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THE PLANT CELL, Vol 9, Issue 10 1859-1868, Copyright © 1997 by American Society of Plant Biologists
Role of Arabidopsis MYC and MYB Homologs in Drought-and Abscisic Acid-Regulated Gene Expression
H. Abe, K. Yamaguchi-Shinozaki, T. Urao, T. Iwasaki, D. Hosokawa and K. Shinozaki
Biological Resources Division, Japan International Research Center for Agricultural Sciences (JIRCAS), Ministry of Agriculture, Forestry and Fisheries, 1-2 Ohwashi, Tsukuba, Ibaraki 305, Japan
In Arabidopsis, the induction of a dehydration-responsive gene, rd22, is
mediated by abscisic acid (ABA) and requires protein biosynthesis for
ABA-dependent gene expression. Previous experiments established that a
67-bp DNA fragment of the rd22 promoter is sufficient for dehydration- and
ABA-induced gene expression and that this DNA fragment contains two closely
located putative recognition sites for the basic helix-loop-helix protein
MYC and one putative recognition site for MYB. We have carefully analyzed
the 67-bp region of the rd22 promoter in transgenic tobacco plants and
found that both the first MYC site and the MYB recognition site function as
cis-acting elements in the dehydration-induced expression of the rd22 gene.
A cDNA encoding a MYC-related DNA binding protein was isolated by
DNA-ligand binding screening, using the 67-bp region as a probe, and
designated rd22BP1. The rd22BP1 cDNA encodes a 68-kD protein that has a
typical DNA binding domain of a basic region helix-loop-helix leucine
zipper motif in MYC-related transcription factors. The rd22BP1 protein
binds specifically to the first MYC recognition site in the 67-bp fragment.
RNA gel blot analysis revealed that transcription of the rd22BP1 gene is
induced by dehydration stress and ABA treatment, and its induction precedes
that of rd22. We have reported a drought- and ABA-inducible gene that
encodes the MYB-related protein ATMYB2. In a transient transactivation
experiment using Arabidopsis leaf protoplasts, we demonstrated that both
the rd22BP1 and ATMYB2 proteins activate transcription of the rd22 promoter
fused to the [beta]-glucuronidase reporter gene. These results indicate
that both the rd22BP1 MYC) and ATMYB2 (MYB) proteins function as
transcriptional activators in the dehydration- and ABA-inducible expression
of the rd22 gene.
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G. A. Smolen, L. Pawlowski, S. E. Wilensky, and J. Bender
Dominant Alleles of the Basic Helix-Loop-Helix Transcription Factor ATR2 Activate Stress-Responsive Genes in Arabidopsis
Genetics,
July 1, 2002;
161(3):
1235 - 1246.
[Abstract]
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G. M. Pastori and C. H. Foyer
Common Components, Networks, and Pathways of Cross-Tolerance to Stress. The Central Role of "Redox" and Abscisic Acid-Mediated Controls
Plant Physiology,
June 1, 2002;
129(2):
460 - 468.
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R. R. Finkelstein, S. S. L. Gampala, and C. D. Rock
Abscisic Acid Signaling in Seeds and Seedlings
PLANT CELL,
May 1, 2002;
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S15 - 45.
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L. Xiong, K. S. Schumaker, and J.-K. Zhu
Cell Signaling during Cold, Drought, and Salt Stress
PLANT CELL,
May 1, 2002;
14(90001):
S165 - 183.
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T. Wada, T. Kurata, R. Tominaga, Y. Koshino-Kimura, T. Tachibana, K. Goto, M. D. Marks, Y. Shimura, and K. Okada
Role of a positive regulator of root hair development, CAPRICE, in Arabidopsis root epidermal cell differentiation
Development,
January 12, 2002;
129(23):
5409 - 5419.
[Abstract]
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[PDF]
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F. Siefritz, A. Biela, M. Eckert, B. Otto, N. Uehlein, and R. Kaldenhoff
The tobacco plasma membrane aquaporin NtAQP1
J. Exp. Bot.,
October 1, 2001;
52(363):
1953 - 1957.
[Abstract]
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Z. Gong, H. Koiwa, M. A. Cushman, A. Ray, D. Bufford, S. Kore-eda, T. K. Matsumoto, J. Zhu, J. C. Cushman, R. A. Bressan, et al.
Genes That Are Uniquely Stress Regulated in Salt Overly Sensitive (sos) Mutants
Plant Physiology,
May 1, 2001;
126(1):
363 - 375.
[Abstract]
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J. Medina, R. Catalá, and J. Salinas
Developmental and Stress Regulation of RCI2A and RCI2B, Two Cold-Inducible Genes of Arabidopsis Encoding Highly Conserved Hydrophobic Proteins
Plant Physiology,
April 1, 2001;
125(4):
1655 - 1666.
