Over-expression of TsCBF1 gene confers improved drought tolerance in transgenic maize

被引:52
|
作者
Zhang, Shujuan [1 ]
Li, Ning [1 ]
Gao, Feng [1 ]
Yang, Aifang [1 ]
Zhang, Juren [1 ]
机构
[1] Shandong Univ, Sch Life Sci, Jinan 250100, Peoples R China
关键词
Zea mays L; Transgene; TsCBF1; Drought tolerance; BINDING TRANSCRIPTION FACTOR; PLANT COLD-ACCLIMATION; LOW-TEMPERATURE; FREEZING TOLERANCE; BRASSICA-NAPUS; WATER-DEFICIT; RESPONSE PATHWAY; OSMOTIC-STRESS; SALT TOLERANCE; TROPICAL MAIZE;
D O I
10.1007/s11032-009-9385-5
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
The DREB/CBF transcription factors play important roles during low temperature, drought, and high-salt stress in higher plants. In this paper, we transferred TsCBF1 gene from a dicotyledonous halophyte Thellungiella halophila into the monocotyledonous crop maize (Zea mays L.). PCR, Southern blot, and RT-PCR analysis indicated that the TsCBF1 gene had been integrated into the genome of transgenic plants and was expressed in their progeny. After 14 days of drought stress treatments, transgenic plants showed improved drought tolerance with higher Relative Water Content (RWC), higher solute accumulation, and less cell damage compared with wild-type (WT) plants. Most importantly, they showed shorter anthesis-silking interval (ASI) and produced much higher grain yield than WT under drought stress. The results indicate that the TsCBF1 gene conferred enhanced drought tolerance to maize plants and may have utility for improving tolerance to other abiotic stresses as well.
引用
收藏
页码:455 / 465
页数:11
相关论文
共 50 条
  • [1] Over-expression of TsCBF1 gene confers improved drought tolerance in transgenic maize
    Shujuan Zhang
    Ning Li
    Feng Gao
    Aifang Yang
    Juren Zhang
    Molecular Breeding, 2010, 26 : 455 - 465
  • [2] Over-expression of an Arabidopsis δ-OAT gene enhances salt and drought tolerance in transgenic rice
    Wu, LQ
    Fan, ZM
    Guo, L
    Li, YQ
    Zhang, WJ
    Qu, LJ
    Chen, ZL
    CHINESE SCIENCE BULLETIN, 2003, 48 (23): : 2594 - 2600
  • [3] Drought tolerance through over-expression of the expansin gene TaEXPB23 in transgenic tobacco
    Li, Feng
    Xing, Shichao
    Guo, Qifang
    Zhao, Meirong
    Zhang, Jin
    Gao, Qiang
    Wang, Guiping
    Wang, Wei
    JOURNAL OF PLANT PHYSIOLOGY, 2011, 168 (09) : 960 - 966
  • [4] Over-Expression of Arabidopsis EDT1 Gene Confers Drought Tolerance in Alfalfa (Medicago sativa L.)
    Zheng, Guangshun
    Fan, Cunying
    Di, Shaokang
    Wang, Xuemin
    Xiang, Chengbin
    Pang, Yongzhen
    FRONTIERS IN PLANT SCIENCE, 2017, 8
  • [5] Over-expression of microRNA169 confers enhanced drought tolerance to tomato
    Xiaohui Zhang
    Zhe Zou
    Pengjuan Gong
    Junhong Zhang
    Khurram Ziaf
    Hanxia Li
    Fangming Xiao
    Zhibiao Ye
    Biotechnology Letters, 2011, 33 : 403 - 409
  • [6] Over-expression of microRNA169 confers enhanced drought tolerance to tomato
    Zhang, Xiaohui
    Zou, Zhe
    Gong, Pengjuan
    Zhang, Junhong
    Ziaf, Khurram
    Li, Hanxia
    Xiao, Fangming
    Ye, Zhibiao
    BIOTECHNOLOGY LETTERS, 2011, 33 (02) : 403 - 409
  • [7] Over-Expression of a Melon Y3SK2-Type LEA Gene Confers Drought and Salt Tolerance in Transgenic Tobacco Plants
    Poku, Samuel Aduse
    Chukwurah, Peter Nkachukwu
    Aung, Htut Htet
    Nakamura, Ikuo
    PLANTS-BASEL, 2020, 9 (12): : 1 - 15
  • [9] Over-expression of Arabidopsis thaliana β-carotene hydroxylase (chyB) gene enhances drought tolerance in transgenic tobacco
    Qing Zhao
    Gang Wang
    Jing Ji
    Chao Jin
    Weidang Wu
    Jia Zhao
    Journal of Plant Biochemistry and Biotechnology, 2014, 23 : 190 - 198
  • [10] Over-expression of Arabidopsis thaliana β-carotene hydroxylase (chyB) gene enhances drought tolerance in transgenic tobacco
    Zhao, Qing
    Wang, Gang
    Ji, Jing
    Jin, Chao
    Wu, Weidang
    Zhao, Jia
    JOURNAL OF PLANT BIOCHEMISTRY AND BIOTECHNOLOGY, 2014, 23 (02) : 190 - 198