Published in Plant Cell on April 01, 2001
Cytokinin-deficient transgenic Arabidopsis plants show multiple developmental alterations indicating opposite functions of cytokinins in the regulation of shoot and root meristem activity. Plant Cell (2003) 5.19
A plausible model of phyllotaxis. Proc Natl Acad Sci U S A (2006) 4.31
Localization of the auxin permease AUX1 suggests two functionally distinct hormone transport pathways operate in the Arabidopsis root apex. Genes Dev (2001) 3.89
Auxin-mediated cell cycle activation during early lateral root initiation. Plant Cell (2002) 3.36
ARF7 and ARF19 regulate lateral root formation via direct activation of LBD/ASL genes in Arabidopsis. Plant Cell (2007) 3.28
Phosphate availability alters architecture and causes changes in hormone sensitivity in the Arabidopsis root system. Plant Physiol (2002) 3.21
An auxin gradient and maximum in the Arabidopsis root apex shown by high-resolution cell-specific analysis of IAA distribution and synthesis. Plant Cell (2009) 2.97
AUX1 promotes lateral root formation by facilitating indole-3-acetic acid distribution between sink and source tissues in the Arabidopsis seedling. Plant Cell (2002) 2.95
Sites and regulation of auxin biosynthesis in Arabidopsis roots. Plant Cell (2005) 2.94
A Link between ethylene and auxin uncovered by the characterization of two root-specific ethylene-insensitive mutants in Arabidopsis. Plant Cell (2005) 2.86
Comprehensive comparison of auxin-regulated and brassinosteroid-regulated genes in Arabidopsis. Plant Physiol (2004) 2.79
Root system architecture from coupling cell shape to auxin transport. PLoS Biol (2008) 2.70
Genetic and chemical reductions in protein phosphatase activity alter auxin transport, gravity response, and lateral root growth. Plant Cell (2001) 2.64
Structure-function analysis of the presumptive Arabidopsis auxin permease AUX1. Plant Cell (2004) 2.55
The beta-subunit of the Arabidopsis G protein negatively regulates auxin-induced cell division and affects multiple developmental processes. Plant Cell (2003) 2.41
Auxin control of root development. Cold Spring Harb Perspect Biol (2010) 2.30
FLOOZY of petunia is a flavin mono-oxygenase-like protein required for the specification of leaf and flower architecture. Genes Dev (2002) 2.27
Cytokinins act directly on lateral root founder cells to inhibit root initiation. Plant Cell (2007) 2.23
Cell cycle progression in the pericycle is not sufficient for SOLITARY ROOT/IAA14-mediated lateral root initiation in Arabidopsis thaliana. Plant Cell (2005) 2.23
BIG: a calossin-like protein required for polar auxin transport in Arabidopsis. Genes Dev (2001) 2.16
Nitric oxide plays a central role in determining lateral root development in tomato. Planta (2004) 2.14
The transparent testa4 mutation prevents flavonoid synthesis and alters auxin transport and the response of Arabidopsis roots to gravity and light. Plant Cell (2004) 2.10
AXR1-ECR1-dependent conjugation of RUB1 to the Arabidopsis Cullin AtCUL1 is required for auxin response. Plant Cell (2002) 2.09
Phosphate availability alters lateral root development in Arabidopsis by modulating auxin sensitivity via a mechanism involving the TIR1 auxin receptor. Plant Cell (2008) 2.08
The Arabidopsis auxin-inducible gene ARGOS controls lateral organ size. Plant Cell (2003) 2.06
Physiological effects of the synthetic strigolactone analog GR24 on root system architecture in Arabidopsis: another belowground role for strigolactones? Plant Physiol (2010) 2.02
Auxin influx carriers stabilize phyllotactic patterning. Genes Dev (2008) 1.92
Auxin transporters--why so many? Cold Spring Harb Perspect Biol (2010) 1.92
Phosphate starvation root architecture and anthocyanin accumulation responses are modulated by the gibberellin-DELLA signaling pathway in Arabidopsis. Plant Physiol (2007) 1.86
Nitric oxide and cyclic GMP are messengers in the indole acetic acid-induced adventitious rooting process. Plant Physiol (2003) 1.84
Role of cytokinin and auxin in shaping root architecture: regulating vascular differentiation, lateral root initiation, root apical dominance and root gravitropism. Ann Bot (2006) 1.82
