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首页> 外文期刊>Journal of pineal research >Exogenous melatonin improved potassium content in Malus under different stress conditions
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Exogenous melatonin improved potassium content in Malus under different stress conditions

机译:外源褪黑素提高了不同胁迫条件下海棠中钾的含量

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Melatonin mediates many physiological processes in plants. We investigated its role in regulating growth, potassium uptake, and root system architecture under three types of stress: salinity or a deficiency of all nutrients in Malus hupehensis Rehd., as well as a K deficiency in Malus rockii Rehd. Each treatment caused a reduction in growth rates and disrupted the absorption of potassium. However, pretreatment with 0.1mmol/L melatonin significantly alleviated such inhibitions. The addition of melatonin also upregulated genes for antioxidant enzymes involved in the ascorbate-glutathione cycle (MdcAPX, MdDHAR1, MdDHAR2, MdMDHAR, and MdcGR) and helped decrease the accumulation of H2O2 while improving the expression of K transporters and genes for the CBL1-CIPK23 pathway. These results indicated that melatonin can regulate the ROS signal and activate the CBL1-CIPK23 pathway to regulate the expression of a potassium channel protein gene, thereby promoting the absorption of potassium ions. Our findings demonstrate that inducing melatonin production is an important mechanism for plant defenses that can serve as a platform for possible applications in agricultural or related fields of research.
机译:褪黑激素介导植物中的许多生理过程。我们研究了其在三种胁迫类型下对调节生长,钾吸收和根系结构的作用:盐度或所有营养成分在海棠属中的缺乏,以及在海棠中缺乏钾。每种处理都会导致生长速率降低并破坏钾的吸收。但是,用0.1mmol / L褪黑素预处理可显着减轻此类抑制作用。褪黑激素的添加还上调了抗坏血酸-谷胱甘肽循环中涉及的抗氧化酶的基因(MdcAPX,MdDHAR1,MdDHAR2,MdMDHAR和MdcGR),并有助于减少H2O2的积累,同时改善K转运蛋白的表达和CBL1-CIPK23的基因。途径。这些结果表明褪黑激素可以调节ROS信号并激活CBL1-CIPK23途径以调节钾通道蛋白基因的表达,从而促进钾离子的吸收。我们的发现表明,褪黑激素的产生是植物防御的重要机制,可以作为在农业或相关研究领域中可能应用的平台。

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