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Identification of physiological and biochemical markers for salt (NaCl) stress in the seedlings of mungbean Vigna radiata (L.) Wilczek genotypes

机译:绿豆Vigna radiata(L.)Wilczek基因型幼苗中盐(NaCl)胁迫的生理生化指标的鉴定

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摘要

Salt stress, which is dominant among environmental stresses, poses challenges to global agriculture. We studied the role of exogenous application of sodium chloride (NaCl) in three arid and three semi-arid genotypes of mungbean [Vigna radiata (L.) Wilczek] by examining some physiological and biochemical stress indicators. Ten-day old seedlings were subjected to salt stress (00–250 mM) by split application along with the half strength Hoagland’s medium. The salt stress caused a decline in the fresh weight, dry weight, relative water content, photosynthetic pigments (chlorophyll and carotenoids) and glutathione content of the seedlings. On the other hand, it increased the electrolyte leakage, lipoxygenase activity, and the proline, protein and total soluble sugar contents. Osmolyte accumulation was relatively higher in the arid genotypes revealing that they are more tolerant to NaCl stress. The physiological and biochemical screening provides a basic platform for selecting the stress-tolerant genotypes in the absence of suitable salt-tolerance markers in mungbean.
机译:在环境压力中占主导地位的盐胁迫对全球农业构成挑战。通过研究一些生理和生化胁迫指标,我们研究了氯化钠(NaCl)在三种干旱和三种半干旱基因型绿豆[Vigna radiata(L.)Wilczek]中的外源作用。将10天大的幼苗与半强度的Hoagland培养基分开施用,使其承受盐胁迫(00–250 mM)。盐胁迫导致幼苗的鲜重,干重,相对含水量,光合色素(叶绿素和类胡萝卜素)和谷胱甘肽含量下降。另一方面,它增加了电解质的泄漏,脂氧合酶的活性以及脯氨酸,蛋白质和总可溶性糖的含量。在干旱基因型中,渗透液的积累相对较高,这表明它们更耐NaCl胁迫。生理和生化筛选为在绿豆中缺乏合适的耐盐标记的情况下选择耐逆基因型提供了基础平台。

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