Moving forward to understand the alteration of physiological mechanism by seed priming with different halo-agents under salt stress

被引:5
|
作者
Paul, Alivia [1 ,2 ]
Mondal, Subhankar [3 ,4 ]
Chakraborty, Koushik [3 ]
Biswas, Asok K. [1 ]
机构
[1] Univ Calcutta, Dept Bot, Plant Physiol & Biochem Lab, CAS, 35,Ballygunge Circular Rd, Kolkata 700019, India
[2] Univ Calcutta, Dept Bot, Cell Biol Lab, CAS, 35 Ballygunge Circular Rd, Kolkata 700019, India
[3] Natl Rice Res Inst, Crop Physiol & Biochem Div, ICAR, Cuttack 753006, Orissa, India
[4] Vani Vihar, Utkal Univ, Dept Bot, Bhubaneswar 751004, Orissa, India
关键词
Glycophyte; Halophyte; Optimization of crop performance; Salinity; Sodium accumulator; Sodium excluder; Tissue tolerance; NA+/H+ ANTIPORTER GENE; ATNHX5 IMPROVES TOLERANCE; ZEA-MAYS L; SALINITY TOLERANCE; TOMATO PLANTS; ENHANCES SALT; PENNISETUM-GLAUCUM; DROUGHT TOLERANCE; ION REGULATION; SODIUM UPTAKE;
D O I
10.1007/s11103-024-01425-0
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
Soil salinity hampers the survival and productivity of crops. To minimize salt-associated damages in plant, better salt management practices in agriculture have become a prerequisite. Seed priming with different halo-agents is a technique, which improves the primed plant's endurance to tackle sodium. Salt tolerance is achieved in tolerant plants through fundamental physiological mechanisms- ion-exclusion and tissue tolerance, and salt-tolerant plants may (Na+ accumulators) or may not (Na+ excluders) allow sodium movement to leaves. While Na+ excluders depend on ion exclusion in roots, Na+ accumulators are proficient Na+ managers that can compartmentalize Na+ in leaves and use them beneficially as inexpensive osmoticum. Salt-sensitive plants are Na+ accumulators, but their inherent tissue tolerance ability and ion-exclusion process are insufficient for tolerance. Seed priming with different halo-agents aids in 'rewiring' of the salt tolerance mechanisms of plants. The resetting of the salt tolerance mechanism is not universal for every halo-agent and might vary with halo-agents. Here, we review the physiological mechanisms that different halo-agents target to confer enhanced salt tolerance in primed plants. Calcium and potassium-specific halo-agents trigger Na+ exclusion in roots, thus ensuring a low amount of Na+ in leaves. In contrast, Na+-specific priming agents favour processes for Na+ inclusion in leaves, improve plant tissue tolerance or vacuolar sequestration, and provide the greatest benefit to salt-sensitive and sodium accumulating plants. Overall, this review will help to understand the underlying mechanism behind plant's inherent nature towards salt management and its amelioration with different halo-agents, which helps to optimize crop stress performance. Understanding plants' inherent response towards the ion- Na+ and selection of priming agents, both are complementary for optimization of crop performance under stress.
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页数:19
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