Characterization of abiotic stress-responsive Arabidopsis thaliana RD29A and RD29B genes and evaluation of transgenes

被引:0
|
作者
Joseph Msanne
Jiusheng Lin
Julie M. Stone
Tala Awada
机构
[1] School of Natural Resources,Department of Biochemistry
[2] University of Nebraska-Lincoln,undefined
[3] University of Nebraska-Lincoln,undefined
来源
Planta | 2011年 / 234卷
关键词
Abiotic stress; Water use efficiency; Gas exchange; Photosynthesis; Carbon isotope ratio;
D O I
暂无
中图分类号
学科分类号
摘要
Abiotic stresses have adverse effects on plant growth and productivity. The homologous RD29A and RD29B genes are exquisitely sensitive to various abiotic stressors. Therefore, RD29A and RD29B gene sequences have potential to confer abiotic stress resistance in crop species grown in arid and semi-arid regions. To our knowledge, no information on the physiological roles of the proteins encoded by RD29A and RD29B are available in the literature. To understand how these proteins function, we used reverse genetic approaches, including identifying rd29a and rd29b T-DNA knockout mutants, and examining the effects of complementing transgenes with the genes under control of their native promoters and chimeric genes with the native promoters swapped. Four binary vectors with the RD29A and RD29B promoters upstream of the cognate RD29A and RD29B cDNAs and as chimeric genes with noncognate promoters were used to transform rd29a and rd29b plants. Cold, drought, and salt induced both genes; the promoter of RD29A was found to be more responsive to drought and cold stresses, whereas the promoter of RD29B was highly responsive to salt stress. Morphological and physiological responses of rd29a and rd29b plants to salt stress were further investigated. Root growth, and photosynthetic properties declined significantly, while solute concentration (Ψπ), water use efficiency (WUE) and δ13C ratio increased under salt stress. Unexpectedly, the rd29a and rd29b knockout mutant lines maintained greater root growth, photosynthesis, and WUE under salt stress relative to control. We conclude that the RD29A and RD29B proteins are unlikely to serve directly as protective molecules.
引用
收藏
页码:97 / 107
页数:10
相关论文
共 50 条
  • [1] Characterization of abiotic stress-responsive Arabidopsis thaliana RD29A and RD29B genes and evaluation of transgenes
    Msanne, Joseph
    Lin, Jiusheng
    Stone, Julie M.
    Awada, Tala
    PLANTA, 2011, 234 (01) : 97 - 107
  • [2] Activity of the Arabidopsis RD29A and RD29B promoter elements in soybean under water stress
    Saadia Bihmidine
    Jiusheng Lin
    Julie M. Stone
    Tala Awada
    James E. Specht
    Tom E. Clemente
    Planta, 2013, 237 : 55 - 64
  • [3] Activity of the Arabidopsis RD29A and RD29B promoter elements in soybean under water stress
    Bihmidine, Saadia
    Lin, Jiusheng
    Stone, Julie M.
    Awada, Tala
    Specht, James E.
    Clemente, Tom E.
    PLANTA, 2013, 237 (01) : 55 - 64
  • [4] Transcriptional Regulation of ABI3- and ABA-responsive Genes Including RD29B and RD29A in Seeds, Germinating Embryos, and Seedlings of Arabidopsis
    Kazuo Nakashima
    Yasunari Fujita
    Koji Katsura
    Kyonoshin Maruyama
    Yoshihiro Narusaka
    Motoaki Seki
    Kazuo Shinozaki
    Kazuko Yamaguchi-Shinozaki
    Plant Molecular Biology, 2006, 60 : 51 - 68
  • [5] Transcriptional regulation of ABI3-and ABA-responsive genes including RD29B and RD29A in seeds, germinating embryos, and seedlings of Arabidopsis
    Nakashima, K
    Fujita, Y
    Katsura, K
    Maruyama, K
    Narusaka, Y
    Seki, M
    Shinozaki, K
    Yamaguchi-Shinozaki, K
    PLANT MOLECULAR BIOLOGY, 2006, 60 (01) : 51 - 68
  • [6] Identification of novel drought tolerance genes, RD29A and RD29B, which concurrently improve crop growth and yields
    Park, S. W.
    Liu, W.
    Sanz-Saez, A.
    Sikora, E. J.
    PHYTOPATHOLOGY, 2020, 110 (12) : 111 - 112
  • [7] Plant growth-promoting rhizobacterium, Paenibacillus polymyxa CR1, upregulates dehydration-responsive genes, RD29A and RD29B, during priming drought tolerance in arabidopsis
    Liu, Wenshan
    Sikora, Edward
    Park, Sang-Wook
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2020, 156 : 146 - 154
  • [8] RD29A and RD29B rearrange genetic and epigenetic markers in priming systemic defense responses against drought and salinity
    Liu, Wenshan
    Thapa, Parbati
    Park, Sang-Wook
    PLANT SCIENCE, 2023, 337
  • [9] Synergistic Activation of RD29A Via Integration of Salinity Stress and Abscisic Acid in Arabidopsis thaliana
    Lee, Sang Y.
    Boon, Neville J.
    Webb, Alex A. R.
    Tanaka, Reiko J.
    PLANT AND CELL PHYSIOLOGY, 2016, 57 (10) : 2147 - 2160
  • [10] Activation of the NaCl- and drought-induced RD29A and RD29B promoters by constitutively active Arabidopsis MAPKK or MAPK proteins (Retraction of vol 29, pg 1761, 2006)
    Hua, Z. -M.
    Yang, X.
    Fromm, M. E.
    PLANT CELL AND ENVIRONMENT, 2006, 29 (12): : 2253 - 2253