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首页> 外文期刊>Journal of plant interactions >Penconazole alleviates salt-induced damage in safflower ( Carthamus tinctorius L.) plants
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Penconazole alleviates salt-induced damage in safflower ( Carthamus tinctorius L.) plants

机译:潘尼尼唑可缓解盐致抗红花(Carthamus Tinctorius L.)植物造成的盐损伤

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It has been shown that penconazole (PEN) acts as an endogenous signal molecule responsible for inducing stress tolerance in plants. The effect of PEN (15?mg?l –1 ) and sodium chloride (0, 100, and 200 mM NaCl) on some biochemical and molecular responses of safflower was studied. Results revealed that chlorophylls and total soluble protein contents decreased under salinity, however total carotenoid, anthocyanin, flavonoid, and carbohydrate contents increased as well as SOS1 and NHX1 genes expression. The exogenous PEN had a positive effect on chlorophylls, carotenoid, anthocyanin, flavonoid, soluble protein and carbohydrate contents. In addition, RT-qPCR analysis showed that the exogenous PEN induced expression of SOS1 and NHX1 genes in both salt-treated and untreated plants. Our data indicate that PEN helps safflower plants to better cope with salt stress. The results can provide new insights to better realizing the responsible mechanisms to regulate salinity resistance in safflower. PEN can be considered in order to ameliorate salinity effects, due to the low price and their availability.
机译:已经表明,潘尼尼唑(PEN)充当内源性信号分子,其负责诱导植物中应激耐受性。研究了笔(15?Mg?L -1)和氯化钠(0,100和200mM NaCl)对红花的一些生化和分子反应的影响。结果显示,盐度下叶绿素和总可溶性蛋白质含量下降,但总类胡萝卜素,花青素,黄酮和碳水化合物含量增加以及SOS1和NHX1基因表达。外源笔对叶绿素,类胡萝卜素,花青素,黄酮,可溶性蛋白质和碳水化合物内容物具有积极影响。此外,RT-QPCR分析表明,外源笔诱导SOS1和NHX1基因在盐处理和未处理的植物中的表达。我们的数据表明,笔有助于红花植物更好地应对盐胁迫。结果可以为更好地实现负责机制来调节红花中的盐度阻力的新见解。由于价格低廉,可以考虑钢笔以改善盐度效应。

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