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What are karrikins and how were they 'discovered' by plants?Strigolactone versus gibberellin signaling: reemerging concepts?Strigolactones and the control of plant development: lessons from shoot branchingKarrikins Identified in Biochars Indicate Post-Fire Chemical Cues Can Influence Community Diversity and Plant DevelopmentKarrikins: Regulators Involved in Phytohormone Signaling Networks during Seed Germination and Seedling DevelopmentStrigolactone- and Karrikin-Independent SMXL Proteins Are Central Regulators of Phloem Formation.Strigolactone Hormones and Their Stereoisomers Signal through Two Related Receptor Proteins to Induce Different Physiological Responses in Arabidopsis.A Selaginella moellendorffii Ortholog of KARRIKIN INSENSITIVE2 Functions in Arabidopsis Development but Cannot Mediate Responses to Karrikins or Strigolactones.Rice perception of symbiotic arbuscular mycorrhizal fungi requires the karrikin receptor complex.Unraveling plant hormone signaling through the use of small molecules.Uncovering the contribution of epigenetics to plant phenotypic variation in Mediterranean ecosystems.Karrikins delay soybean seed germination by mediating abscisic acid and gibberellin biogenesis under shaded conditions.Structural basis of unique ligand specificity of KAI2-like protein from parasitic weed Striga hermonthicaStrigolactone involvement in root development, response to abiotic stress, and interactions with the biotic soil environment.Target sites for chemical regulation of strigolactone signaling.Cellular events of strigolactone signalling and their crosstalk with auxin in roots.Stereospecificity in strigolactone biosynthesis and perception.E3 ubiquitin ligases: ubiquitous actors in plant development and abiotic stress responses.Functional redundancy in the control of seedling growth by the karrikin signaling pathway.Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling.Evidence that KARRIKIN-INSENSITIVE2 (KAI2) Receptors may Perceive an Unknown Signal that is not Karrikin or Strigolactone.Small molecules: from structural diversity to signalling and regulatory roles.PLANT EVOLUTION. Convergent evolution of strigolactone perception enabled host detection in parasitic plants.Plant Signaling and Metabolic Pathways Enabling Arbuscular Mycorrhizal Symbiosis.The Role of Strigolactone in the Cross-Talk Between Arabidopsis thaliana and the Endophytic Fungus Mucor sp.A missense allele of KARRIKIN-INSENSITIVE2 impairs ligand-binding and downstream signaling in Arabidopsis thaliana.Structural analysis of HTL and D14 proteins reveals the basis for ligand selectivity in Striga
P2860
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P2860
description
article científic
@ca
article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
@pt
artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
@sq
artículo científico
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name
The karrikin response system of Arabidopsis.
@en
type
label
The karrikin response system of Arabidopsis.
@en
prefLabel
The karrikin response system of Arabidopsis.
@en
P2860
P50
P356
P1433
P1476
The karrikin response system of Arabidopsis.
@en
P2093
Adrian Scaffidi
Yueming K Sun
P2860
P304
P356
10.1111/TPJ.12430
P577
2014-02-24T00:00:00Z