Comparative physiological and transcriptomic analyses provide integrated insight into osmotic, cold, and salt stress tolerance mechanisms in banana

被引:41
|
作者
Hu, Wei [1 ]
Ding, Zehong [1 ]
Tie, Weiwei [1 ]
Yan, Yan [1 ]
Liu, Yang [1 ]
Wu, Chunlai [1 ]
Liu, Juhua [1 ]
Wang, Jiashui [2 ]
Peng, Ming [1 ]
Xu, Biyu [1 ]
Jin, Zhiqiang [1 ,2 ]
机构
[1] Chinese Acad Trop Agr Sci, Inst Trop Biosci & Biotechnol, Key Lab Biol & Genet Resources Trop Crops, Xueyuan Rd 4, Haikou 571101, Hainan Province, Peoples R China
[2] Chinese Acad Trop Agr Sci, Haikou Expt Stn, Hainan Key Lab Banana Genet Improvement, Yilong Rd 2, Haikou 570102, Hainan Province, Peoples R China
来源
SCIENTIFIC REPORTS | 2017年 / 7卷
关键词
GENOME-WIDE IDENTIFICATION; E3 UBIQUITIN LIGASES; DROUGHT STRESS; GENE-EXPRESSION; ABIOTIC STRESS; AQUAPORIN GENE; DISEASE RESISTANCE; ENHANCES DROUGHT; SALINITY STRESS; NADPH OXIDASE;
D O I
10.1038/srep43007
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The growth, development, and production of banana plants are constrained by multiple abiotic stressors. However, it remains elusive for the tolerance mechanisms of banana responding to multiple abiotic stresses. In this study, we found that Fen Jiao (FJ) was more tolerant to osmotic, cold, and salt stresses than BaXi Jiao (BX) by phenotypic and physiological analyses. Comparative transcriptomic analyses highlighted stress tolerance genes that either specifically regulated in FJ or changed more than twofold in FJ relative to BX after treatments. In total, 933, 1644, and 133 stress tolerance genes were identified after osmotic, cold, and salt treatments, respectively. Further integrated analyses found that 30 tolerance genes, including transcription factor, heat shock protein, and E3 ubiquitin protein ligase, could be commonly regulated by osmotic, cold, and salt stresses. Finally, ABA and ROS signaling networks were found to be more active in FJ than in BX under osmotic, cold, and salt treatments, which may contribute to the strong stress tolerances of FJ. Together, this study provides new insights into the tolerance mechanism of banana responding to multiple stresses, thus leading to potential applications in the genetic improvement of multiple abiotic stress tolerances in banana.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Comparative physiological and transcriptomic analyses provide induction resistance mechanisms of Bacillus tequilensis against Colletotrichum fructicola in Camellia oleifera
    Zhou, Aiting
    Tang, Junrong
    Du, Qianjie
    Deng, Jia
    Wu, Jianrong
    Ma, Huancheng
    Wang, Fang
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2024, 214
  • [42] Responses to Salt Stress in Portulaca: Insight into Its Tolerance Mechanisms
    Borsai, Orsolya
    Al Hassan, Mohamad
    Negrusier, Cornel
    Raigon, M. Dolores
    Boscaiu, Monica
    Sestras, Radu E.
    Vicente, Oscar
    PLANTS-BASEL, 2020, 9 (12): : 1 - 24
  • [43] Comparative Physiological and Transcriptomic Analyses Reveal Mechanisms of Exogenous Spermidine-Induced Tolerance to Low-Iron Stress in Solanum lycopersicum L
    Shi, Yu
    Zhao, Yihong
    Yao, Qi
    Liu, Feng
    Li, Xiumin
    Jin, Xiu
    Zhang, Yi
    Ahammed, Golam Jalal
    ANTIOXIDANTS, 2022, 11 (07)
  • [44] Physiological, ionomic, transcriptomic and metabolomic analyses reveal molecular mechanisms of root adaption to salt stress in water spinach
    Li, Zhenqin
    Cheng, Long
    Li, Sitong
    Liu, Guangcai
    Liu, Sijia
    Xu, Duo
    Yang, Rongchao
    Feng, Feng
    Wang, Junning
    Zheng, Chao
    BMC GENOMICS, 2025, 26 (01):
  • [45] Integrated analysis of transcriptomic and physiological responses to cold stress in Macrobrachium rosenbergii
    Yu, Jiongying
    Yi, Shaokui
    Yang, Guoliang
    Wang, Weimin
    AQUACULTURE REPORTS, 2024, 36
  • [46] Insight into Physiological and Biochemical Determinants of Salt Stress Tolerance in Tetraploid Citrus
    Bonnin, Marie
    Favreau, Benedicte
    Soriano, Alexandre
    Leonhardt, Nathalie
    Oustric, Julie
    Lourkisti, Radia
    Ollitrault, Patrick
    Morillon, Raphael
    Berti, Liliane
    Santini, Jeremie
    ANTIOXIDANTS, 2023, 12 (08)
  • [47] Transcriptome analyses provide the first insight into the molecular basis of cold tolerance in Larimichthys polyactis
    Liu, Feng
    Chu, Tianqi
    Wang, Mengjie
    Zhan, Wei
    Xie, Qingping
    Lou, Bao
    JOURNAL OF COMPARATIVE PHYSIOLOGY B-BIOCHEMICAL SYSTEMS AND ENVIRONMENTAL PHYSIOLOGY, 2020, 190 (01): : 27 - 34
  • [48] Transcriptome analyses provide the first insight into the molecular basis of cold tolerance in Larimichthys polyactis
    Feng Liu
    Tianqi Chu
    Mengjie Wang
    Wei Zhan
    Qingping Xie
    Bao Lou
    Journal of Comparative Physiology B, 2020, 190 : 27 - 34
  • [49] Comparative transcriptomic analyses of diploid and tetraploid citrus reveal how ploidy level influences salt stress tolerance
    Bonnin, Marie
    Soriano, Alexandre
    Favreau, Benedicte
    Lourkisti, Radia
    Miranda, Maeva
    Ollitrault, Patrick
    Oustric, Julie
    Berti, Liliane
    Santini, Jeremie
    Morillon, Raphael
    FRONTIERS IN PLANT SCIENCE, 2024, 15
  • [50] Physiological and transcriptomic analyses reveal the molecular mechanism of PsAMT1.2 in salt tolerance
    Zhuang, Shuaijun
    Yu, Zhaoyou
    Li, Jiayuan
    Wang, Fan
    Zhang, Chunxia
    TREE PHYSIOLOGY, 2024, 44 (10)