闫小燕等
, 2011,
冷诱导基因
wcs19
与小麦抗寒性关系研究
,
分子植物育种
Vol.9 No.45 (doi: 10.5376/mpb.cn.2011.09.0045)
1342
(
董玉琛
,
郑殿升
,
编著
, 2000,
中国小麦遗传资源
,
中
国农业出版社
,
中国
,
北京
, pp.240-242)
Egawa C., Kobayashi F., Ishibashi M., Nakamura T., Nakamura
C., and Takumi S., 2006, Differential regulation of
transcript accumulation and alternative splicing of a
DREB2 homolog under abiotic stress conditions in
common wheat, Genes & Genetic Systems, 81: 77-91
Fowler D.B., Breton G.., Limin A.E., Mahfoozi S., and Sarhan
F., 2001, Photoperiod and temperature interactions
tegulate low-temperature-induced gene expression in
barley, Plant Physiology, 127: 1676-1681
Guo W., Ward R.W., and Thomashow M.F., 1990,
Characterization of a Cold-Regulated Wheat Gene Related
to Arabidopsis
cor47
, Plant Physiol, 100: 915-922
Houde M., Dhindsa R.S., and Sarhan F., 1992, A molecular
marker to select for freezing tolerance in gramineae, Mol
Gen Genet, 234: 43-48
Hughes M., and Dunn M., 1996, The molecular biology of
plantacclimation to low temperature, J.Exp.Bot, 47:
291-305
Jaglo K.R., Kle V.S., Amundsen K.L., Zhang X., Haake V.,
Zhang J.Z., Deits T., and Thomashow M.F., 2001,
Components
of
the
Arabidopsis
C-repeat/dehydration-responsive element binding factor
cold-response pathway are conserved in Brassica napus
and other plant species, Plant Physiol, 127: 910-917
Kobayashi F., Takumi S., and Nakamura C., 2008, Increased
freezing tolerance in an ABA-hypersensitive mutant of
common wheat, Journal of Plant Physiology, 165: 224-232
Kobayashi F., Takumi S., Nakata M., Ohno R., Nakamura T.,
and Nakamura C., 2004, Comparative study of the
expression profiles of the Cor/Lea gene family in two
wheat cultivars with contrasting levels of freezing
tolerance, Physiologia Plantarum, 120: 585-594
Kume S., Kobayashi F., Ishibashi M., Ohno R., Nakamura C.,
and Takumi S., 2005, Differential and coordinated
expression of Cbf and Cor/Lea genes during long-term cold
acclimation in two wheat cultivars showing distinct levels of
freezing tolerance, Genes Genet Syst, 80: 185-197
Novillo F., and Alonso J.M., 2004, Cold acclimation of
Arabidopsis thaliana: Affect on plasma membrane lipid
composition an defreeze-induced lesions, Plant Biology,
11: 3985-3990
Pan J., and Jian L.C., 1990, Advances of the Studies on
Biomembranes and Proteins in Plant Freezing Injury and
Cold Hardness, Zhiwuxue Tongbao(Chinese Bulletin of
Botany), 7(1): 1-5 (
潘杰
,
简令成
, 1990,
植物寒害和抗寒
机制中膜与蛋白质研究的进展
,
植物学通报
, 7(1): 1-5)
Perras M., and Sarhan F., 1989, Synthesis of freezing tolerance
proteinsin leaves, crown and roots during cold acclimation
of wheat, Plant Physiol, 89: 577-585
Skinner J.S., Von Zitzewitz J., Szucs P., Marquez-Cedillo L.,
Filichkin T., Amundsen K., Stockinger E.J., Thomashow
M.F., Chen T.H., and Hayes P.M., 2005, Structural,
functional, and phylogeneticcharacterization of a large
CBF gene family in barley, Plant Mol Biol, 59: 533-551
Stockinger E.J., Gilmour S.J., and Thomashow M.F., 1997,
Arabidopsis
thaliana
CBF1
encodes
an
AP2
domain-containing transcriptional activator that binds to the
C-repeat/DRE,a cis-acting DNA regulatory element that
stimulates transcription in response to low temperature and
water deficit, Proc Natl Acad Sci USA, 94: 1035-1040
Takumi S., Koike A., Nakata M., Kume S., Ohno R., and
Nakamura C., 2003, Cold-specific and light-stimulated
expression of a wheat (
Triticum aestivum
L.) Cor gene
Wcor15
encoding a chloroplast-targeted protein,Journal of
Experimental Botany, 54: 2265-2274
Thomashow M.F., 1998, Role of cold-responsive genes in plant
freezing tolerance, Plant Physio1, 118: 1-7
Thomashow M.F., Gilmour S.J., and Stockinger E.J., 2001,
Modification of fatty acid comosition in rice plants by
transformation with a tobacco microsomal 23 fatty acid
desaturase gene, Physic Plant, 112: 171-175
Tsuda K., Tsvetanov S., Takumi S., Mori N., Atanassov A., and
Nakamura C., 2000, New members of a cold-responsive
group-3 Lea/Rab-related Cor gene family from common
wheat (
Triticum aestivum
L.), Genes & Genetic Systems,
75: 179-188
Tsvetanov S., Ohno R., and Tsuda K., 2000, A cold-responsive
wheat(
Triticum aestivum
L.) gene
wcor14
identified in a
winter-hardy cultivar Mironovska, 808, Genes & Genetic
Systems, 75: 49-57