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玉米叶片转录组的发育动态。

The developmental dynamics of the maize leaf transcriptome.

机构信息

Boyce Thompson Institute, Cornell University, Ithaca, New York, USA.

出版信息

Nat Genet. 2010 Dec;42(12):1060-7. doi: 10.1038/ng.703. Epub 2010 Oct 31.

Abstract

We have analyzed the maize leaf transcriptome using Illumina sequencing. We mapped more than 120 million reads to define gene structure and alternative splicing events and to quantify transcript abundance along a leaf developmental gradient and in mature bundle sheath and mesophyll cells. We detected differential mRNA processing events for most maize genes. We found that 64% and 21% of genes were differentially expressed along the developmental gradient and between bundle sheath and mesophyll cells, respectively. We implemented Gbrowse, an electronic fluorescent pictograph browser, and created a two-cell biochemical pathway viewer to visualize datasets. Cluster analysis of the data revealed a dynamic transcriptome, with transcripts for primary cell wall and basic cellular metabolism at the leaf base transitioning to transcripts for secondary cell wall biosynthesis and C(4) photosynthetic development toward the tip. This dataset will serve as the foundation for a systems biology approach to the understanding of photosynthetic development.

摘要

我们使用 Illumina 测序技术分析了玉米叶片转录组。我们将超过 1.2 亿个读数映射到定义基因结构和选择性剪接事件,并沿叶片发育梯度和成熟的束鞘和叶肉细胞定量转录丰度。我们检测到大多数玉米基因的差异 mRNA 加工事件。我们发现,64%和 21%的基因在发育梯度和束鞘和叶肉细胞之间分别表现出差异表达。我们实现了 Gbrowse,一种电子荧光图谱浏览器,并创建了一个双细胞生化途径查看器来可视化数据集。数据分析的聚类分析显示了一个动态的转录组,叶片基部的初生细胞壁和基础细胞代谢的转录物向次生细胞壁生物合成和 C(4)光合发育的转录物过渡。该数据集将作为理解光合作用发育的系统生物学方法的基础。

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