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Why we need more non-seed plant models
by
Stefan A. Rensing
in
Abscisic acid
/ Acclimation
/ Acclimatization
/ Adaptation
/ Algae
/ Angiospermae
/ Angiosperms
/ Animals
/ Aquatic plants
/ Bacteria
/ Biodiversity
/ Biological Evolution
/ Branch banking
/ Branches
/ Bryophyta
/ Bryophytes
/ Cell division
/ Cell walls
/ Cellular structure
/ Cellulose
/ Charophyta
/ Chlamydomonas reinhardtii
/ Chromosomes
/ Comparative analysis
/ Coniferophyta
/ Coniferous trees
/ Conifers
/ CRISPR
/ Cultivation
/ Cyanobacteria
/ Developmental biology
/ Divergence
/ Dormancy
/ Embryonic growth stage
/ Environmental changes
/ Environmental conditions
/ Epigenetics
/ Evolution
/ fern
/ Ferns
/ Flowering plants
/ Flowers
/ Freshwater fishes
/ Freshwater plants
/ Fungi
/ Gene editing
/ Genes
/ genome
/ Genomes
/ Genomics
/ Gnetales
/ Heavy metals
/ hornwort
/ Inference
/ Inventions
/ Leaves
/ Life cycles
/ Life history
/ Lists
/ liverwort
/ Lycopodiaceae
/ Mitosis
/ Models, Biological
/ Morphology
/ moss
/ Mosses
/ Mutation
/ Nitrogen fixation
/ Organisms
/ Phylogenetics
/ Phylogeny
/ Physcomitrella patens
/ Physical characteristics
/ Plant species
/ Plants
/ Plants - genetics
/ Polyploidy
/ Proust, Marcel (1871-1922)
/ R&D
/ Reproduction (biology)
/ Research & development
/ Ribonucleic acid
/ RNA
/ Seed banks
/ Seeds
/ Seeds - physiology
/ Sexual reproduction
/ Spores
/ Streptophyta
/ Studies
/ Symbiosis
/ Tansley insight
/ Transcription factors
/ Trees
/ Vascular system (plant anatomy)
2017
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Why we need more non-seed plant models
by
Stefan A. Rensing
in
Abscisic acid
/ Acclimation
/ Acclimatization
/ Adaptation
/ Algae
/ Angiospermae
/ Angiosperms
/ Animals
/ Aquatic plants
/ Bacteria
/ Biodiversity
/ Biological Evolution
/ Branch banking
/ Branches
/ Bryophyta
/ Bryophytes
/ Cell division
/ Cell walls
/ Cellular structure
/ Cellulose
/ Charophyta
/ Chlamydomonas reinhardtii
/ Chromosomes
/ Comparative analysis
/ Coniferophyta
/ Coniferous trees
/ Conifers
/ CRISPR
/ Cultivation
/ Cyanobacteria
/ Developmental biology
/ Divergence
/ Dormancy
/ Embryonic growth stage
/ Environmental changes
/ Environmental conditions
/ Epigenetics
/ Evolution
/ fern
/ Ferns
/ Flowering plants
/ Flowers
/ Freshwater fishes
/ Freshwater plants
/ Fungi
/ Gene editing
/ Genes
/ genome
/ Genomes
/ Genomics
/ Gnetales
/ Heavy metals
/ hornwort
/ Inference
/ Inventions
/ Leaves
/ Life cycles
/ Life history
/ Lists
/ liverwort
/ Lycopodiaceae
/ Mitosis
/ Models, Biological
/ Morphology
/ moss
/ Mosses
/ Mutation
/ Nitrogen fixation
/ Organisms
/ Phylogenetics
/ Phylogeny
/ Physcomitrella patens
/ Physical characteristics
/ Plant species
/ Plants
/ Plants - genetics
/ Polyploidy
/ Proust, Marcel (1871-1922)
/ R&D
/ Reproduction (biology)
/ Research & development
/ Ribonucleic acid
/ RNA
/ Seed banks
/ Seeds
/ Seeds - physiology
/ Sexual reproduction
/ Spores
/ Streptophyta
/ Studies
/ Symbiosis
/ Tansley insight
/ Transcription factors
/ Trees
/ Vascular system (plant anatomy)
2017
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Do you wish to request the book?
Why we need more non-seed plant models
by
Stefan A. Rensing
in
Abscisic acid
/ Acclimation
/ Acclimatization
/ Adaptation
/ Algae
/ Angiospermae
/ Angiosperms
/ Animals
/ Aquatic plants
/ Bacteria
/ Biodiversity
/ Biological Evolution
/ Branch banking
/ Branches
/ Bryophyta
/ Bryophytes
/ Cell division
/ Cell walls
/ Cellular structure
/ Cellulose
/ Charophyta
/ Chlamydomonas reinhardtii
/ Chromosomes
/ Comparative analysis
/ Coniferophyta
/ Coniferous trees
/ Conifers
/ CRISPR
/ Cultivation
/ Cyanobacteria
/ Developmental biology
/ Divergence
/ Dormancy
/ Embryonic growth stage
/ Environmental changes
/ Environmental conditions
/ Epigenetics
/ Evolution
/ fern
/ Ferns
/ Flowering plants
/ Flowers
/ Freshwater fishes
/ Freshwater plants
/ Fungi
/ Gene editing
/ Genes
/ genome
/ Genomes
/ Genomics
/ Gnetales
/ Heavy metals
/ hornwort
/ Inference
/ Inventions
/ Leaves
/ Life cycles
/ Life history
/ Lists
/ liverwort
/ Lycopodiaceae
/ Mitosis
/ Models, Biological
/ Morphology
/ moss
/ Mosses
/ Mutation
/ Nitrogen fixation
/ Organisms
/ Phylogenetics
/ Phylogeny
/ Physcomitrella patens
/ Physical characteristics
/ Plant species
/ Plants
/ Plants - genetics
/ Polyploidy
/ Proust, Marcel (1871-1922)
/ R&D
/ Reproduction (biology)
/ Research & development
/ Ribonucleic acid
/ RNA
/ Seed banks
/ Seeds
/ Seeds - physiology
/ Sexual reproduction
/ Spores
/ Streptophyta
/ Studies
/ Symbiosis
/ Tansley insight
/ Transcription factors
/ Trees
/ Vascular system (plant anatomy)
2017
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Journal Article
Why we need more non-seed plant models
2017
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Overview
Out of a hundred sequenced and published land plant genomes, four are not of flowering plants. This severely skewed taxonomic sampling hinders our comprehension of land plant evolution at large. Moreover, most genetically accessible model species are flowering plants as well. If we are to gain a deeper understanding of how plants evolved and still evolve, and which of their developmental patterns are ancestral or derived, we need to study a more diverse set of plants. Here, I thus argue that we need to sequence genomes of so far neglected lineages, and that we need to develop more non-seed plant model species.
Publisher
New Phytologist Trust,Wiley Subscription Services, Inc
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