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玉米叶片鞘成熟的转录组分析。

Transcriptomic Analysis of Leaf Sheath Maturation in Maize.

机构信息

College of Agronomy, Synergetic Innovation Centre of Henan Grain Crops and National Key Laboratory of Wheat and Maize Crop Science, Henan Agricultural University, Zhengzhou 450002, China.

State Key Laboratory of Crop Biology, College of Agronomic Sciences, Shandong Agricultural University, Tai'an 271018, China.

出版信息

Int J Mol Sci. 2019 May 19;20(10):2472. doi: 10.3390/ijms20102472.

Abstract

The morphological development of the leaf greatly influences plant architecture and crop yields. The maize leaf is composed of a leaf blade, ligule and sheath. Although extensive transcriptional profiling of the tissues along the longitudinal axis of the developing maize leaf blade has been conducted, little is known about the transcriptional dynamics in sheath tissues, which play important roles in supporting the leaf blade. Using a comprehensive transcriptome dataset, we demonstrated that the leaf sheath transcriptome dynamically changes during maturation, with the construction of basic cellular structures at the earliest stages of sheath maturation with a transition to cell wall biosynthesis and modifications. The transcriptome again changes with photosynthesis and lignin biosynthesis at the last stage of sheath tissue maturation. The different tissues of the maize leaf are highly specialized in their biological functions and we identified 15 genes expressed at significantly higher levels in the leaf sheath compared with their expression in the leaf blade, including the homologs and , () and transcription factors from the B3 domain, C2H2 zinc finger and homeobox gene families, implicating these genes in sheath maturation and organ specialization.

摘要

叶片的形态发育极大地影响着植物的结构和作物的产量。玉米叶片由叶片、叶舌和叶鞘组成。尽管已经对发育中的玉米叶片沿纵向轴的组织进行了广泛的转录谱分析,但对在叶片支撑中起重要作用的叶鞘组织的转录动态知之甚少。利用一个全面的转录组数据集,我们证明了叶鞘转录组在成熟过程中是动态变化的,在叶鞘成熟的最早阶段构建基本的细胞结构,然后过渡到细胞壁的生物合成和修饰。在叶鞘组织成熟的最后阶段,转录组再次随着光合作用和木质素生物合成而变化。玉米叶片的不同组织在其生物学功能上高度专业化,我们鉴定了 15 个在叶鞘中表达水平明显高于叶片的基因,包括 和 同源物、 ()和来自 B3 结构域、C2H2 锌指和同源盒基因家族的转录因子,表明这些基因参与了叶鞘成熟和器官特化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3594/6566692/0e16ec0549d1/ijms-20-02472-g001.jpg

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