Background: Molecular phylogenetic investigations have revolutionized our understanding of the evolutionary history of ferns—the second-most species-rich major group of vascular plants, and the sister clade to seed plants. The general absence of genomic resources available for this important group of plants, however, has resulted in the strong dependence of these studies on plastid data; nuclear or mitochondrial data have been rarely used. In this study, we utilize transcriptome data to design primers for nuclear markers for use in studies of fern evolutionary biology, and demonstrate the utility of these markers across the largest order of ferns, the Polypodiales. Principal Findings: We present 20 novel single-copy nuclear regions, across ...
Premise of the study: Understanding fern (monilophyte) phylogeny and its evolutionary timescale is c...
BackgroundTranscriptomics in non-model plant systems has recently reached a point where the examinat...
Background: Ferns, originated about 360 million years ago, are the sister group of seed plants. Desp...
Background: Molecular phylogenetic investigations have revolutionized our understanding of the evolu...
Background: Molecular phylogenetic investigations have revolutionized our understanding of the evolu...
BACKGROUND:Molecular phylogenetic investigations have revolutionized our understanding of the evolut...
Premise of the studyUntil recently, most phylogenetic studies of ferns were based on chloroplast gen...
Premise of the study: Until recently, most phylogenetic studies of ferns were based on chloroplast g...
Premise of the Study Until recently, most phylogenetic studies of ferns were based on chloroplast ge...
BackgroundDNA barcoding will revolutionize our understanding of fern ecology, most especially becaus...
Ferns are one of the few remaining major clades of land plants for which a complete genome sequence ...
Abstract Background Ferns are large and underexplored group of vascular plants (~ 11 thousands speci...
UNLABELLED: • PREMISE OF THE STUDY: Understanding fern (monilophyte) phylogeny and its evolutionary ...
Background: Transcriptomics in non-model plant systems has recently reached a point where the examin...
Ferns are one of the few remaining major clades of land plants for which a complete genome sequence ...
Premise of the study: Understanding fern (monilophyte) phylogeny and its evolutionary timescale is c...
BackgroundTranscriptomics in non-model plant systems has recently reached a point where the examinat...
Background: Ferns, originated about 360 million years ago, are the sister group of seed plants. Desp...
Background: Molecular phylogenetic investigations have revolutionized our understanding of the evolu...
Background: Molecular phylogenetic investigations have revolutionized our understanding of the evolu...
BACKGROUND:Molecular phylogenetic investigations have revolutionized our understanding of the evolut...
Premise of the studyUntil recently, most phylogenetic studies of ferns were based on chloroplast gen...
Premise of the study: Until recently, most phylogenetic studies of ferns were based on chloroplast g...
Premise of the Study Until recently, most phylogenetic studies of ferns were based on chloroplast ge...
BackgroundDNA barcoding will revolutionize our understanding of fern ecology, most especially becaus...
Ferns are one of the few remaining major clades of land plants for which a complete genome sequence ...
Abstract Background Ferns are large and underexplored group of vascular plants (~ 11 thousands speci...
UNLABELLED: • PREMISE OF THE STUDY: Understanding fern (monilophyte) phylogeny and its evolutionary ...
Background: Transcriptomics in non-model plant systems has recently reached a point where the examin...
Ferns are one of the few remaining major clades of land plants for which a complete genome sequence ...
Premise of the study: Understanding fern (monilophyte) phylogeny and its evolutionary timescale is c...
BackgroundTranscriptomics in non-model plant systems has recently reached a point where the examinat...
Background: Ferns, originated about 360 million years ago, are the sister group of seed plants. Desp...