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Gene Expression Programs during Brassica oleracea Seed Maturation Osmopriming and Germination Are Indicators of Progression of the Germination Process and the Stress Tolerance Level

机译:甘蓝种子成熟渗透和萌发过程中的基因表达程序是发芽过程和胁迫耐性水平的指标

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摘要

During seed maturation and germination, major changes in physiological status, gene expression, and metabolic events take place. Using chlorophyll sorting, osmopriming, and different drying regimes, Brassica oleracea seed lots of different maturity, stress tolerance, and germination behavior were created. Through careful physiological analysis of these seed lots combined with gene expression analysis using a dedicated cDNA microarray, gene expression could be correlated to physiological processes that occurred within the seeds. In addition, gene expression was studied during early stages of seed germination, prior to radicle emergence, since very little detailed information of gene expression during this process is available. During seed maturation expression of many known seed maturation genes, such as late-embryogenesis abundant or storage-compound genes, was high. Notably, a small but distinct subgroup of the maturation genes was found to correlate to seed stress tolerance in osmoprimed and dried seeds. Expression of these genes rapidly declined during priming and/or germination in water. The majority of the genes on the microarray were up-regulated during osmopriming and during germination on water, confirming the hypothesis that during osmopriming, germination-related processes are initiated. Finally, a large group of genes was up-regulated during germination on water, but not during osmopriming. These represent genes that are specific to germination in water. Germination-related gene expression was found to be partially reversible by physiological treatments such as slow drying of osmoprimed seeds. This correlated to the ability of seeds to withstand stress.
机译:在种子成熟和发芽期间,生理状态,基因表达和代谢事件发生了重大变化。使用叶绿素分选,渗透压和不同的干燥方式,创建了具有不同成熟度,胁迫耐受性和发芽行为的甘蓝种子。通过对这些种子批次进行仔细的生理分析,再使用专用的cDNA微阵列进行基因表达分析,可以将基因表达与种子内发生的生理过程相关。另外,在胚芽萌发之前,在胚根出现之前对基因表达进行了研究,因为在此过程中几乎没有基因表达的详细信息。在种子成熟期间,许多已知的种子成熟基因的表达很高,例如后期胚发生丰富或贮藏复合基因。值得注意的是,发现成熟基因的一个小的但独特的亚组与渗透压干燥种子中的种子胁迫耐受性相关。在水中引发和/或萌发期间,这些基因的表达迅速下降。微阵列上的大多数基因在渗水和水发芽过程中均被上调,从而证实了在渗水过程中启动了与发芽相关的过程的假设。最终,一大批基因在水的发芽过程中被上调,但在渗透引发过程中却没有被上调。这些代表了对水中发芽具有特异性的基因。发现通过生理处理例如渗透压种子的缓慢干燥,可以使发芽相关基因的表达部分逆转。这与种子承受压力的能力有关。

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