分子植物育种
(
网络版
), 2010
年
,
第
8
卷
,
第
12
篇
Fenzi Zhiwu Yuzhong (Online), 2010, Vol.8, No.12
http://mpb. c
hin
ese.sophiapublisher.com
第
8
页,共
9
页
carboxy-terminal repression domain is required for the
development of normal flowers, FEBS Lett, 514(2):
351-354
Jin LG, and Liu JY., 2008, Molecular cloning, expression
profile and promoter analysis of a novel ethylene
responsive transcription factor gene GhERF4 from cotton
(Gossypium hirstum), Plant Physiol Biochem, 46: 46-53
Kam J., Gresshoff P. M., Shorter R., and Xue G.P., 2008, The
Q-type C2H2 zinc finger subfamily of transcription factors
in Triticum aestivum is predominantly expressed in roots
and enriched with members containing an EAR repressor
motif and responsive to drought stress, Plant Mol Biol ,
67(3): 305-322
Kazan K., 2006, Negative regulation of defence and stress
genes by EAR-motif-containing repressors, TRENDS in
Plant Science, 11(3): 109-112
Koyama T., Okada T., Kitajima S., Ohme-Takagi M., Shinshi
H., and Sato F., 2003, Isolation of tobacco ubiquitin-
conjugating enzyme cDNA in a yeast two-hybrid system
with tobacco ERF3 as bait and its characterization of
specific interaction, J. Exp. Bot., 54(385): 1175-1181
Matsui K, and Ohme-Takagi M., 2010, Detection of
protein–protein
interactions
in
plants
using
thetransrepressive activity of the EAR motif repression
domain, The Plant Journal, 61: 570-578
Matsui K, Umemura Y, and Ohme-Takagi M., 2008, AtMYBL2,
a protein with a single MYB domain, acts as a negative
regulator of anthocyanin biosynthesis in Arabidopsis,
Plant J., 55: 954-967
McGrath K.C., Dombrecht B., Manners J. M., Schenk P. M.,
Edgar C. I., Maclean D. J., Scheible W.R., Udvardi M.K.,
and Kazan K., 2005, Repressor and activator-type ethylene
response factors functioning in jasmonate signaling and
disease resistance identified via a genome-wide screen of
Arabidopsis transcription factor gene expression, Plant
Physiol, 139: 949-959
Mittler R., Kim Y., Song L., Coutu J., Coutu A., Ciftci-Yilmaz
S., Lee H., Stevenson B., and Zhu J.K., 2006, Gain- and
loss-of-function mutations in
ZAT10
enhance the tolerance
of plants to abiotic stress, FEBS Lett, 580: 6537-6542
Mitsuda N., Seki M., Shinozaki K., and Ohme-Takagi M., 2005,
The NAC transcription factors NST1 and NST2 of
Arabidopsis regulate secondary wall thickenings and are
required for anther dehiscence, Plant Cell , 17: 2993-3006
Mitsuda N., Todaka D., Nakashima K., Yamaguchi-Shinozaki
K., and Ohme-Takagi M., 2006, Efficient production of
male and female sterile plants by expression of a chimeric
repressor in Arabidopsis and rice. Plant Biotechnol J., 4:
325-332
Nasir K.H., Takahashi Y., Ito A., Saitoh H., Matsumura H.,
Kanzaki H., Shimizu T., Ito M., Fujisawa S., Sharma P.C.,
Ohme-Takagi M., Kamoun S., and Terauchi R., 2005,
High-throughput in planta expression screening identifies
a class II ethylene-responsive element binding factor-like
protein that regulates plant cell death and non-host
resistance, The Plant Journal, 43: 491-505
Ohta M., Matsui K., Shinshi H., and Ohme-Takagi M., 2001,
Repression domains of class II ERF transcriptional
repressors share an essential motif for active repression,
Plant Cell, 13: 1959-1968
Ohta M., Ohme-Takagi M., and Shinshi H., 2000, Three
ethylene-responsive transcription factors in tobacco with
distinct transactivation functions, Plant J., 22: 29-38
Pauw B., Hilliou F.A., Martin V.S., Chatel G., de Wolf C.J.,
Champion A., Pré M., van Duijn B., Kijne J.W., van der
Fits L., and Memelink J.,2004, Zinc finger proteins act as
transcriptional repressors of alkaloid biosynthesis genes in
Catharanthus roseus, J Biol Chem., 279(51): 52940-52948
Pazin M.J., and Kadonaga J.T., 1997, SWI2/SNF2 and related
proteins: ATP-driven motors that disrupt protein-DNA
interactions? Cell, 88(6): 737-740
Sakamoto H, Araki T, Meshi T, and Iwabuchi M., 2000,
Expression of a subset of the Arabidopsis
Cys(2)/His(2)-type zinc-finger protein gene family under
water stress, Gene, 248(1-2): 23-32
Sakamoto H, Maruyama K, Sakuma Y, Meshi T, Iwabuchi M,
Shinozaki K, and Yamaguchi-Shinozaki K., 2004,
Arabidopsis Cys2/His2-type zinc-finger proteins function
as transcription repressors under drought, cold, and
high-salinity stress conditions, Plant Physiol., 136(1):
2734-2746
Song C.P., Agarwal M., Ohta M., Guo Y., Halfter U., Wang P.C.,
and Zhu J.K., 2005, Role of an Arabidopsis
AP2/EREBP-Type Transcriptional Repressor in Abscisic
Acid and Drought Stress Responses, The Plant Cell, 17:
2384-2396
Suzuki M., Wang H.H.Y., and McCarty D.R., 2007, Repression
of the LEAFY COTYLEDON 1/B3 Regulatory Network
in Plant Embryo Development by VP1/ABSCISIC ACID
INSENSITIVE 3-LIKE B3 Genes, Plant Physiol, 143: