scholarly journals Introductory Chapter: Hormonal Regulation in Plant Development and Stress Tolerance

Author(s):  
Mohamed A. El‐Esawi
Molecules ◽  
2021 ◽  
Vol 26 (4) ◽  
pp. 782
Author(s):  
Joon-Yung Cha ◽  
Sang-Ho Kang ◽  
Myung Geun Ji ◽  
Gyeong-Im Shin ◽  
Song Yi Jeong ◽  
...  

Humic acid (HA) is a principal component of humic substances, which make up the complex organic matter that broadly exists in soil environments. HA promotes plant development as well as stress tolerance, however the precise molecular mechanism for these is little known. Here we conducted transcriptome analysis to elucidate the molecular mechanisms by which HA enhances salt stress tolerance. Gene Ontology Enrichment Analysis pointed to the involvement of diverse abiotic stress-related genes encoding HEAT-SHOCK PROTEINs and redox proteins, which were up-regulated by HA regardless of salt stress. Genes related to biotic stress and secondary metabolic process were mainly down-regulated by HA. In addition, HA up-regulated genes encoding transcription factors (TFs) involved in plant development as well as abiotic stress tolerance, and down-regulated TF genes involved in secondary metabolic processes. Our transcriptome information provided here provides molecular evidences and improves our understanding of how HA confers tolerance to salinity stress in plants.


Author(s):  
Munazza Ijaz ◽  
Roshina Shahzadi ◽  
Akmaral U. Issayeva ◽  
Shazia Anwer Bukhari ◽  
Mahmood-ur-Rahman


Author(s):  
Vaishali Yadav ◽  
Namira Arif ◽  
Vijay Pratap Singh ◽  
Rupesh Deshmukh ◽  
Shivendra Sahi ◽  
...  

2020 ◽  
Vol 11 ◽  
Author(s):  
Ahmed El Moukhtari ◽  
Cécile Cabassa-Hourton ◽  
Mohamed Farissi ◽  
Arnould Savouré

2010 ◽  
Vol 9 (1) ◽  
pp. 50-63 ◽  
Author(s):  
Marie Navarro ◽  
Céline Ayax ◽  
Yves Martinez ◽  
Joan Laur ◽  
Walid El Kayal ◽  
...  

2013 ◽  
Vol 150 ◽  
pp. 65-72 ◽  
Author(s):  
Deguo Han ◽  
Lei Wang ◽  
Yi Wang ◽  
Guohui Yang ◽  
Chao Gao ◽  
...  

Plant Science ◽  
2015 ◽  
Vol 240 ◽  
pp. 193-203 ◽  
Author(s):  
Mariana B. Badia ◽  
Cintia L. Arias ◽  
Marcos A. Tronconi ◽  
Verónica G. Maurino ◽  
Carlos S. Andreo ◽  
...  

Plants ◽  
2021 ◽  
Vol 10 (2) ◽  
pp. 259
Author(s):  
Mahmoud F. Seleiman ◽  
Nasser Al-Suhaibani ◽  
Nawab Ali ◽  
Mohammad Akmal ◽  
Majed Alotaibi ◽  
...  

Drought stress, being the inevitable factor that exists in various environments without recognizing borders and no clear warning thereby hampering plant biomass production, quality, and energy. It is the key important environmental stress that occurs due to temperature dynamics, light intensity, and low rainfall. Despite this, its cumulative, not obvious impact and multidimensional nature severely affects the plant morphological, physiological, biochemical and molecular attributes with adverse impact on photosynthetic capacity. Coping with water scarcity, plants evolve various complex resistance and adaptation mechanisms including physiological and biochemical responses, which differ with species level. The sophisticated adaptation mechanisms and regularity network that improves the water stress tolerance and adaptation in plants are briefly discussed. Growth pattern and structural dynamics, reduction in transpiration loss through altering stomatal conductance and distribution, leaf rolling, root to shoot ratio dynamics, root length increment, accumulation of compatible solutes, enhancement in transpiration efficiency, osmotic and hormonal regulation, and delayed senescence are the strategies that are adopted by plants under water deficit. Approaches for drought stress alleviations are breeding strategies, molecular and genomics perspectives with special emphasis on the omics technology alteration i.e., metabolomics, proteomics, genomics, transcriptomics, glyomics and phenomics that improve the stress tolerance in plants. For drought stress induction, seed priming, growth hormones, osmoprotectants, silicon (Si), selenium (Se) and potassium application are worth using under drought stress conditions in plants. In addition, drought adaptation through microbes, hydrogel, nanoparticles applications and metabolic engineering techniques that regulate the antioxidant enzymes activity for adaptation to drought stress in plants, enhancing plant tolerance through maintenance in cell homeostasis and ameliorates the adverse effects of water stress are of great potential in agriculture.


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