PbGBF3 enhances salt response in pear by upregulating PbAPL2 and PbSDH1 and reducing ABA-mediated salt sensitivity

被引:0
作者
Dong, Huizhen [1 ]
Chen, Qiming [1 ]
Fu, Yifei [1 ]
Xie, Haoyang [1 ]
Li, Tinghan [1 ]
Li, Dingli [2 ]
Yang, Yingjie [2 ]
Xie, Zhihua [1 ]
Qi, Kaijie [1 ]
Zhang, Shaoling [1 ]
Huang, Xiaosan [1 ]
机构
[1] Nanjing Agr Univ, Ctr Pear Engn Technol Res, State Key Lab Crop Genet & Germplasm Enhancement, Nanjing, Peoples R China
[2] Qingdao Agr Univ, Ctr Pear Engn Technol Res, Qingdao, Peoples R China
基金
美国国家科学基金会;
关键词
dynamic transcriptome; WGCNA; salt tolerance; ABA; PbGBF3; transcriptional regulation; SIGNAL-TRANSDUCTION; TRANSCRIPTION FACTOR; OXIDATIVE STRESS; OSMOTIC-STRESS; ABSCISIC-ACID; TOLERANCE; DROUGHT; SALINITY; RICE; COLD;
D O I
10.1111/tpj.16953
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Pear is a widely cultivated fruit crop, but its distribution and sustainable production are significantly limited by salt stress. This study used RNA-Seq time-course analysis, WGCNA, and functional enrichment analysis to uncover the molecular mechanisms underlying salt stress tolerance in Pyrus ussuriensis. We identified an ABA-related regulatory module, PbGBF3-PbAPL2-PbSDH1, as crucial in this response. PbGBF3, a bZIP transcription factor, enhances salt tolerance by upregulating PbAPL2 and PbSDH1. Overexpression of PbGBF3 improved salt tolerance in Pyrus communis calli and Arabidopsis, while silencing it reduced tolerance in Pyrus betulifolia. Functional assays showed that PbGBF3 binds to the promoters of PbAPL2 and PbSDH1, increasing their expression. PbAPL2 and PbSDH1, key enzymes in starch synthesis and the sorbitol pathway, respectively, enhance salt tolerance by increasing AGPase activity, soluble sugar content, and SDH activity, improving ROS scavenging and ion balance. Our findings suggest that the PbGBF3-PbAPL2 and PbGBF3-PbSDH1 modules positively regulate salt tolerance by enhancing ABA signaling and reducing ABA-mediated growth inhibition. These insights provide a foundation for developing salt-tolerant pear cultivars.
引用
收藏
页码:2837 / 2853
页数:17
相关论文
共 62 条
  • [1] Coordinated regulation of photosynthesis in rice increases yield and tolerance to environmental stress
    Ambavaram, Madana M. R.
    Basu, Supratim
    Krishnan, Arjun
    Ramegowda, Venkategowda
    Batlang, Utlwang
    Rahman, Lutfor
    Baisakh, Niranjan
    Pereira, Andy
    [J]. NATURE COMMUNICATIONS, 2014, 5
  • [2] Apple bZIP transcription factor MdbZIP44 regulates abscisic acid-promoted anthocyanin accumulation
    An, Jian-Ping
    Yao, Ji-Fang
    Xu, Rui-Rui
    You, Chun-Xiang
    Wang, Xiao-Fei
    Hao, Yu-Jin
    [J]. PLANT CELL AND ENVIRONMENT, 2018, 41 (11) : 2678 - 2692
  • [3] On the adaptive control of the false discovery fate in multiple testing with independent statistics
    Benjamini, Y
    Hochberg, Y
    [J]. JOURNAL OF EDUCATIONAL AND BEHAVIORAL STATISTICS, 2000, 25 (01) : 60 - 83
  • [4] Bolwell GP, 1999, FREE RADICAL RES, V31, pS137
  • [5] Molecular regulation of starch accumulation in rice seedling leaves in response to salt stress
    Chen, Huai-Ju
    Chen, Jia-Yi
    Wang, Shu-Jen
    [J]. ACTA PHYSIOLOGIAE PLANTARUM, 2008, 30 (02) : 135 - 142
  • [6] Genome-wide identification of lysin motif containing protein family genes in eight rosaceae species, and expression analysis in response to pathogenic fungus Botryosphaeria dothidea in Chinese white pear
    Chen, Qiming
    Li, Qionghou
    Qiao, Xin
    Yin, Hao
    Zhang, Shaoling
    [J]. BMC GENOMICS, 2020, 21 (01)
  • [7] Protein kinases in plant responses to drought, salt, and cold stress
    Chen, Xuexue
    Ding, Yanglin
    Yang, Yongqing
    Song, Chunpeng
    Wang, Baoshan
    Yang, Shuhua
    Guo, Yan
    Gong, Zhizhong
    [J]. JOURNAL OF INTEGRATIVE PLANT BIOLOGY, 2021, 63 (01) : 53 - 78
  • [8] Understanding and improving salt tolerance in plants
    Chinnusamy, V
    Jagendorf, A
    Zhu, JK
    [J]. CROP SCIENCE, 2005, 45 (02) : 437 - 448
  • [9] Rice can acclimate to lethal level of salinity by pretreatment with sublethal level of salinity through osmotic adjustment
    Djanaguiraman, M.
    Sheeba, J. Annie
    Shanker, Arun K.
    Devi, D. Durga
    Bangarusamy, U.
    [J]. PLANT AND SOIL, 2006, 284 (1-2) : 363 - 373
  • [10] Overexpression of PbrNHX2 gene, a Na+/H+ antiporter gene isolated from Pyres betulaefolia, confers enhanced tolerance to salt stress via modulating ROS levels
    Dong, Huizhen
    Wang, Chunmeng
    Xing, Caihua
    Yang, Tianyuan
    Yan, Jinxuan
    Gao, Junzhi
    Li, Dingli
    Wang, Ran
    Blumwald, Eduardo
    Zhang, Shaoling
    Huang, Xiaosan
    [J]. PLANT SCIENCE, 2019, 285 : 14 - 25