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Growth enhancement and salt tolerance of Safflower ( Carthamus tinctorius L.), by salicylic acid

机译:水杨酸对红花(红花(Carthhamus tinctorius L.))的生长增强和耐盐性

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It has been shown that salicylic acid acts as an endogenous signal molecule responsible for inducing stress tolerance in plants. The effect of SA (1?mM) and sodium chloride (0, 100, and 200?mM NaCl) on some biochemical and molecular responses of safflower plants was studied. Plants were harvested randomly at 21?days after the start of treatments. Results revealed that chlorophyll and total soluble protein contents decreased under salinity, however proline, glycine betaine, carbohydrate, total carotenoids, flavonoid, and anthocyanin contents, as well as PAL gene expression increased. The exogenous SA improved the response of safflower to salinity by increasing glycine betaine, total soluble protein, carbohydrates, chlorophylls, carotenoids, flavonoid, and anthocyanin contents. In addition, qRT-PCR analysis showed that exogenous SA induced expression of PAL gene in both salt-treated and untreated plants. Moreover, SA application under saline conditions decreased the levels of proline which could indicate successful acclimatization of these plants to saline conditions. Our data suggested that the exogenous SA played a key role in stress condition through regulation of osmotic adjustment and antioxidant system due to some compounds. These results provide novel insights about the physiological and molecular role of SA in salt resistance. Therefore, this component can be considered due to low price and availability.
机译:已经显示水杨酸作为负责诱导植物胁迫耐受性的内源性信号分子。研究了SA(1?mM)和氯化钠(0、100和200?mM NaCl)对红花植物某些生化和分子响应的影响。开始处理后21天随机收获植物。结果显示,盐度下叶绿素和总可溶性蛋白含量降低,但是脯氨酸,甘氨酸甜菜碱,碳水化合物,总类胡萝卜素,类黄酮和花色苷含量以及PAL基因表达增加。外源SA通过增加甘氨酸甜菜碱,总可溶性蛋白,碳水化合物,叶绿素,类胡萝卜素,类黄酮和花色苷含量,改善了红花对盐分的响应。此外,qRT-PCR分析表明,外源SA诱导了盐处理和未处理植物中PAL基因的表达。而且,在盐条件下施用SA降低了脯氨酸的水平,这可能表明这些植物成功地适应了盐条件。我们的数据表明,由于某些化合物,外源性SA通过调节渗透调节和抗氧化系统在应激条件中起关键作用。这些结果提供了有关SA在抗盐性中的生理和分子作用的新见解。因此,由于价格低和可用性低,可以考虑使用此组件。

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