Alireza Reisizadeh, Mohammadreza Amerian, Ahmad Gholami
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引用次数: 0
摘要
为了研究盐胁迫条件下卤代藜科植物对施用水杨酸和亚精胺的生长和生理反应,2019 年在胡齐斯坦省乔费尔地区的田间和温室条件下进行了两项实验。研究结果表明,盐度显著增加了根膜电解质的渗漏,同时减少了根的体积和相对含水量。据观察,最严重的盐度胁迫(24 dS/m)导致膜电解质渗漏最高,根系体积和相对含水量最低。此外,盐度升高导致超氧化物歧化酶、过氧化氢酶和过氧化物酶等抗氧化剂活性显著上升。另一方面,使用水杨酸和亚精胺进行处理可增强藜麦植物的抗应激能力,从而有效缓解盐胁迫对其造成的负面影响。具体来说,施用 1.5 mM 的水杨酸和亚精胺后,相对含水量和根系体积增加,SOD、CAT、POX 和脯氨酸等抗氧化酶的活性增强。这种处理还降低了离子渗漏和过氧化氢水平。本研究的结果表明,施用水杨酸和亚精胺对藜麦植物减轻盐胁迫负面影响的能力有积极影响。
Effect of Spermidine and Salicylic Acid Application on the Morphological and Physiological Characteristics of Quinoa (Chenopodium quinoa) Under Salt Stress Conditions
To investigate the growth and physiological response of the halophyte quinoa plant to the application of salicylic acid and spermidine under salt stress conditions, two experiments were conducted under field and greenhouse conditions in the Jofair region of Khuzestan province in 2019. The findings indicated that salinity significantly increased root membrane electrolyte leakage while reducing root volume and relative water content. It was observed that the most severe salinity stress (24 dS/m) resulted in the highest membrane electrolyte leakage and lowest root volume and relative water content. Additionally, salinity escalation led to a notable rise in antioxidant activity, including superoxide dismutase, catalase, and peroxidase. On the other hand, treatments involving salicylic acid and spermidine effectively alleviated the negative consequences of salinity stress on the Quinoa plant by enhancing its anti-stress capabilities. Specifically, the application of 1.5 mM of salicylic acid and spermidine exhibited increased relative water content and root volume, as well as enhanced antioxidant enzymes such as SOD, CAT, POX, and proline. This treatment also reduced ion leakage and hydrogen peroxide levels. The findings of the present study suggest that the applied salicylic acid and spermidine positively impacted the Quinoa plant's ability to alleviate the negative effects of salinity stress.
期刊介绍:
The main objective of this initiative is to promote agricultural research and development. The journal will publish high quality original research papers and critical reviews on emerging fields and concepts for providing future directions. The publications will include both applied and basic research covering the following disciplines of agricultural sciences: Genetic resources, genetics and breeding, biotechnology, physiology, biochemistry, management of biotic and abiotic stresses, and nutrition of field crops, horticultural crops, livestock and fishes; agricultural meteorology, environmental sciences, forestry and agro forestry, agronomy, soils and soil management, microbiology, water management, agricultural engineering and technology, agricultural policy, agricultural economics, food nutrition, agricultural statistics, and extension research; impact of climate change and the emerging technologies on agriculture, and the role of agricultural research and innovation for development.