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Physiological and biochemical characterization of rootlets response to salt stress in two Medicago truncatula Gaertn. ecotypes

机译:两种苜蓿t藜根茎对盐胁迫的响应的生理生化特性。生态型

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Legumes are very important plants both ecologically and agriculturally because they are able to interact symbiotically with rhizobia for biological nitrogen fixation and soil fertilization. Medicago truncatula Gaertn. is an important model legume rich in protein. Salinity represents, today, the major cause of land degradation and crop productivity limitation around the world and affects physiology and metabolism in legumes. In this study, we analyzed the physiological and biochemical responses of rootlets in two contrasting ecotypes of Medicago truncatula (Tru 131, tolerant and Jemalong, sensitive) to different level of NaCl, (68, 102 and 137 mM). Results showed that the tolerant ecotype has a lower water potential than Jemalong. Root protein content of Tru 131 was decreased than Jemalong, this can be explained by accumulation of protein oxidation in the sensitive genotype. Moreover, NaCl increased guaiacol peroxidase activity GPX in rootlets of Tru 131, this enzyme has a protective role against the molecules ROS accumulated during oxidative stress. On the other hand, under salt stress the total content of ascorbate (ASC + DHA) and Glutathione (GSH + GSSG) was increased in the tolerant genotype Tru 131 compared to Jemalong. These results show how the tolerant genotype activate the antioxidative defense system at root level against damages caused by oxidative stress under salinity.
机译:豆科植物在生态和农业上都是非常重要的植物,因为它们能够与根瘤菌共生相互作用,以进行生物固氮和土壤肥力。紫花苜蓿Gaertn。是豆类中富含蛋白质的重要​​模型。今天,盐度是世界范围内土地退化和农作物生产力受限的主要原因,并影响豆类的生理和新陈代谢。在这项研究中,我们分析了两种截然不同的生态型紫花苜蓿(Tru 131,耐性和Jemalong,敏感)对不同水平的NaCl(68、102和137 mM)的生理和生化响应。结果表明,耐生态型的水势比吉马隆的低。 Tru 131的根蛋白质含量比Jemalong降低,这可以用敏感基因型中蛋白质氧化的积累来解释。此外,NaCl增加了Tru 131根中的愈创木酚过氧化物酶活性GPX,该酶对氧化应激期间积累的分子ROS具有保护作用。另一方面,在耐盐基因型Tru 131中,在盐胁迫下,抗坏血酸盐(ASC + DHA)和谷胱甘肽(GSH + GSSG)的总含量比Jemalong增加。这些结果表明,耐性基因型如何在根水平上激活抗氧化防御系统,以抵抗盐分下由氧化应激引起的损害。

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