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Genome-wide analysis of gene expression profiles during ear development of maize

机译:玉米穗发育过程中基因表达谱的全基因组分析

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In order to unravel the molecular mechanism of maize ear development, a microarray containing similar to 56,000 probes was used to monitor the gene expression profiles of ears at four developmental stages. The results showed that 2,794 genes, accounting for 5.0% of the total probes, changed significantly during ear development. Among the 2,794 genes, 1,844 genes differentially expressed during the spikelet differentiation phase, 836 genes during the floret primordium differentiation phase and 645 genes during the floret organ differentiation phase. Hierarchical clustering revealed that the differentially expressed genes had 9 major expression patterns. Based on Mips Functional Catalogue, 684 differentially expressed genes were grouped into at least one functional category, including metabolism (30.4%), protein related function (29.2%), biogenesis of cellular components (15.4%) and transcription (13.7%). The analysis revealed that the auxin signaling pathway play an important role in ear development. Moreover, regulation of some transcription factors may play a key role during ear development. RT-PCR and in situ hybridization for some selected genes validated our microarray data and supplied additional information on ear developmental processes.
机译:为了阐明玉米穗发育的分子机制,使用了包含类似于56,000个探针的微阵列,以监测四个发育阶段的穗基因表达谱。结果表明,占耳探针总数5.0%的2794个基因在耳朵发育过程中发生了显着变化。在2794个基因中,有1844个基因在小穗分化阶段差异表达,在小花原基分化阶段分化为836个基因,在小花器官分化阶段分化为645个基因。层次聚类表明差异表达的基因有9种主要表达模式。根据Mips功能目录,将684个差异表达的基因分为至少一个功能类别,包括代谢(30.4%),蛋白质相关功能(29.2%),细胞成分的生物发生(15.4%)和转录(13.7%)。分析表明,生长素信号通路在耳朵发育中起重要作用。此外,某些转录因子的调节可能在耳朵发育过程中起关键作用。 RT-PCR和一些选定基因的原位杂交验证了我们的微阵列数据,并提供了有关耳朵发育过程的其他信息。

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