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Effect of heat stress on the ionomic profile of Nicotiana langsdorffii wild-type and mutant genotypes

机译:热应激对兰氏烟草野生型和突变型基因型的生物学特性的影响

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摘要

Possible changes in the ionome of Nicotiana langsdorffii wild-type and transgenic specimens following heat stress have been explored, considering both variations in the total concentration of 28 major and trace elements and their root/aerial part partitioning. In order to reveal the statistically significant effects, the natural variability was evaluated by the analysis of 10 individual specimens for each genotype. It was found that heat stress affects the plant ionome in a complex way, depending on the element and the genetic modification. A significant decrease in the total concentration was observed for several elements (e.g. Fe and Zn), whereas fewer elements (e.g. Ca and Mg) showed the opposite trend. The heat stress also affected the elemental distribution within the plants, determining accumulation in roots (e.g. Mo, P and Zn in transgenic plants) or in the aerial part (e.g. K) and indicating an altered efficiency of ion transport or uptake processes, respectively. Finally, analytical data for the heat stress were merged with those previously obtained for chemical and water stresses and analysed by multivariate analysis, making it possible to display the different ionomic signatures of each stress and suggest suitable indicators for plant biomonitoring studies.
机译:考虑到28种主要元素和微量元素的总浓度变化及其根/空气部分分配,研究了热胁迫后langosdorffii野生型和转基因标本的离子组的可能变化。为了揭示统计学上的显着影响,通过分析每种基因型的10个单个样本来评估自然变异性。发现热胁迫以复杂的方式影响植物离子组,这取决于元素和遗传修饰。几种元素(例如铁和锌)的总浓度显着下降,而更少的元素(例如钙和镁)则显示相反的趋势。热胁迫还影响植物内的元素分布,确定根系(例如转基因植物中的Mo,P和Zn)或地上部分(例如K)的积累,并分别表明离子迁移或吸收过程的效率发生了变化。最后,将热胁迫的分析数据与先前获得的化学和水分胁迫的分析数据合并,并通过多变量分析进行分析,从而有可能显示每种胁迫的不同生物特征,并为植物生物监测研究提供合适的指标。

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