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SMAX1-LIKE/D53 Family Members Enable Distinct MAX2-Dependent Responses to Strigolactones and Karrikins in Arabidopsis
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Both CRISPR/Cas-based nucleases and nickases can be used efficiently for genome engineering in Arabidopsis thaliana
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The Crystal Structure of Citrate Synthase from the Hyperthermophilic Archaeon Pyrococcus furiosus at 1.9 Å Resolution † , ‡
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Structure–Function Analysis of SMAX1 Reveals Domains That Mediate Its Karrikin-Induced Proteolysis and Interaction with the Receptor KAI2
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Mitochondrial TCA cycle metabolites control physiology and disease
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D14–SCFD3-dependent degradation of D53 regulates strigolactone signalling
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Conformational Flexibility Underlies Ubiquitin Ligation Mediated by the WWP1 HECT Domain E3 Ligase
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Specialisation within the DWARF14 protein family confers distinct responses to karrikins and strigolactones in Arabidopsis
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An histidine covalent receptor and butenolide complex mediates strigolactone perception
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SUPPRESSOR OF MORE AXILLARY GROWTH2 1 Controls Seed Germination and Seedling Development in Arabidopsis
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Strigolactone Regulates Leaf Senescence in Concert with Ethylene in Arabidopsis
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MAX1 and MAX2 control shoot lateral branching in Arabidopsis
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DWARF14, A Receptor Covalently Linked with the Active Form of Strigolactones, Undergoes Strigolactone-Dependent Degradation in Rice
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Strigolactone Signaling in Arabidopsis Regulates Shoot Development by Targeting D53-Like SMXL Repressor Proteins for Ubiquitination and Degradation
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Strigolactone-Regulated Hypocotyl Elongation Is Dependent on Cryptochrome and Phytochrome Signaling Pathways in Arabidopsis
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NEDD8 nucleates a multivalent cullin–RING–UBE2D ubiquitin ligation assembly
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Alteration of Citrate Metabolism in Cluster Roots of White Lupin
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Impairment in karrikin but not strigolactone sensing enhances root skewing in Arabidopsis thaliana
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Changes in the allocation of endogenous strigolactone improve plant biomass production on phosphate-poor soils
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d14, a Strigolactone-Insensitive Mutant of Rice, Shows an Accelerated Outgrowth of Tillers
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