Polar auxin transport in the wood-forming tissues of hybrid aspen is under simultaneous control of developmental and environmental signals. Proc Natl Acad Sci U S A (2003) 1.77
Silencing the flavonoid pathway in Medicago truncatula inhibits root nodule formation and prevents auxin transport regulation by rhizobia. Plant Cell (2006) 1.76
A role for auxin redistribution in the responses of the root system architecture to phosphate starvation in Arabidopsis. Plant Physiol (2005) 1.76
Brassinolide induces IAA5, IAA19, and DR5, a synthetic auxin response element in Arabidopsis, implying a cross talk point of brassinosteroid and auxin signaling. Plant Physiol (2003) 1.75
Strigolactones affect lateral root formation and root-hair elongation in Arabidopsis. Planta (2010) 1.74
Cell polarity and PIN protein positioning in Arabidopsis require STEROL METHYLTRANSFERASE1 function. Plant Cell (2003) 1.71
Arabidopsis ASA1 is important for jasmonate-mediated regulation of auxin biosynthesis and transport during lateral root formation. Plant Cell (2009) 1.71
Brassinosteroids interact with auxin to promote lateral root development in Arabidopsis. Plant Physiol (2004) 1.70
Lateral root initiation in Arabidopsis: developmental window, spatial patterning, density and predictability. Ann Bot (2006) 1.62
A family of auxin-conjugate hydrolases that contributes to free indole-3-acetic acid levels during Arabidopsis germination. Plant Physiol (2004) 1.61
An auxin transport independent pathway is involved in phosphate stress-induced root architectural alterations in Arabidopsis. Identification of BIG as a mediator of auxin in pericycle cell activation. Plant Physiol (2005) 1.60
Differential effects of sucrose and auxin on localized phosphate deficiency-induced modulation of different traits of root system architecture in Arabidopsis. Plant Physiol (2007) 1.60
Transcript profiling of early lateral root initiation. Proc Natl Acad Sci U S A (2004) 1.58
Trichoderma virens, a plant beneficial fungus, enhances biomass production and promotes lateral root growth through an auxin-dependent mechanism in Arabidopsis. Plant Physiol (2009) 1.56
Isolation, characterization, and pericycle-specific transcriptome analyses of the novel maize lateral and seminal root initiation mutant rum1. Plant Physiol (2005) 1.55
Ethylene regulates lateral root formation and auxin transport in Arabidopsis thaliana. Plant J (2008) 1.51
Auxin regulates distal stem cell differentiation in Arabidopsis roots. Proc Natl Acad Sci U S A (2010) 1.48
The auxin-regulated AP2/EREBP gene PUCHI is required for morphogenesis in the early lateral root primordium of Arabidopsis. Plant Cell (2007) 1.48
Perturbation of indole-3-butyric acid homeostasis by the UDP-glucosyltransferase UGT74E2 modulates Arabidopsis architecture and water stress tolerance. Plant Cell (2010) 1.47
Plant growth-promoting rhizobacteria and root system functioning. Front Plant Sci (2013) 1.46
Roles for Class III HD-Zip and KANADI genes in Arabidopsis root development. Plant Physiol (2004) 1.42
Genetic and genomic evidence that sucrose is a global regulator of plant responses to phosphate starvation in Arabidopsis. Plant Physiol (2011) 1.42
Canopy shade causes a rapid and transient arrest in leaf development through auxin-induced cytokinin oxidase activity. Genes Dev (2007) 1.41
Mild salinity stimulates a stress-induced morphogenic response in Arabidopsis thaliana roots. J Exp Bot (2010) 1.41
Extracellular ATP inhibits root gravitropism at concentrations that inhibit polar auxin transport. Plant Physiol (2003) 1.40
p-Chlorophenoxyisobutyric acid impairs auxin response in Arabidopsis root. Plant Physiol (2003) 1.39
Transport of the two natural auxins, indole-3-butyric acid and indole-3-acetic acid, in Arabidopsis. Plant Physiol (2003) 1.37
Mutations in Arabidopsis multidrug resistance-like ABC transporters separate the roles of acropetal and basipetal auxin transport in lateral root development. Plant Cell (2007) 1.37
