Department of Horticultural Sciences, University of Tabriz, Tabriz 51666, Iran.
Department of Biological Sciences, Florida A&M University, Tallahassee, FL 32307, USA.
Biomolecules. 2020 Jan 26;10(2):189. doi: 10.3390/biom10020189.
Salinity substantially affects plant growth and crop productivity worldwide. Plants adopt several biochemical mechanisms including regulation of antioxidant biosynthesis to protect themselves against the toxic effects induced by the stress. One-year-old pistachio rootstock exhibiting different degrees of salinity tolerance were subjected to sodium chloride induced stress to identify genetic diversity among cultivated pistachio rootstock for their antioxidant responses, and to determine the correlation of these enzymes to salinity stress. Leaves and roots were harvested following NaCl-induced stress. The results showed that a higher concentration of NaCl treatment induced oxidative stress in the leaf tissue and to a lesser extent in the roots. Both tissues showed an increase in ascorbate peroxidase, superoxide dismutase, catalase, glutathione reductase, peroxidase, and malondialdehyde. Responses of antioxidant enzymes were cultivar dependent, as well as temporal and dependent on the salinity level. Linear and quadratic regression model analysis revealed significant correlation of enzyme activities to salinity treatment in both tissues. The variation in salinity tolerance reflected their capabilities in orchestrating antioxidant enzymes at the roots and harmonized across the cell membranes of the leaves. This study provides a better understanding of root and leaf coordination in regulating the antioxidant enzymes to NaCl induced oxidative stress.
盐度会极大地影响全球植物的生长和作物的生产力。植物会采用多种生化机制来保护自己免受胁迫产生的毒性影响,包括调节抗氧化剂的生物合成。本研究将一年生的不同耐盐度巴旦木砧木进行氯化钠诱导胁迫,以鉴定栽培巴旦木砧木的抗氧化响应的遗传多样性,并确定这些酶与盐胁迫的相关性。在进行 NaCl 诱导胁迫后,采集叶片和根系。结果表明,较高浓度的 NaCl 处理在叶片组织中诱导氧化应激,而在根组织中诱导程度较低。叶片和根系中的抗坏血酸过氧化物酶、超氧化物歧化酶、过氧化氢酶、谷胱甘肽还原酶、过氧化物酶和丙二醛含量均增加。抗氧化酶的响应依赖于品种,也与时间和盐度水平有关。线性和二次回归模型分析表明,两种组织中的酶活性与盐处理均呈显著相关。耐盐性的变化反映了它们在协调根和叶片的抗氧化酶方面的能力,这种协调跨越了细胞膜。本研究更好地理解了根和叶在调节抗氧化酶以应对 NaCl 诱导的氧化应激方面的协调作用。