Abstract
Full text links
Read article at publisher's site: https://doi.org/10.1105/tpc.109.065508
Read article for free, from open access legal sources, via Unpaywall: https://academic.oup.com/plcell/article-pdf/21/5/1394/36918817/plcell_v21_5_1394.pdf
Free to read at intl.plantcell.org
http://intl.plantcell.org/cgi/content/abstract/21/5/1394
Free after 12 months at intl.plantcell.org
http://intl.plantcell.org/cgi/content/full/21/5/1394
References
Articles referenced by this article (43)
Auxin can act independently of CRC, LUG, SEU, SPT and STY1 in style development but not apical-basal patterning of the Arabidopsis gynoecium.
New Phytol, (4):798-808 2008
MED: 18811619
Auxin response factors mediate Arabidopsis organ asymmetry via modulation of KANADI activity.
Plant Cell, (11):2899-2910 2005
MED: 16199616
Auxin biosynthesis by the YUCCA flavin monooxygenases controls the formation of floral organs and vascular tissues in Arabidopsis.
Genes Dev, (13):1790-1799 2006
MED: 16818609
The behaviour of the autonomous maize transposable element En/Spm in Arabidopsis thaliana allows efficient mutagenesis.
Plant Mol Biol, (6):989-999 1998
MED: 9700071
CRABS CLAW, a gene that regulates carpel and nectary development in Arabidopsis, encodes a novel protein with zinc finger and helix-loop-helix domains.
Development, (11):2387-2396 1999
MED: 10225998
The axr6 mutants of Arabidopsis thaliana define a gene involved in auxin response and early development.
Development, (1):23-32 2000
MED: 10654597
STY1 and STY2 promote the formation of apical tissues during Arabidopsis gynoecium development.
Development, (20):4707-4717 2002
MED: 12361963
STY1 regulates auxin homeostasis and affects apical-basal patterning of the Arabidopsis gynoecium.
Plant J, (1):112-123 2006
MED: 16740145
Show 10 more references (10 of 43)
Citations & impact
Impact metrics
Citations of article over time
Alternative metrics
Smart citations by scite.ai
Explore citation contexts and check if this article has been
supported or disputed.
https://scite.ai/reports/10.1105/tpc.109.065508
Article citations
Arabidopsis transcription factor TCP4 controls the identity of the apical gynoecium.
Plant Cell, 36(7):2668-2688, 01 Jul 2024
Cited by: 1 article | PMID: 38581433
Two orthogonal differentiation gradients locally coordinate fruit morphogenesis.
Nat Commun, 15(1):2912, 04 Apr 2024
Cited by: 2 articles | PMID: 38575617 | PMCID: PMC10995178
Mechanism underlying the rapid growth of Phalaenopsis equestris induced by 60Co-γ-ray irradiation.
Mol Genet Genomics, 299(1):13, 23 Feb 2024
Cited by: 0 articles | PMID: 38396305
EXPANSIN15 is involved in flower and fruit development in Arabidopsis.
Plant Reprod, 37(2):259-270, 29 Jan 2024
Cited by: 0 articles | PMID: 38285171 | PMCID: PMC11180156
Predicting yield of individual field-grown rapeseed plants from rosette-stage leaf gene expression.
PLoS Comput Biol, 19(5):e1011161, 30 May 2023
Cited by: 5 articles | PMID: 37253069 | PMCID: PMC10256231
Go to all (81) article citations
Data
Similar Articles
To arrive at the top five similar articles we use a word-weighted algorithm to compare words from the Title and Abstract of each citation.
Auxin can act independently of CRC, LUG, SEU, SPT and STY1 in style development but not apical-basal patterning of the Arabidopsis gynoecium.
New Phytol, 180(4):798-808, 22 Sep 2008
Cited by: 53 articles | PMID: 18811619
STY1 regulates auxin homeostasis and affects apical-basal patterning of the Arabidopsis gynoecium.
Plant J, 47(1):112-123, 01 Jun 2006
Cited by: 119 articles | PMID: 16740145
The effect of NGATHA altered activity on auxin signaling pathways within the Arabidopsis gynoecium.
Front Plant Sci, 5:210, 21 May 2014
Cited by: 30 articles | PMID: 24904608 | PMCID: PMC4033193
The role of auxin in style development and apical-basal patterning of the Arabidopsis thaliana gynoecium.
Plant Signal Behav, 4(2):83-85, 01 Feb 2009
Cited by: 14 articles | PMID: 19649177 | PMCID: PMC2637486
Review Free full text in Europe PMC