Three stress-responsive NAC transcription factors from Populus euphratica differentially regulate salt and drought tolerance in transgenic plants

被引:49
|
作者
Lu, Xin [1 ]
Zhang, Xiaofei [1 ]
Duan, Hui [1 ]
Lian, Conglong [1 ]
Liu, Chao [1 ]
Yin, Weilun [1 ]
Xia, Xinli [1 ]
机构
[1] Beijing Forestry Univ, Beijing Adv Innovat Ctr Tree Breeding Mol Design, Natl Engn Lab Tree Breeding, Coll Biol Sci & Biotechnol, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
CUP-SHAPED-COTYLEDON; GENE-EXPRESSION; FUNCTIONAL-ANALYSIS; FACTOR FAMILY; ABIOTIC STRESSES; APICAL MERISTEM; ARABIDOPSIS; DOMAIN; DEHYDRATION; PROTEIN;
D O I
10.1111/ppl.12613
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Stress-responsive NAM, Arabidopsis transcription activation factor 1/2 (ATAF1/2) and CUC2 (SNAC) genes are being used to alter stress tolerance in Arabidopsis or grasses through genetic engineering. However, limited reports are available about the functional characteristics of SNAC in trees. In this study, three putative NAC proteins were identified from Populus euphratica. PeNAC034 and PeNAC045 were classified into the ATAF subgroup and PeNAC036 into the ANAC072 subgroup. These three SNAC transcription factors were localized in the nucleus and contained the transcription activation domain in their C-terminal. Under drought and salt stresses, PeNAC036 was strongly induced in the whole plant, but PeNAC034 was significantly suppressed in the roots and stems, and PeNAC045 was inhibited in the roots. PeNAC036 overexpression in Arabidopsis wild-type (WT) (OEPeNAC036) and PeNAC036 complementation in mutant anac072 (anac072/PeNAC036) lines increased tolerance to salt and drought, whereas PeNAC034 overexpression in WT (OEPeNAC034) and PeNAC034 complementation in mutant ataf1 (ataf1/PeNAC034) lines enhanced salt and drought sensitivity. After drought and salt treatments, the expression levels of COR47, RD29B, ERD11, RD22 and DREB2A were upregulated in OEPeNAC036 and anac072/PeNAC036 lines, but were downregulated in OEPeNAC034 and ataf1/PeNAC034 plants. Compared with WT and Vector lines, PeNAC045 overexpression in poplar WT (OEPeNAC045) led to a significant decrease in the net photosynthesis rate, stomatal conductance and transpiration rate under salinity and drought conditions. These results suggest that P. euphratica can adapt to the environment of high salinity and drought, which may be related to the differential expression patterns of SNAC genes.
引用
收藏
页码:73 / 97
页数:25
相关论文
共 50 条
  • [1] Three stress-responsive NAC transcription factors, Pp-SNACs, differentially and synergistically regulate abiotic stress in pear
    Ahmad, Mudassar
    Alabd, Ahmed
    Gao, Yuhao
    Yu, Wenjie
    Jamil, Wajeeha
    Wang, Xuxu
    Wei, Jia
    Ni, Junbei
    Teng, Yuanwen
    Bai, Songling
    SCIENTIA HORTICULTURAE, 2022, 305
  • [2] A rice stress-responsive NAC gene enhances tolerance of transgenic wheat to drought and salt stresses
    Saad, Abu Sefyan I.
    Li, Xu
    Li, He-Ping
    Huang, Tao
    Gao, Chun-Sheng
    Guo, Mao-Wei
    Cheng, Wei
    Zhao, Guang-Yao
    Liao, Yu-Cai
    PLANT SCIENCE, 2013, 203 : 33 - 40
  • [3] A chickpea stress-responsive NAC transcription factor, CarNAC5, confers enhanced tolerance to drought stress in transgenic Arabidopsis
    Xingwang Yu
    Yanmin Liu
    Shuang Wang
    Yuan Tao
    Zhankui Wang
    Abudoukeyumu Mijiti
    Ze Wang
    Hua Zhang
    Hao Ma
    Plant Growth Regulation, 2016, 79 : 187 - 197
  • [4] A chickpea stress-responsive NAC transcription factor, CarNAC5, confers enhanced tolerance to drought stress in transgenic Arabidopsis
    Yu, Xingwang
    Liu, Yanmin
    Wang, Shuang
    Tao, Yuan
    Wang, Zhankui
    Mijiti, Abudoukeyumu
    Wang, Ze
    Zhang, Hua
    Ma, Hao
    PLANT GROWTH REGULATION, 2016, 79 (02) : 187 - 197
  • [5] Overexpression of a Stress-Responsive NAC Transcription Factor Gene ONACO22 Improves Drought and Salt Tolerance in Rice
    Hong, Yongbo
    Zhang, Huijuan
    Huang, Lei
    Li, Dayong
    Song, Fengming
    FRONTIERS IN PLANT SCIENCE, 2016, 7
  • [6] The Role of Stress-Responsive Transcription Factors in Modulating Abiotic Stress Tolerance in Plants
    Yoon, Youngdae
    Seo, Deok Hyun
    Shin, Hoyoon
    Kim, Hui Jin
    Kim, Chul Min
    Jang, Geupil
    AGRONOMY-BASEL, 2020, 10 (06):
  • [7] ZmNAC55, a maize stress-responsive NAC transcription factor, confers drought resistance in transgenic Arabidopsis
    Mao, Hude
    Yu, Lijuan
    Han, Ran
    Li, Zhanjie
    Liu, Hui
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2016, 105 : 55 - 66
  • [8] Ammopiptanthus mongolicus stress-responsive NAC gene enhances the tolerance of transgenic Arabidopsis thaliana to drought and cold stresses
    Pang, Xinyue
    Xue, Min
    Ren, Meiyan
    Nan, Dina
    Wu, Yaqi
    Guo, Huiqin
    GENETICS AND MOLECULAR BIOLOGY, 2019, 42 (03) : 624 - 634
  • [9] ZmNAC074, a maize stress-responsive NAC transcription factor, confers heat stress tolerance in transgenic Arabidopsis
    Xi, Yan
    Ling, Qiqi
    Zhou, Yue
    Liu, Xiang
    Qian, Yexiong
    FRONTIERS IN PLANT SCIENCE, 2022, 13
  • [10] Lilium pumilum stress-responsive NAC transcription factor LpNAC17 enhances salt stress tolerance in tobacco
    Wang, Yiping
    Cui, Ying
    Liu, Bin
    Wang, Ying
    Sun, Shaoying
    Wang, Jingwen
    Tan, Mengmeng
    Yan, Hao
    Zhang, Yanni
    FRONTIERS IN PLANT SCIENCE, 2022, 13