Organellar phylogenomics of an emerging model system: Sphagnum (peatmoss).
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Summary
A well-supported hypothesis for phylogenetic relationships among major clades within Sphagnum based on organellar genome sequences (plastid, mitochondrial) is provided and clarify long-standing disagreements about subgeneric relationships and intrageneric classification.
- Type
- book
- Published
- 2016-08-01
- Cited by
- 64
- References
- 105
- Access
- Open access
- OpenAlex
- https://openalex.org/W27268484
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8666723
Keywords
Geography, Oceanography, Geology
References
- Recent divergence, intercontinental dispersal and shared polymorphism are shaping the genetic structure of amphi‐Atlantic peatmoss populations
- Biopython: freely available Python tools for computational molecular biology and bioinformatics
- The Sphagnum microbiome supports bog ecosystem functioning under extreme conditions
- Sequence-non-specific effects of RNA interference triggers and microRNA regulators
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- Boreal Peatland Ecosystems
- Wetlands through time
- Genomics of Chloroplasts and Mitochondria
- Spore number in Sphagnum and its dependence on spore and capsule size
- Biology of peatlands
- Allopolyploidy and homoploid hybridization in the Sphagnum subsecundum complex (Sphagnaceae: Bryophyta)
- Evolution of niche preference in Sphagnum peat mosses
- Differential gene transfers and gene duplications in primary and secondary endosymbioses
- Approximate Bayesian-inference With the Weighted Likelihood Bootstrap
- Reproductive biology of Sphagnum.
- Phylogenetic structure and biogeography of the Pacific Rim clade of Sphagnum subgen. Subsecunda: haploid and allodiploid taxa
- Sphagnum physiology in the context of changing climate: emergent influences of genomics, modelling and host-microbiome interactions on understanding ecosystem function.
- Initiation of microtopography in revegetated cutover peatlands
- The Narrow Endemic Sphagnum troendelagicum is an Allopolyploid Derivative of the Widespread S. balticum and S. tenellum
- NORTH AMERICAN ORIGIN AND RECENT EUROPEAN ESTABLISHMENTS OF THE AMPHI‐ATLANTIC PEAT MOSS SPHAGNUM ANGERMANICUM
Cited by
- Allo-allo-triploid Sphagnum × falcatulum: single individuals contain most of the Holantarctic diversity for ancestrally indicative markers
- Polyploidy and interspecific hybridization: partners for adaptation, speciation and evolution in plants
- The Sphagnome Project: enabling ecological and evolutionary insights through a genus-level sequencing project.
- Evolutionary dynamism in bryophytes: Phylogenomic inferences confirm rapid radiation in the moss family Funariaceae.
- Sphagnum incundum a new species in Sphagnum subg. Acutifolia (Sphagnaceae) from boreal and arctic regions of North America
- TAS3 miR390-dependent loci in non-vascular land plants: towards a comprehensive reconstruction of the gene evolutionary history
- Effects of both substrate and nitrogen and phosphorus fertilizer on Sphagnum palustre growth in subtropical high-mountain regions and implications for peatland recovery
- Genetic analysis of four Île Amsterdam Sphagna: high morphological divergence within Sphagnum subgenus Subsecunda
- Sphagnum divinum (sp. nov.) and S. medium Limpr. and their relationship to S. magellanicum Brid.
- Identification and Analysis of OVATE Family Members from Genome of the Early Land Plants Provide Insights into Evolutionary History of OFP Family and Function
- The Evolutionary Diversity of Mosses – Taxonomic Heterogeneity and its Ecological Drivers
- Range change evolution of peat mosses (Sphagnum) within and between climate zones
- Sequencing of organellar genomes of Gymnomitrion concinnatum (Jungermanniales) revealed the first exception in the structure and gene order of evolutionary stable liverworts mitogenomes
- Is interspecific gene flow and speciation in peatmosses (Sphagnum) constrained by phylogenetic relationship and life-history traits?
- Sphagnum ×lydiae, the first allotriploid peatmoss in the northern hemisphere
- Genetic and expression differences between putative ecotypes of Sphagnum denticulatum Brid. (Sphagnaceae: Bryophyta) subjected to drought stress and rehydration
- Effects of the Substrate and Planting Method on Sphagnum palustre Growth in Subtropical High-Mountain Regions and the Underlying Mechanisms
- Functional trait evolution in Sphagnum peat mosses and its relationship to niche construction.
- Phylogenomic delineation of Physcomitrium (Bryophyta: Funariaceae) based on targeted sequencing of nuclear exons and their flanking regions rejects the retention of Physcomitrella, Physcomitridium and Aphanorrhegma
- Effects of microtopography and water table on Sphagnum palustre L. in subtropical high mountains and implications for peatland restoration
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