
Ferns are the closest sister group to all seed plants, yet little is known about their genomes other...
Ferns are the closest sister group to all seed plants, yet little is known about their genomes other...
Cyanobacteria are an ancient and globally distributed group of photosynthetic prokaryotes including ...
Ferns are the only major lineage of vascular plants not represented by a sequenced nuclear genome. T...
Ferns are the only major lineage of vascular plants not represented by a sequenced nuclear genome. T...
Ferns from the Azolla genus are highly productive without nitrogen fertilizer because filamentous cy...
The large size and complexity of most fern genomes have hampered efforts to elucidate fundamental as...
AbstractThe aquatic ferns of the genus Azolla are nitrogen-fixing plants that have great potentials ...
Supplementary Information: Supplementary Text, Figs. 1–5 and Tables 1–14.Supplementary Data 1: Suppl...
Brouwer P, Bräutigam A, Külahoglu C, et al. Azolla domestication towards a biobased economy? New Phy...
To date, little is known about the evolution of fern genomes, with only two small genomes published ...
Background: An ancient cyanobacterial incorporation into a eukaryotic organism led to the evolution ...