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首页> 外文期刊>Genetics and Molecular Research >Physiological analysis and transcriptome comparison of two muskmelon (Cucumis melo L.) cultivars in response to salt stress
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Physiological analysis and transcriptome comparison of two muskmelon (Cucumis melo L.) cultivars in response to salt stress

机译:两种麝香醇(Cucumis Melo L.)品种响应盐胁迫的生理分析及转录组比较

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Melon (Cucumis melo L.) is an important vegetable crop that ranks second in salt tolerance among the Cucurbitaceae. Previous studies on the two muskmelon cultivars ‘Bing XueCui’ (BXC) and ‘Yu Lu’ (YL) revealed that they had different characteristics under salt stress, but the molecular basis underlying their different physiological responses is unclear. Here, we combined a physiological study with a genome-wide transcriptome analysis to understand the molecular basis of genetic variation that responds to salt stress in the melon. BXC performed better under salt stress than YL in terms of biomass and photosynthetic characteristics, because it exhibited less reduction in transpiration rate, net photosynthesis rate, and stomatal conductance under 150-mM NaCl stress than YL. A transcriptome comparison of the leaves of the cultivars revealed that 1171 genes responded to salt stress in BXC while 1487 genes were identified as salt-stress-responsive in YL. A real-time polymerase chain reaction analysis of 12 of the responsive genes revealed that there was a strong, positive correlation with RNA sequencing data. The genes were involved in several pathways, including photosynthesis, the biosynthesis of secondary metabolites, metabolism, and plant hormone signal transduction, and their expression levels differed between the two cultivars in response to salt stress. This study provides a molecular perspective of two melon cultivars in response to salt stress, and its results could be used to investigate the complex molecular mechanisms underlying salt tolerance in the melon.
机译:甜瓜(Cucumis Melo L.)是一种重要的蔬菜作物,其在葫芦科之间的耐盐性排名第二。以前关于两只麝香蛋黄品种“Bing Xuecui”(BXC)和'yu Lu'(YL)的研究表明,它们在盐胁迫下具有不同的特征,但其不同的生理反应的分子基础尚不清楚。在这里,我们将生理学研究与基因组的转录组分析组合以了解遗传变异的分子基础,这些变异响应瓜中的盐胁迫。在生物质和光合特性方面,BXC在盐应激下比YL更好,因为它在150mm NaCl应力下的蒸腾速率,净光合速率和气孔电导下表现出较小。品种叶片的转录组比较显示,1171个基因在BXC中应对盐胁迫,而1487基因被鉴定为Y1中的盐胁迫响应。响应基因的12个实时聚合酶链反应分析显示出与RNA测序数据有很强的正相关性。该基因涉及几种途径,包括光合作用,次生代谢物,代谢和植物激素信号转导的生物合成,其表达水平不同于盐胁迫的两种品种之间不同。该研究提供了响应于盐胁迫的两种甜瓜品种的分子视角,其结果可用于研究甜瓜中耐盐耐受性的复杂分子机制。

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