Drought Tolerance Strategies in Plants: A Mechanistic Approach

被引:0
作者
Muhammad Ilyas
Mohammad Nisar
Nadeem Khan
Ali Hazrat
Aamir Hamid Khan
Kashif Hayat
Shah Fahad
Aziz Khan
Abid Ullah
机构
[1] University of Malakand,Department of Botany
[2] Huazhong Agricultural University,National Key Laboratory of Crop Genetic Improvement
[3] Shanghai Jiao Tong University,Key Laboratory of Urban Agriculture, School of Agriculture and Biology
[4] University of Swabi,Department of Agriculture
[5] Guanxi University,Key Laboratory of Plant Genetic and Breeding, College of Agriculture
来源
Journal of Plant Growth Regulation | 2021年 / 40卷
关键词
Bacteria; Drought; Fungi; Phytohormones; Signaling pathways;
D O I
暂无
中图分类号
学科分类号
摘要
Anthropogenic activities in the past and present eras have created global warming and consequently a storm of drought stress, affecting both plants and animals. Being sessile, plants are more vulnerable to drought stress and consequently reduce plant growth and yield. To mitigate the effects of drought stress on plants, it is very crucial to determine the plant response mechanisms against drought stress. Drought response mechanism includes morph-physiological, biochemical, cellular and molecular processes takes place in plants underlying drought stress. These processes include improvement in root system, leaf structure, osmotic adjustment, relative water content and stomata regulation. In addition, calcium and phytohormone (Abscisic acid, Jasmonic acid, Salicylic acid, Auxins, Gibberellins, Ethylene etc.) signaling pathways and scavenging of reactive oxygen species are the key mechanisms to cope with drought stress. Moreover, microorganisms such as bacteria and fungi also have an important role in drought tolerance enhancement. To further elucidate and improve drought tolerance in plants, quantitative trait loci, transgenic approach and application of exogenous substances (nitric oxide, 24-epibrassinoide, glycine betaine and proline) are very crucial. Hereby, the present study integrates various mechanisms of drought tolerance in plants.
引用
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页码:926 / 944
页数:18
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