植物抗旱基因工程研究进展

被引:34
作者
张秀海
黄丛林
沈元月
曹鸣庆
机构
[1] 北京市农林科学院北京农业生物技术研究中心!北京
[2] 中国农业大学果树分子发育生物学实验室
[3] 北京
关键词
植物; 抗旱; 生物学原理; 基因工程;
D O I
10.13560/j.cnki.biotech.bull.1985.2001.04.005
中图分类号
Q943.2 [植物基因工程];
学科分类号
摘要
干旱、高温、低温、盐胁迫等是影响植物生存的主要逆境因子 ,它们均引起植物失水 ,导致细胞生理干旱。作者对植物抗旱的生物学原理及其基因工程研究进展进行了论述。
引用
收藏
页码:21 / 25
页数:5
相关论文
共 8 条
[1]   Transformation of Synechococcus with a gene for choline oxidase enhances tolerance to salt stress [J].
Deshnium, P ;
Los, DA ;
Hayashi, H ;
Mustardy, L ;
Murata, N .
PLANT MOLECULAR BIOLOGY, 1995, 29 (05) :897-907
[2]   DROUGHT INDUCES OXIDATIVE STRESS IN PEA-PLANTS [J].
MORAN, JF ;
BECANA, M ;
ITURBEORMAETXE, I ;
FRECHILLA, S ;
KLUCAS, RV ;
APARICIOTEJO, P .
PLANTA, 1994, 194 (03) :346-352
[3]   Metabolic engineering of rice leading to biosynthesis of glycinebetaine and tolerance to salt and cold [J].
Sakamoto, A ;
Murata, A ;
Murata, N .
PLANT MOLECULAR BIOLOGY, 1998, 38 (06) :1011-1019
[4]   EFFECT OF POLYAMINES ON STABILIZATION OF MOLECULAR-COMPLEXES IN THYLAKOID MEMBRANES OF OSMOTICALLY STRESSED OAT LEAVES [J].
BESFORD, RT ;
RICHARDSON, CM ;
CAMPOS, JL ;
TIBURCIO, AF .
PLANTA, 1993, 189 (02) :201-206
[5]  
Developmental and organ-specific expression of an ABA- and stress-induced protein in barley[J] . Bimei Hong,Rivka Barg,Tuan-hua David Ho. &nbspPlant Molecular Biology . 1992 (4)
[6]  
Over-expression of the oat arginine decarboxylase cDNA in transgenic rice (Oryza sativa L.) affects normal development patterns in vitro and results in putrescine accumulation in transgenic plants[J] . T. Capell,C. Escobar,H. Liu,D. Burtin,O. Lepri,P. Christou. &nbspTAG Theoretical and Applied Genetics . 1998 (1-2)
[7]   TRANSFORMED PLANTS WITH ELEVATED LEVELS OF CHLOROPLASTIC SOD ARE NOT MORE RESISTANT TO SUPEROXIDE TOXICITY [J].
TEPPERMAN, JM ;
DUNSMUIR, P .
PLANT MOLECULAR BIOLOGY, 1990, 14 (04) :501-511
[8]  
Cloning and characterization of a cDNA encoding a mRNA rapidly-induced by ABA in barley aleurone layers[J] . Bimei Hong,Scott J. Uknes,Tuan-hua David Ho. &nbspPlant Molecular Biology . 1988 (4)