Progress of Research on the Physiology and Molecular Regulation of Sorghum Growth under Salt Stress by Gibberellin

被引:27
|
作者
Liu, Jiao [1 ,2 ]
Wu, Yanqing [1 ,2 ]
Dong, Guichun [1 ,2 ]
Zhu, Guanglong [1 ,2 ]
Zhou, Guisheng [1 ,2 ]
机构
[1] Yangzhou Univ, Joint Int Res Lab Agr & Agriprod Safety, Minist Educ China, Yangzhou 225009, Peoples R China
[2] Yangzhou Univ, Jiangsu Prov Key Lab Crop Genet & Physiol, Yangzhou 225009, Peoples R China
关键词
gibberellin; salt stress; sorghum; morphological indicators; physiological traits; WHEAT TRITICUM-AESTIVUM; GENOME-WIDE ANALYSIS; DNA METHYLATION; DROUGHT TOLERANCE; SEED-GERMINATION; PLASMA-MEMBRANE; HIGH-SALINITY; PLANT-GROWTH; GENE; RESPONSES;
D O I
10.3390/ijms24076777
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Plant growth often encounters diverse abiotic stresses. As a global resource-based ecological problem, salinity is widely distributed and one of the major abiotic stresses affecting crop yields worldwide. Sorghum, a cereal crop with medium salt tolerance and great value for the development and utilization of salted soils, is an important source of food, brewing, energy, and forage production. However, in soils with high salt concentrations, sorghum experiences low emergence and suppressed metabolism. It has been demonstrated that the effects of salt stress on germination and seedling growth can be effectively mitigated to a certain extent by the exogenous amendment of hormonal gibberellin (GA). At present, most of the studies on sorghum salt tolerance at home and abroad focus on morphological and physiological levels, including the transcriptome analysis of the exogenous hormone on sorghum salt stress tolerance, the salt tolerance metabolism pathway, and the mining of key salt tolerance regulation genes. The high-throughput sequencing technology is increasingly widely used in the study of crop resistance, which is of great significance to the study of plant resistance gene excavation and mechanism. In this study, we aimed to review the effects of the exogenous hormone GA on leaf morphological traits of sorghum seedlings and further analyze the physiological response of sorghum seedling leaves and the regulation of sorghum growth and development. This review not only focuses on the role of GA but also explores the signal transduction pathways of GA and the performance of their responsive genes under salt stress, thus helping to further clarify the mechanism of regulating growth and production under salt stress. This will serve as a reference for the molecular discovery of key genes related to salt stress and the development of new sorghum varieties.
引用
收藏
页数:26
相关论文
共 50 条
  • [41] Proteome dynamics and transcriptome profiling in sorghum [Sorghum bicolor (L.) Moench] under salt stress
    Himani Punia
    Jayanti Tokas
    Surina Bhadu
    Ashok K. Mohanty
    Preeti Rawat
    Anurag Malik
    3 Biotech, 2020, 10
  • [42] Progress in Understanding the Physiological and Molecular Responses of Populus to Salt Stress
    Zhang, Xiaoning
    Liu, Lijun
    Chen, Bowen
    Qin, Zihai
    Xiao, Yufei
    Zhang, Ye
    Yao, Ruiling
    Liu, Hailong
    Yang, Hong
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2019, 20 (06):
  • [43] Physiology and gene expression of the rice landrace Horkuch under salt stress
    Lisa, Laisa A.
    Elias, Sabrina M.
    Rahman, M. Sazzadur
    Shahid, Saima
    Iwasaki, Tetsushi
    Hasan, A. K. M. Mahbub
    Kosuge, Keiko
    Fukami, Yasuo
    Seraj, Zeba I.
    FUNCTIONAL PLANT BIOLOGY, 2011, 38 (04) : 282 - 292
  • [44] Physiology and production components of cowpea under salt stress and chitosan application
    Borborema, Lucyelly D. A.
    da Silva, Andre A. R.
    de Lima, Geovani S.
    Gheyi, Hans R.
    Arruda, Thiago F. de L.
    Nunes, Kheila G.
    Costa, Denis S.
    de Souza, Allesson R.
    Caetano, Edmilson J. M.
    de Sousa, Vitoria D.
    REVISTA BRASILEIRA DE ENGENHARIA AGRICOLA E AMBIENTAL, 2024, 29 (04):
  • [45] Growth, physiology, and transcriptional analysis of Two contrasting Carex rigescens genotypes under Salt stress reveals salt-tolerance mechanisms
    Li, Mingna
    Zhang, Kun
    Sun, Yan
    Cui, Huiting
    Cao, Shihao
    Yan, Li
    Xu, Mengxin
    JOURNAL OF PLANT PHYSIOLOGY, 2018, 229 : 77 - 88
  • [46] GROWTH AND DRYMATTER PARTITIONING OF SORGHUM UNDER MOISTURE STRESS CONDITION
    RAMU, SV
    PALANIAPPAN, S
    PANCHANATHAN, R
    JOURNAL OF AGRONOMY AND CROP SCIENCE-ZEITSCHRIFT FUR ACKER UND PFLANZENBAU, 1991, 166 (04): : 273 - 277
  • [47] Role of some rhizospheric Pseudomonas on the growth and physiology of broad bean (Vida faba) under salt stress conditions
    Idder, Boubaker
    Djibaoui, Rachid
    Yssaad, Hocine Abdelhakim Reguieg
    Djoudi, Abdelhak
    ACTA AGROBOTANICA, 2019, 72 (04)
  • [48] Dynamic and adaptive membrane lipid remodeling in leaves of sorghum under salt stress
    Ge, Shengnan
    Liu, Debin
    Chu, Min
    Liu, Xinyu
    Wei, Yulei
    Che, Xinyang
    Zhu, Lei
    He, Lin
    Xu, Jingyu
    CROP JOURNAL, 2022, 10 (06): : 1557 - 1569
  • [49] Responses in polyamine titer under osmotic and salt stress in sorghum and maize seedlings
    Erdei, L
    Szegletes, Z
    Barabas, K
    Pestenacz, A
    JOURNAL OF PLANT PHYSIOLOGY, 1996, 147 (05) : 599 - 603
  • [50] Agronomic performance of sorghum crop under salt stress in soil with plant mulch
    Oliveira, Girna dos S.
    de Sousa, Geocleber G.
    Viana, Thales V. de A.
    Pereira, Maria J. L.
    Leite, Kelly N.
    de Sousa, Leonardo V.
    Mendonca, Andreza de M.
    Santos, Samuel de O.
    REVISTA CAATINGA, 2024, 37