Page 26 - 2011no16

Basic HTML Version

杨飞等
, 2011,
转基因技术在植物耐盐研究中的应用
,
分子植物育种
Vol.9 No.16 (doi: 10.5376/mpb.cn.2011.09.0016)
1119
因烟草的
NaHCO
3
抗性分析
,
分子植物育种
, 4(2):
216-221)
Liu W.H., Zhao X.Z., Liang H., Liu W.X., Hu Z.M., and Li
L.H., 2006, Study on transformation of wheat with SacB
gene from bacillus subtilis, Zhongguo Nongye Kexue
(Scientia Agricultura Sinica), 39(2): 231-236 (
刘伟华
,
秀振
,
梁虹
,
刘文献
,
胡赞民
,
李立会
, 2006,
枯草杆菌
果聚糖蔗糖酶基因转化小麦的研究
,
中国农业科学
,
39(2): 231-236)
Liu Y., Deng Y.X., and Zheng Y.Z., 2010, Research advances
on the molecular mechanism of plant salt-tolerance, Anhui
Nongye Kexue (Journal of Anhui Agricultural Sciences),
38(12): 6087-6089, 6115 (
刘昀
,
邓银霞
,
郑易之
, 2010,
植物耐盐的分子机理研究进展
,
安徽农业科学
, 38(12):
6087-6089, 6115)
Liu Z.J., Shao F.X., and Tang G.Y., 2007, The research progress
of structure, function and regulation of plant NAC
transcription factors, Xibei Zhiwu Xuebao (Acta Botanica
Boreali-Occidentalia Sinica), 27(9): 1915-1920 (
柳展基
,
邵凤霞
,
唐桂英
, 2007,
植物
NAC
转录因子的结构功能
及其表达调控研究进展
,
西北植物学报
, 27(9): 1915-1920)
M.Almeida A., B.Silva A., S.Araújo S., A.Cardoso L., Santos
D.M., M.TornéJ., M.Silva J., J.Paul M., and Fevereiro
P.S., 2007, Responses to water withdrawal of tobacco
plants genetically engineered with the
AtTPS1
gene: a
special reference to photosynthetic parameters, Euphytica,
154(1-2): 113-126
Ma J.H., and Zheng H.L., 2007, Molecular biological basis of
salt tolerance in plants, Journal of Biology, 24(1): 5-8, 4
(
马建华
,
郑海雷
, 2007,
植物耐盐的分子生物学基础
,
生物学杂志
, 24(1): 5-8, 4)
Ma S.Y, and Wu W.H., 2007, AtCPK23 functions in
Arabidopsis
responses to drought and salt stresses, Plant Mol. Biol.,
65(4): 511-518
Majee M., Maitra S., and Ghosh K., 2004, A novel salt-tolerant
1-myo–inositol-1-phosphate synthase from
Porteresia
coarctata
(Roxb.) tateoka: a halophytic wild rice, Biol.
Chem., 279(27): 28539-28552
Michelet B., and Boutry M., 1995, The plasma membrane
H
+
-ATPase (A highly regulated enzyme with multiple
physiological functions), Plant Physiol., 108(1): 1-6
Mittova V., Tal M., Volokita M., and Guy M., 2003, Up-regulation
of the leaf mitochondrial and peroxisomal antioxidative
systems in response to salt-induced oxidative stress in the
wild salt-tolerant tomato species
Lycopersion pennellii
,
Plant Cell Environ., 26(6): 845-856
Nakashima K., and Yamaguchi-Shinozaki K., 2005, Molecular
studies on stress-responsive gene expression in
Arabidopsis
and improvement of stress tolerance in crop plants by
regulon biotechnology, JARQ, 39(4): 221-229
Neeti S.M., Xuan H.P., Sudhir K.S., and Narendra T., 2005, Pea
DNA helicase 45 overexpression in tobacco confers high
salinity tolerance without affecting yield, PNAS, 102(2):
509-514
Oh S.J., Song S.I., Kim Y.S., Jang H.J., Kim S.Y., Kim M., Kim
Y.K., Nahm B.H., and Kim J.K., 2005,
Arabidopsis
CBF3/
DREB1A and ABF3 in transgenic rice increased tolerance
to abiotic stress without stunting growth, Plant Physiol.,
138: 341-351
Park B.J., Liu Z.C., Kanno A., and Kameya T., 2005, Increased
tolerance to salt- and water-deficit stress in transgenic
lettuce (
Lactuca sativa
L.) by constitutive expression of
LEA, Plant Growth Regul., 45(2): 165-171
Sawahel W.A, and Hassan A.H, 2002, Generation of transgenic
wheat plants producing high levels of the osmoprotectant
proline, Biotechnol. Lett., 24(9): 721-725
Sheen J., 1996, Ca
2+
-dependent protein kinases and stress signal
transduction in plants, Science, 274(5294): 1900-1902
Shen Y.G., Yan D.Q., Zhang W.K., Du .B.X., Zhang J.S., Liu Q.,
and Chen S.Y., 2003, Novel halophyte EREBP/AP2-type
DNA binding protein improves salt tolerance in transgenic
tobacco, Zhiwu Xuebao (Acta Botanica Sinica), 45(1):
82-87 (
沈义国
,
闫冬青
,
张万科
,
杜保兴
,
张劲松
,
,
陈受宜
, 2003,
山菠菜
EREBP/AP2
DNA
结合蛋白
基因的克隆及其耐逆性研究
,
植物学报
, 45(1): 82-87)
Sivamani E., Bahieldin A., M.Wraith J., Al-Niemi T., E.Dyer
W., Ho T.H.D., and Qu R.D., 2000, Improved biomass
productivity and water use efficiency under water deficit
conditions in transgenic wheat constitutively expressing
the barley
HVA1
Gene, Plant Sci., 155(1): 1-9
Spychalla J.P., and Desborough S.L., 1990, Superoxide dismutase,
catalase, and α-tocopherol content of stored potato tubers,
Plant Physiol., 94(3): 1214-1218
Su J., and Zhu R.C., 2001, Effects of osmotic stress-regulated
transgene expression on drought resistance and salt
tolerance of plants, Zhiwuxue Tongbao (Chinese Bulletin
of Botany), 18(2): 129-136 (
苏金
,
朱汝财
, 2001,
渗透胁
迫调节的转基因表达对植物抗旱耐盐性的影响
,
植物
学通报
, 18(2): 129-136)
Sun J.C., Wang X.S., and Yang S.L., 2008, Progress of research
on salt-resistance in plants, Ganhan Diqu Nongye Yanjiu
(Agricultural Research in the Arid Areas), 26(1): 226-230