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A High-Resolution Root Spatiotemporal Map Reveals Dominant Expression Patterns

机译:高分辨率根时空图揭示了主导表达模式。

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Transcriptional programs that regulate development are exquisitely controlled in space and time. Elucidating these programs that underlie development is essential to understanding the acquisition of cell and tissue identity. We present microarray expression profiles of a high-resolution set of developmental time points within a single Arabidopsis root and a comprehensive map of nearly all root cell types. These cell type-specific transcriptional signatures often predict previously unknown cellular functions. A computational pipeline identified dominant expression patterns that demonstrate transcriptional similarity between disparate cell types. Dominant expression patterns along the root's longitudinal axis do not strictly correlate with previously defined developmental zones, and in many cases, we observed expression fluctuation along this axis. Both robust co-regulation of gene expression and potential phasing of gene expression were identified between individual roots. Methods that combine these profiles demonstrate transcriptionally rich and complex programs that define Arabidopsis root development in both space and time.
机译:调节发展的转录程序在空间和时间上都得到了很好的控制。阐明这些基础程序对于理解细胞和组织特性的获取至关重要。我们目前在单个拟南芥根和几乎所有根细胞类型的综合图内的高分辨率的发展时间点的微阵列表达谱。这些特定于细胞类型的转录特征通常可以预测以前未知的细胞功能。计算流水线确定了主要表达模式,这些表达模式证明了不同细胞类型之间的转录相似性。沿根部纵轴的主要表达模式与先前定义的发育区并不严格相关,在许多情况下,我们观察到沿该轴的表达波动。在各个根之间鉴定了基因表达的强大共调节和基因表达的潜在阶段。结合这些特征的方法证明了转录丰富且复杂的程序,这些程序在空间和时间上定义了拟南芥的根发育。

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