[Abstract]
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M. Heisler, A Atkinson, Y. Bylstra, R Walsh, and D. Smyth
SPATULA, a gene that controls development of carpel margin tissues in Arabidopsis, encodes a bHLH protein
Development,
January 4, 2001;
128(7):
1089 - 1098.
[Abstract]
[PDF]
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C. T. Payne, F. Zhang, and A. M. Lloyd
GL3 Encodes a bHLH Protein That Regulates Trichome Development in Arabidopsis Through Interaction With GL1 and TTG1
Genetics,
November 1, 2000;
156(3):
1349 - 1362.
[Abstract]
[Full Text]
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N. Nesi, I. Debeaujon, C. Jond, G. Pelletier, M. Caboche, and L. Lepiniec
The TT8 Gene Encodes a Basic Helix-Loop-Helix Domain Protein Required for Expression of DFR and BAN Genes in Arabidopsis Siliques
PLANT CELL,
October 1, 2000;
12(10):
1863 - 1878.
[Abstract]
[Full Text]
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Y. Uno, T. Furihata, H. Abe, R. Yoshida, K. Shinozaki, and K. Yamaguchi-Shinozaki
Arabidopsis basic leucine zipper transcription factors involved in an abscisic acid-dependent signal transduction pathway under drought and high-salinity conditions
PNAS,
September 22, 2000;
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190309197.
[Abstract]
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C. D. Fairchild, M. A. Schumaker, and P. H. Quail
HFR1 encodes an atypical bHLH protein that acts in phytochrome A signal transduction
Genes & Dev.,
September 15, 2000;
14(18):
2377 - 2391.
[Abstract]
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T. Nishiuchi, H. Kodama, S. Yanagisawa, and K. Iba
Wound-Induced Expression of the FAD7 Gene Is Mediated by Different Regulatory Domains of Its Promoter in Leaves/Stems and Roots
Plant Physiology,
December 1, 1999;
121(4):
1239 - 1246.
[Abstract]
[Full Text]
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R. B. Meagher, E. C. McKinney, and M. K. Kandasamy
Isovariant Dynamics Expand and Buffer the Responses of Complex Systems: The Diverse Plant Actin Gene Family
PLANT CELL,
June 1, 1999;
11(6):
995 - 1006.
[Full Text]
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I. Winicov and D. R. Bastola
Transgenic Overexpression of the Transcription Factor Alfin1 Enhances Expression of the Endogenous MsPRP2 Gene in Alfalfa and Improves Salinity Tolerance of the Plants
Plant Physiology,
June 1, 1999;
120(2):
473 - 480.
[Abstract]
[Full Text]
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A. Gomez-Cadenas, S. D. Verhey, L. D. Holappa, Q. Shen, T.-H. D. Ho, and M. K. Walker-Simmons
An abscisic acid-induced protein kinase, PKABA1, mediates abscisic acid-suppressed gene expression in barley aleurone layers
PNAS,
February 16, 1999;
96(4):
1767 - 1772.
[Abstract]
[Full Text]
[PDF]
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Q. Liu, M. Kasuga, Y. Sakuma, H. Abe, S. Miura, K. Yamaguchi-Shinozaki, and K. Shinozaki
Two Transcription Factors, DREB1 and DREB2, with an EREBP/AP2 DNA Binding Domain Separate Two Cellular Signal Transduction Pathways in Drought- and Low-Temperature-Responsive Gene Expression, Respectively, in Arabidopsis
PLANT CELL,
August 1, 1998;
10(8):
1391 - 1406.
[Abstract]
[Full Text]
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F. U. Hoeren, R. Dolferus, Y. Wu, W. J. Peacock, and E. S. Dennis
Evidence for a Role for AtMYB2 in the Induction of the Arabidopsis Alcohol Dehydrogenase Gene (ADH1) Low Oxygen
Genetics,
June 1, 1998;
149(2):
479 - 490.
[Abstract]
[Full Text]
[PDF]
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Y. Uno, T. Furihata, H. Abe, R. Yoshida, K. Shinozaki, and K. Yamaguchi-Shinozaki
Arabidopsis basic leucine zipper transcription factors involved in an abscisic acid-dependent signal transduction pathway under drought and high-salinity conditions
PNAS,
October 10, 2000;
97(21):
11632 - 11637.
[Abstract]
[Full Text]
[PDF]
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M. Kamaluddin and J. J. Zwiazek
Ethylene Enhances Water Transport in Hypoxic Aspen
Plant Physiology,
March 1, 2002;
128(3):
962 - 969.
[Abstract]
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[PDF]
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