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An Expanded Maize Gene Expression Atlas based on RNA Sequencing and its Use to Explore Root Development

机译:基于RNA测序的扩展玉米基因表达图谱及其在探索根发育中的应用

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Comprehensive and systematic transcriptome profiling provides valuable insight into biological and developmental processes that occur throughout the life cycle of a plant. We have enhanced our previously published microarray-based gene atlas of maize (Zea mays L.) inbred B73 to now include 79 distinct replicated samples that have been interrogated using RNA sequencing (RNA-seq). The current version of the atlas includes 50 original array-based gene atlas samples, a time-course of 12 stalk and leaf samples postflowering, and an additional set of 17 samples from the maize seedling and adult root system. The entire dataset contains 4.6 billion mapped reads, with an average of 20.5 million mapped reads per biological replicate, allowing for detection of genes with lower transcript abundance. As the new root samples represent key additions to the previously examined tissues, we highlight insights into the root transcriptome, which is represented by 28,894 (73.2%) annotated genes in maize. Additionally, we observed remarkable expression differences across both the longitudinal (four zones) and radial gradients (cortical parenchyma and stele) of the primary root supported by fourfold differential expression of 9353 and 4728 genes, respectively. Among the latter were 1110 genes that encode transcription factors, some of which are orthologs of previously characterized transcription factors known to regulate root development in Arabidopsis thaliana (L.) Heynh., while most are novel, and represent attractive targets for reverse genetics approaches to determine their roles in this important organ. This comprehensive transcriptome dataset is a powerful tool toward understanding maize development, physiology, and phenotypic diversity.
机译:全面而系统的转录组分析提供了对植物整个生命周期中发生的生物学和发育过程的宝贵见解。我们已经增强了以前发布的基于玉米(Zea mays L.)近交B73的基于微阵列的基因图集,现在包括79个不同的复制样品,这些样品已使用RNA测序(RNA-seq)进行了研究。该地图集的当前版本包括50个原始的基于阵列的基因图集样本,开花后的12个茎和叶样本的时程,以及来自玉米幼苗和成年根系的另外17个样本集。整个数据集包含46亿个映射读段,每个生物重复平均2050万个映射读段,从而可以检测转录本丰度较低的基因。由于新的根样品代表了先前检查过的组织的关键添加物,因此我们着重介绍了对根转录组的见解,它由玉米中的28,894(73.2%)个带注释的基因表示。此外,我们观察到在分别由9353和4728个基因的四倍差异表达支持的初级根的纵向(四个区域)和径向梯度(皮质实质和石碑)上的显着表达差异。后者中有1110个编码转录因子的基因,其中一些是先前表征的转录因子的直向同源物,已知该转录因子可调节拟南芥(L.)Heynh。中的根发育,而大多数是新颖的,并且是反向遗传学方法的诱人靶标。确定他们在这个重要器官中的作用。这个全面的转录组数据集是了解玉米发育,生理和表型多样性的强大工具。

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