Auxin up-regulates MtSERK1 expression in both Medicago truncatula root-forming and embryogenic cultures. Plant Physiol (2003) 1.36
Hormonal changes in relation to biomass partitioning and shoot growth impairment in salinized tomato (Solanum lycopersicum L.) plants. J Exp Bot (2008) 1.35
Two homologous ATP-binding cassette transporter proteins, AtMDR1 and AtPGP1, regulate Arabidopsis photomorphogenesis and root development by mediating polar auxin transport. Plant Physiol (2005) 1.34
The Medicago species A2-type cyclin is auxin regulated and involved in meristem formation but dispensable for endoreduplication-associated developmental programs. Plant Physiol (2003) 1.33
Increased expression of MAP KINASE KINASE7 causes deficiency in polar auxin transport and leads to plant architectural abnormality in Arabidopsis. Plant Cell (2005) 1.33
An auxin transport-based model of root branching in Arabidopsis thaliana. PLoS One (2008) 1.33
Auxin response in Arabidopsis under cold stress: underlying molecular mechanisms. Plant Cell (2009) 1.31
Developmental steps in acquiring competence for shoot development in Arabidopsis tissue culture. Planta (2007) 1.30
Apyrases (nucleoside triphosphate-diphosphohydrolases) play a key role in growth control in Arabidopsis. Plant Physiol (2007) 1.29
Measurement of auxin transport in Arabidopsis thaliana. Nat Protoc (2009) 1.27
The heme oxygenase/carbon monoxide system is involved in the auxin-induced cucumber adventitious rooting process. Plant Physiol (2008) 1.27
Localized iron supply triggers lateral root elongation in Arabidopsis by altering the AUX1-mediated auxin distribution. Plant Cell (2012) 1.26
The Arabidopsis PLEIOTROPIC DRUG RESISTANCE8/ABCG36 ATP binding cassette transporter modulates sensitivity to the auxin precursor indole-3-butyric acid. Plant Cell (2009) 1.26
CLE-like (CLEL) peptides control the pattern of root growth and lateral root development in Arabidopsis. Proc Natl Acad Sci U S A (2012) 1.22
Humic acids isolated from earthworm compost enhance root elongation, lateral root emergence, and plasma membrane H+-ATPase activity in maize roots. Plant Physiol (2002) 1.22
The interaction between strigolactones and other plant hormones in the regulation of plant development. Front Plant Sci (2013) 1.21
Auxin regulation of the microRNA390-dependent transacting small interfering RNA pathway in Arabidopsis lateral root development. Nucleic Acids Res (2009) 1.19
Flavonoids redirect PIN-mediated polar auxin fluxes during root gravitropic responses. J Biol Chem (2008) 1.17
Auxin-dependent cell cycle reactivation through transcriptional regulation of Arabidopsis E2Fa by lateral organ boundary proteins. Plant Cell (2011) 1.17
Arabidopsis N-MYC DOWNREGULATED-LIKE1, a positive regulator of auxin transport in a G protein-mediated pathway. Plant Cell (2009) 1.16
Gravitropism of Arabidopsis thaliana roots requires the polarization of PIN2 toward the root tip in meristematic cortical cells. Plant Cell (2010) 1.15
The Arabidopsis D-type cyclin CYCD2;1 and the inhibitor ICK2/KRP2 modulate auxin-induced lateral root formation. Plant Cell (2011) 1.14
Overexpression of OsRAA1 causes pleiotropic phenotypes in transgenic rice plants, including altered leaf, flower, and root development and root response to gravity. Plant Physiol (2004) 1.13
Ethylene signaling and regulation in plant growth and stress responses. Plant Cell Rep (2013) 1.13
Auxin reflux between the endodermis and pericycle promotes lateral root initiation. EMBO J (2012) 1.12
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SIZ1 regulation of phosphate starvation-induced root architecture remodeling involves the control of auxin accumulation. Plant Physiol (2010) 1.07
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Regulation of tomato lateral root development by carbon monoxide and involvement in auxin and nitric oxide. J Exp Bot (2008) 1.06
Calcium is involved in nitric oxide- and auxin-induced lateral root formation in rice. Protoplasma (2011) 1.05
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