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首页> 外文期刊>Plant physiology >Whole genome analysis of gene expression reveals coordinated activation of signaling and metabolic pathways during pollen-pistil interactions in Arabidopsis
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Whole genome analysis of gene expression reveals coordinated activation of signaling and metabolic pathways during pollen-pistil interactions in Arabidopsis

机译:基因表达的全基因组分析揭示了拟南芥花粉雌蕊相互作用期间信号传导和代谢途径的协同激活

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Plant reproduction depends on the concerted activation of many genes to ensure correct communication between pollen and pistil. Here, we queried the whole transcriptome of Arabidopsis (Arabidopsis thaliana) in order to identify genes with specific reproductive functions. We used the Affymetrix ATH1 whole genome array to profile wild-type unpollinated pistils and unfertilized ovules. By comparing the expression profile of pistils at 0.5, 3.5, and 8.0 h after pollination and applying a number of statistical and bioinformatics criteria, we found 1,373 genes differentially regulated during pollen-pistil interactions. Robust clustering analysis grouped these genes in 16 time-course clusters representing distinct patterns of regulation. Coregulation within each cluster suggests the presence of distinct genetic pathways, which might be under the control of specific transcriptional regulators. A total of 78% of the regulated genes were expressed initially in unpollinated pistil and/or ovules, 15% were initially detected in the pollen data sets as enriched or preferentially expressed, and 7% were induced upon pollination. Among those, we found a particular enrichment for unknown transcripts predicted to encode secreted proteins or representing signaling and cell wall-related proteins, which may function by remodeling the extracellular matrix or as extracellular signaling molecules. A strict regulatory control in various metabolic pathways suggests that fine-tuning of the biochemical and physiological cellular environment is crucial for reproductive success. Our study provides a unique and detailed temporal and spatial gene expression profile of in vivo pollen-pistil interactions, providing a framework to better understand the basis of the molecular mechanisms operating during the reproductive process in higher plants.
机译:植物繁殖取决于许多基因的协同激活,以确保花粉和雌蕊之间的正确通讯。在这里,我们查询了拟南芥(Arabidopsis thaliana)的整个转录组,以鉴定具有特定生殖功能的基因。我们使用Affymetrix ATH1全基因组阵列分析野生型未授粉雌蕊和未受精胚珠。通过比较雌花在授粉后0.5、3.5和8.0 h的雌蕊表达谱,并应用许多统计和生物信息学标准,我们发现了1,373个在花粉-雌蕊相互作用期间受到差异调节的基因。强大的聚类分析将这些基因分为16个时程簇,代表了不同的调控模式。每个簇内的共调节表明存在不同的遗传途径,这可能在特定的转录调节子的控制下。总共78%的受调控基因最初在未授粉的雌蕊和/或胚珠中表达,最初在花粉数据集中检测到15%被富集或优先表达,而7%在授粉时被诱导。在这些当中,我们发现了未知的转录物的一种特殊的富集,这些转录物预计会编码分泌的蛋白或代表信号和细胞壁相关蛋白,这些蛋白可能通过重塑细胞外基质或作为细胞外信号分子而发挥作用。对各种代谢途径的严格控制表明,对生化和生理细胞环境的微调对于生殖成功至关重要。我们的研究提供了体内花粉雌蕊相互作用的独特而详细的时空基因表达谱,为更好地理解高等植物生殖过程中运作的分子机制奠定了基础。

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