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NATURE GENETICS (2007)
MIR166/165 genes exhibit dynamic expression patterns in regulating shoot apical meristem and floral development in Arabidopsis
Jae-Hoon Jung et al.
PLANTA (2007)
Overexpression of miR165 affects apical meristem formation, organ polarity establishment and vascular development in Arabidopsis
Gong-Ke Zhou et al.
PLANT AND CELL PHYSIOLOGY (2007)
ABA induction of miR159 controls transcript levels of two MYB factors during Arabidopsis seed germination
Jose L. Reyes et al.
PLANT JOURNAL (2007)
Regulation of HD-ZIP III Genes by MicroRNA 165
Ruiqin Zhong et al.
PLANT SIGNALING & BEHAVIOR (2007)
Genomic analysis of the hierarchical structure of regulatory networks
Haiyuan Yu et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2006)
Genomic organization, differential expression, and interaction of SQUAMOSA promoter-binding-like transcription factors and microRNA156 in rice
Kabin Xie et al.
PLANT PHYSIOLOGY (2006)
Floral patterning defects induced by Arabidopsis APETALA2 and microRNA172 expression in Nicotiana benthamiana
Sizolwenkosi Mlotshwa et al.
PLANT MOLECULAR BIOLOGY (2006)
An essential role for salicylic acid in AtMYB30-mediated control of the hypersensitive cell death program in Arabidopsis
Sylvain Raffaele et al.
FEBS LETTERS (2006)
RNA interference of the Arabidopsis putative transcription factor TCP16 gene results in abortion of early pollen development
Taito Takeda et al.
PLANT MOLECULAR BIOLOGY (2006)
Highly specific gene silencing by artificial microRNAs in Arabidopsis
R Schwab et al.
PLANT CELL (2006)
Abiotic stress, the field environment and stress combination
R Mittler
TRENDS IN PLANT SCIENCE (2006)
AtNAC2, a transcription factor downstream of ethylene and auxin signaling pathways, is involved in salt stress response and lateral root development
XJ He et al.
PLANT JOURNAL (2005)
Transcription factor families have much higher expansion rates in plants than in animals
SH Shiu et al.
PLANT PHYSIOLOGY (2005)
MicroRNA directs mRNA cleavage of the transcription factor NAC1 to downregulate auxin signals for Arabidopsis lateral root development
HS Guo et al.
PLANT CELL (2005)
Gene regulatory networks for development
M Levine et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2005)
NAC transcription factors: structurally distinct, functionally diverse
AN Olsen et al.
TRENDS IN PLANT SCIENCE (2005)
Temporally and spatially controlled induction of gene expression in Arabidopsis thaliana
A Maizel et al.
PLANT JOURNAL (2004)
A microRNA as a translational repressor of APETALA2 in Arabidopsis flower development
XM Chen
SCIENCE (2004)
A novel zinc-binding motif revealed by solution structures of DNA-binding domains of Arabidopsis SBP-family transcription factors
K Yamasaki et al.
JOURNAL OF MOLECULAR BIOLOGY (2004)
microRNA-mediated repression of rolled leaf1 specifies maize leaf polarity
MT Juarez et al.
NATURE (2004)
MicroRNAs: Genomics, biogenesis, mechanism, and function
DP Bartel
CELL (2004)
A transcriptional coactivator, AtGIF1, is involved in regulating leaf growth and morphology in Arabidopsis
JH Kim et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2004)
Class III HD-Zip gene regulation, the golden fleece of ARGONAUTE activity?
JL Bowman
BIOESSAYS (2004)
MicroRNA binding sites in Arabidopsis class IIIHD-ZIP mRNAs are required for methylation of the template chromosome
N Bao et al.
DEVELOPMENTAL CELL (2004)
Nuclear export of mRNA: from the site of transcription to the cytoplasm
JA Erkmann et al.
EXPERIMENTAL CELL RESEARCH (2004)
The AtGRF family of putative transcription factors is involved in leaf and cotyledon growth in Arabidopsis
JH Kim et al.
PLANT JOURNAL (2003)
Prediction of plant microRNA targets
MW Rhoades et al.
CELL (2002)
DNA binding and dimerization specificity and potential targets for the TCP protein family
S Kosugi et al.
PLANT JOURNAL (2002)
Arabidopsis NAC1 transduces auxin signal downstream of TIR1 to promote lateral root development
Q Xie et al.
GENES & DEVELOPMENT (2000)
B and C floral organ identity functions require SEPALLATA MADS-box genes
S Pelaz et al.
NATURE (2000)