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Stress-inducible Gene Expression and its Impact on Seed and Plant Performance: a Microarray Approach

机译:应激诱导基因表达及其对种子和植物性能的影响:微阵列方法

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In addition to the improvement of germination characteristics, such as germination rate and uniformity, osmotic treatment of seeds has a positive effect on the stress tolerance. This research aimed to gain evidence that exposure of seeds to (abiotic)stresses may lead to cross-tolerance for these and other stresses that are experienced during germination and seedling growth. In order to identify the genes that are involved in this phenomenon, tomato (Lycopersicon esculentum Mill.) microarrays were used. The expression profiles of treated vs untreated dry seeds were compared. Furthermore, differences in expression profiles between treated and untreated seeds during germination were analysed. Following these results, genes with an expression pattern that could indicate a possible role in the imposition of cross-tolerance will be further analysed for their precise role. The practical implications of this study will be twofold: (i) development of new or modified methods for the improvement of seed quality; and (ii) identification of molecular markers that are specific for stress resistance.
机译:除了提高萌发特征之外,例如萌发率和均匀性,种子的渗透处理对应力耐受性具有积极影响。这项研究旨在获得证据,即种子(非生物)应激暴露可能导致对萌发和幼苗生长的这些和其他应力的交易。为了鉴定涉及这种现象的基因,使用番茄(Lycopersicon Esculentum Mill。)微阵列。比较了处理过的对未处理干燥种子的表达谱。此外,分析了萌发期间处理和未处理的种子之间的表达谱的差异。以下结果,将进一步分析具有表达模式的基因,其可以表明在施加交通的情况下的可能作用以获得精确的作用。本研究的实际意义将是双重的:(i)开发新的或改进的方法,以提高种子质量; (ii)鉴定特异性抗应力的分子标记。

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