Comparative Study of Cis- and Trans-Priming Effect of PEG and BABA in Cowpea Seedlings on Exposure to PEG-Induced Osmotic Stress

E. Soltani, K. Aswathi, A. Sen, J. T. Puthur
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引用次数: 1

Abstract

The growth and performance of cowpea seedlings are negatively impacted by climate change and the subsequent occurrence of drought stress. Osmotic stress leads to the formation of reactive oxygen species, causing membrane breakdown, and impairs metabolic activities. The harmful effects of osmotic stress can be reduced by using seed priming techniques. Seeds of cowpea var. Anaswara were treated with polyethylene glycol (PEG) and β-amino butyric acid (BABA) as priming agents. The seedlings emerged from the primed seeds have been found to reduce the lipid peroxidation rates and improve plant water status by accumulating osmolytes such as proline, total free aminoacids, and total soluble sugars, and also enhanced the production of non-enzymatic antioxidants such as total phenolics, ascorbate, and glutathione, as well as increased the activities of enzymatic antioxidants such as catalase, peroxidase, and superoxide dismutase, which effectively scavenge ROS and maintain the homeostasis of the cell. PEG priming (cis-priming) and BABA priming (trans-priming) exhibited differential physiochemical responses in cowpea subjected to PEG stress. The current work investigates the extent of stress tolerance acquired through seed priming, and it will help to make a sensitive variety to a more tolerant one. Physiochemical responses of seedlings emerged from BABA-primed seeds towards PEG stress were better regulated to encounter the PEG-induced osmotic stress than the seedlings emerged from PEG-primed seeds.
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PEG和BABA在豇豆幼苗中对PEG诱导的渗透胁迫顺式和反式启动效应的比较研究
气候变化和随后发生的干旱胁迫对豇豆幼苗的生长和性能产生负面影响。渗透胁迫导致活性氧的形成,导致膜破裂,并损害代谢活动。利用种子引种技术可以减少渗透胁迫的有害影响。以聚乙二醇(PEG)和β-氨基丁酸(BABA)为引物,对豇豆品种Anaswara种子进行了处理。通过积累脯氨酸、总游离氨基酸和总可溶性糖等渗透性物质,研究人员发现,从引种种子中生长出来的幼苗降低了脂质过氧化率,改善了植物水分状况,还增加了总酚类、抗坏血酸和谷胱甘肽等非酶促抗氧化剂的产生,并增加了过氧化氢酶、过氧化物酶和超氧化物歧化酶等酶促抗氧化剂的活性。能有效清除活性氧,维持细胞内稳态。PEG启动(顺式启动)和BABA启动(反式启动)在PEG胁迫下表现出不同的理化反应。目前的工作是研究通过种子激发获得的抗逆性程度,这将有助于将敏感品种培育成更耐受性的品种。与PEG诱导的渗透胁迫相比,baba -引物种子对PEG胁迫的生理化学反应受到更好的调控。
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