Fascinating Dynamics of Silicon in alleviation of heat stress Induced oxidative damage in plants

被引:0
|
作者
Ranjeet R. Kumar
Gyanendra K. Rai
Suneetha Kota
Archana Watts
Akshay Sakhare
Sudhir Kumar
Suneha Goswami
Neelesh Kapoor
Prashant Babu
Gyan P. Mishra
Soora Naresh Kumar
Viswanathan Chinnusamy
Shelly Praveen
机构
[1] Indian Agricultural Research Institute,Division of Biochemistry
[2] Indian Agricultural Research Institute,Division of Plant Physiology
[3] Indian Agricultural Research Institute,Division of Genetics
[4] CESCRA,undefined
[5] Indian Agricultural Research Institute,undefined
[6] Sher-e-Kashmir University of Agricultural Sciences and Technology of Jammu,undefined
[7] Indian Institute of Rice Research,undefined
[8] Sardar Vallabhbhai Patel University of Agriculture & Technology,undefined
来源
Plant Growth Regulation | 2023年 / 100卷
关键词
Si; Heat stress; Signalling cascade; Thermotolerance; Transporters; SAPs; SAGs; Phytohormones;
D O I
暂无
中图分类号
学科分类号
摘要
Si is one of the major elements needed by plants in order to cope with adverse environmental conditions, and is considered a quasi-beneficial element. Si is involved in root growth and differentiation, transportation of other elements, carbon assimilation, activities of key enzymes, chelation of toxic elements, regulation of redox system, distribution of photosynthates, modulation of tolerance and stabilization of grain quantity and quality under stress. Stressed plants, however, seem to benefit more from Si. Si has been reported to trigger the function of various signalling cascade like mitogen-activated protein kinases (MAPKs), calcium-dependent protein kinases (CDPKs), Reactive oxygen species (ROS), antioxidant, antioxidant enzyme network and phytohormones signalling under adverse conditions. It has indirect effect on the expression of stress-responsive TFs and stress-associated genes and proteins like heat shock proteins (HSPs) which is involved in modulating the tolerance of the plant under stress. Additionally, it regulates the function of various transporters, including ATP-binding cassette (ABC) transporters that are believed to be involved in stabilizing lipid distribution in cell membranes under heat stress (HS), as well as regulating carbohydrate, protein, and lipid accumulation in grains. In-depth characterization has been possible with the advent of technology, and Si has been reported to involve in flowering, pollen tube growth, and fertilization. Large number of Si-responsive transcripts has been identified through transcriptomic approach. In plants treated with Si, high nutrient density has been observed in the grains. In the present scenario, there is a need for developing Si-based technology to enhance plant tolerance against HS without compromising grain quality. In the near future, this cheap and environment friendly technology will pave the way for mitigating the effects of stress in crops.
引用
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页码:321 / 335
页数:14
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