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Plasma membrane-targeted PIN proteins drive shoot development in a mossParalogous radiations of PIN proteins with multiple origins of noncanonical PIN structureThe Arabidopsis MAX pathway controls shoot branching by regulating auxin transport.Something on the side: axillary meristems and plant development.Control of bud activation by an auxin transport switch.SOMBRERO, BEARSKIN1, and BEARSKIN2 regulate root cap maturation in Arabidopsis.Root development-two meristems for the price of one?RETRACTED: A PLETHORA-auxin transcription module controls cell division plane rotation through MAP65 and CLASP.BRC1 expression regulates bud activation potential but is not necessary or sufficient for bud growth inhibition in ArabidopsisConnective Auxin Transport in the Shoot Facilitates Communication between Shoot ApicesCanalization: what the flux?PIN proteins and the evolution of plant development.Strigolactone Signaling and Evolution.Strigolactone regulates shoot development through a core signalling pathway.SMAX1-LIKE/D53 Family Members Enable Distinct MAX2-Dependent Responses to Strigolactones and Karrikins in Arabidopsis.Evolution of strigolactone receptors by gradual neo-functionalization of KAI2 paraloguesStrigolactone signalling: standing on the shoulders of DWARFs.SMAX1-LIKE7 Signals from the Nucleus to Regulate Shoot Development in Arabidopsis via Partially EAR Motif-Independent Mechanisms.Precise control of plant stem cell activity through parallel regulatory inputs.Grafting in ArabidopsisGraftingThe NAC Domain Transcription Factors FEZ and SOMBRERO Control the Orientation of Cell Division Plane in Arabidopsis Root Stem CellsAuxin export from proximal fruits drives arrest in competent inflorescence meristemsKAI2 regulates root and root hair development by modulating auxin distributionConnective auxin transport contributes to strigolactone-mediated shoot branching control independent of the transcription factor BRC1Anthoceros genomes illuminate the origin of land plants and the unique biology of hornwortsFellowship of the rings: a saga of strigolactones and other small signalsA distributive '50% rule' determines floral initiation rates in the BrassicaceaeSMAX1/SMXL2 regulate root and root hair development downstream of KAI2-mediated signalling in ArabidopsisStrigolactone synthesis is ancestral in land plants, but canonical strigolactone signalling is a flowering plant innovationAuxin export from proximal fruits drives arrest in temporally competent inflorescencesTwo routes to germinate a seed
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