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Dormant and after-Ripened Arabidopsis thaliana Seeds are Distinguished by Early Transcriptional Differences in the Imbibed State

机译:休眠状态和成熟后的拟南芥种子通过在吸收状态下的早期转录差异来区分

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摘要

Seed dormancy is a genetically controlled block preventing the germination of imbibed seeds in favorable conditions. It requires a period of dry storage (after-ripening) or certain environmental conditions to be overcome. Dormancy is an important seed trait, which is under selective pressure, to control the seasonal timing of seed germination. Dormant and non-dormant (after-ripened) seeds are characterized by large sets of differentially expressed genes. However, little information is available concerning the temporal and spatial transcriptional changes during early stages of rehydration in dormant and non-dormant seeds. We employed genome-wide transcriptome analysis on seeds of the model plant Arabidopsis thaliana to investigate transcriptional changes in dry seeds upon rehydration. We analyzed gene expression of dormant and after-ripened seeds of the Cvi accession over four time points and two seed compartments (the embryo and surrounding single cell layer endosperm), during the first 24 h after sowing. This work provides a global view of gene expression changes in dormant and non-dormant seeds with temporal and spatial detail, and these may be visualized via a web accessible tool (). A large proportion of transcripts change similarly in both dormant and non-dormant seeds upon rehydration, however, the first differences in transcript abundances become visible shortly after the initiation of imbibition, indicating that changes induced by after-ripening are detected and responded to rapidly upon rehydration. We identified several gene expression profiles which contribute to differential gene expression between dormant and non-dormant samples. Genes with enhanced expression in the endosperm of dormant seeds were overrepresented for stress-related Gene Ontology categories, suggesting a protective role for the endosperm against biotic and abiotic stress to support persistence of the dormant seed in its environment.
机译:种子休眠是一种遗传控制的块,可防止吸收的种子在有利条件下发芽。它需要一段时间的干燥存储(熟化后)或要克服的某些环境条件。休眠是重要的种子性状,处于选择压力下,可以控制种子发芽的季节时机。休眠和非休眠(后熟)种子的特征在于大量差异表达基因。然而,关于休眠和非休眠种子补液早期阶段的时空转录变化的信息很少。我们对模型植物拟南芥的种子进行了全基因组转录组分析,以研究补液后干燥种子中的转录变化。我们在播种后的最初24小时内分析了四个时间点和两个种子区室(胚胎和周围的单细胞层胚乳)的Cvi休眠和后熟种子的基因表达。这项工作提供了具有时空细节的休眠和非休眠种子中基因表达变化的全局视图,并且可以通过网络可访问工具将其可视化。复水后,休眠和非休眠种子中的大部分转录物都发生相似的变化,但是,在吸水开始后不久,转录本丰度的第一个差异变得可见,这表明后熟引起的变化被检测到并迅速响应。补液。我们确定了几个基因表达谱,它们有助于休眠和非休眠样品之间的差异基因表达。在与胁迫相关的基因本体论类别中,休眠种子的胚乳中表达增强的基因被过度代表,这表明胚乳对生物和非生物胁迫具有保护作用,以支持休眠种子在其环境中的持久性。

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