Flower color as a model system for studies of plant evo-devo
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Genome-scale transcriptional study of hybrid effects and regulatory divergence in an F1 hybrid Ruellia (Wild Petunias: Acanthaceae) and its parentsAncient homology underlies adaptive mimetic diversity across butterfliesA Whole-Transcriptome Approach to Evaluating Reference Genes for Quantitative Gene Expression Studies: A Case Study in MimulusStrong premating reproductive isolation drives incipient speciation in Mimulus aurantiacus.Extensive Transcriptome Changes Underlying the Flower Color Intensity Variation in Paeonia ostii.On flavonoid accumulation in different plant parts: variation patterns among individuals and populations in the shore campion (Silene littorea).The genetic architecture of UV floral patterning in sunflower.Transcriptome and Biochemical Analysis of a Flower Color Polymorphism in Silene littorea (Caryophyllaceae).What to compare and how: Comparative transcriptomics for Evo-Devo.Two IIIf Clade-bHLHs from Freesia hybrida Play Divergent Roles in Flavonoid Biosynthesis and Trichome Formation when Ectopically Expressed in ArabidopsisFactor Analysis of MYB Gene Expression and Flavonoid Affecting Petal Color in Three Crabapple Cultivars.Role of transcriptional regulation in the evolution of plant phenotype: A dynamic systems approach.Accessibility, constraint, and repetition in adaptive floral evolution.Genomic studies on the nature of species: adaptation and speciation in Mimulus.Transcriptional control of floral anthocyanin pigmentation in monkeyflowers (Mimulus).Contemporary and future studies in plant speciation, morphological/floral evolution and polyploidy: honouring the scientific contributions of Leslie D. Gottlieb to plant evolutionary biology.Genetic architecture, biochemical underpinnings and ecological impact of floral UV patterning.A novel R3 MYB transcriptional repressor associated with the loss of floral pigmentation in Iochroma.A dominant-negative actin mutation alters corolla tube width and pollinator visitation in Mimulus lewisii.A genetic route to yellow flowers.How petals change their spots: cis-regulatory re-wiring in Clarkia (Onagraceae).Two genetic changes in cis-regulatory elements caused evolution of petal spot position in Clarkia.Production of red-flowered oilseed rape via the ectopic expression of Orychophragmus violaceus OvPAP2.Reply to Lavi & Sapir (2015): floral colour and pollinator-mediated selection in Oncocyclus irises (Iridaceae).Digital photography provides a fast, reliable, and noninvasive method to estimate anthocyanin pigment concentration in reproductive and vegetative plant tissues.The genetic architecture of floral traits in the woody plant Prunus mume.
P2860
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P2860
Flower color as a model system for studies of plant evo-devo
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 20 August 2013
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Flower color as a model system for studies of plant evo-devo
@en
Flower color as a model system for studies of plant evo-devo.
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type
label
Flower color as a model system for studies of plant evo-devo
@en
Flower color as a model system for studies of plant evo-devo.
@nl
prefLabel
Flower color as a model system for studies of plant evo-devo
@en
Flower color as a model system for studies of plant evo-devo.
@nl
P2860
P356
P1476
Flower color as a model system for studies of plant evo-devo
@en
P2093
James M Sobel
Matthew A Streisfeld
P2860
P356
10.3389/FPLS.2013.00321
P577
2013-08-20T00:00:00Z