Wheat NAC transcription factor TaNAC29 is involved in response to salt stress

被引:63
|
作者
Xu, Zhongyang [1 ,2 ]
Gongbuzhaxi [1 ]
Wang, Changyou [1 ]
Xue, Fei [3 ]
Zhang, Hong [1 ]
Ji, Wanquan [1 ]
机构
[1] Northwest A&F Univ, Coll Agron, State Key Lab Crop Stress Biol Arid Areas, Yangling 712100, Shaanxi, Peoples R China
[2] Qinghai Acad Agr & Forestry Sci, Xining 810016, Qinghai, Peoples R China
[3] Shihezi Univ, Shihezi 832003, Xinjiang, Peoples R China
关键词
Wheat; NAC; Abiotic stress; Salt tolerance; Antioxidant system; SECONDARY WALL SYNTHESIS; GENOME-WIDE ANALYSIS; MOLECULAR CHARACTERIZATION; LEAF SENESCENCE; FACTOR FAMILY; ARABIDOPSIS; TOLERANCE; GENES; DROUGHT; RICE;
D O I
10.1016/j.plaphy.2015.08.013
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Soil salinity is considered as one of the most severe abiotic stress factors, which limit plant growth and cause significant losses in crop yield. NAC transcription factors have been proven to play vital roles in abiotic stress signaling in plants. As a staple crop, wheat production is severely constrained by salt stress whereas only a few NAC genes have been characterized functionally. To promote the application of NAC genes in wheat improvement by genetic engineering, a NAC gene designated TaNAC29 was characterized in common wheat. Expression analysis showed that TaNAC29 gene was involved in response to salt, drought and ABA treatments. TaNAC29 protein displays transactivation activity. To determine its role, transgenic Arabidopsis overexpressing TaNAC29 controlled by the CaMV-35S promoter was generated and subjected to salt stress for morphological and physiological assays. Morphological analysis showed that transgenic plants had enhanced tolerance to salt stress, as indicated by improved physiological traits, including more green leaves, reduced H2O2 accumulation, strengthened cell membrane stability and higher SOD, POD, CAT and APX activities. Moreover, the transcript levels of stress-related genes were significantly higher in TaNAC29 overexpression line than those in WT under salt treatment. Taken together, our results demonstrate that TaNAC29 confers salt stress tolerance through reducing H2O2 accumulation and membrane damage by enhancing the antioxidant system, and participating in regulating the abiotic stress-responsive signaling pathway. (C) 2015 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:356 / 363
页数:8
相关论文
共 50 条
  • [41] CYTOKININ RESPONSE FACTOR 2 is involved in modulating the salt stress response
    Keshishian, Erika A.
    Cliver, Brannan R.
    McLaughlin, William F.
    Hallmark, H. Tucker
    Plackova, Lenka
    Goertzen, Leslie R.
    Novak, Ondrej
    Cobine, Paul A.
    Leisner, Courtney P.
    Rashotte, Aaron M.
    [J]. PLANT JOURNAL, 2022, 110 (04): : 1097 - 1110
  • [42] GmNAC06, a NAC domain transcription factor enhances salt stress tolerance in soybean
    Li, Ming
    Chen, Rui
    Jiang, Qiyan
    Sun, Xianjun
    Zhang, Hui
    Hu, Zheng
    [J]. PLANT MOLECULAR BIOLOGY, 2021, 105 (03) : 333 - 345
  • [43] GmNAC06, a NAC domain transcription factor enhances salt stress tolerance in soybean
    Ming Li
    Rui Chen
    Qiyan Jiang
    Xianjun Sun
    Hui Zhang
    Zheng Hu
    [J]. Plant Molecular Biology, 2021, 105 : 333 - 345
  • [44] AvNAC030, a NAC Domain Transcription Factor, Enhances Salt Stress Tolerance in Kiwifruit
    Li, Ming
    Wu, Zhiyong
    Gu, Hong
    Cheng, Dawei
    Guo, Xizhi
    Li, Lan
    Shi, Caiyun
    Xu, Guoyi
    Gu, Shichao
    Abid, Muhammad
    Zhong, Yunpeng
    Qi, Xiujuan
    Chen, Jinyong
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (21)
  • [45] An apple NAC transcription factor enhances salt stress tolerance by modulating the ethylene response (vol 164, pg 279, 2018)
    An, J-P.
    Yao, J-F.
    Xu, R-R.
    You, C-X.
    Wang, X-F.
    Hao, Y-J.
    [J]. PHYSIOLOGIA PLANTARUM, 2019, 166 (01) : 472 - 472
  • [46] Wheat NAC transcription factor NAC5-1 is a positive regulator of senescence
    Evans, Catherine
    Mogg, Sophie Louise
    Soraru, Charline
    Wallington, Emma
    Coates, Juliet
    Borrill, Philippa
    [J]. PLANT DIRECT, 2024, 8 (07)
  • [47] A Ramie bZIP Transcription Factor BnbZIP2 Is Involved in Drought, Salt, and Heavy Metal Stress Response
    Huang, Chengjian
    Zhou, Jinghua
    Jie, Yucheng
    Xing, Hucheng
    Zhong, Yingli
    Yu, Weilin
    She, Wei
    Ma, Yushen
    Liu, Zehang
    Zhang, Ying
    [J]. DNA AND CELL BIOLOGY, 2016, 35 (12) : 776 - 786
  • [48] The trihelix transcription factor OsGTγ-2 is involved adaption to salt stress in rice
    Xiaoshuang Liu
    Dechuan Wu
    Tiaofeng Shan
    Shanbin Xu
    Ruiying Qin
    Hao Li
    Mahrous Negm
    Dexiang Wu
    Juan Li
    [J]. Plant Molecular Biology, 2020, 103 : 545 - 560
  • [49] The trihelix transcription factor OsGTγ-2 is involved adaption to salt stress in rice
    Liu, Xiaoshuang
    Wu, Dechuan
    Shan, Tiaofeng
    Xu, Shanbin
    Qin, Ruiying
    Li, Hao
    Negm, Mahrous
    Wu, Dexiang
    Li, Juan
    [J]. PLANT MOLECULAR BIOLOGY, 2020, 103 (4-5) : 545 - 560
  • [50] A NAC transcription factor gene of Chickpea (Cicer arietinum), CarNAC3, is involved in drought stress response and various developmental processes
    Peng, Hui
    Cheng, Hui-Ying
    Chen, Chen
    Yu, Xin-Wang
    Yang, Jia-Ni
    Gao, Wen-Rui
    Shi, Qing-Hua
    Zhang, Hua
    Li, Jian-Gui
    Ma, Hao
    [J]. JOURNAL OF PLANT PHYSIOLOGY, 2009, 166 (17) : 1934 - 1945