The Differential Transcription Network between Embryo and Endosperm in the Early Developing Maize Seed

Author:

Lu Xiaoduo12,Chen Dijun345,Shu Defeng1,Zhang Zhao3,Wang Weixuan26,Klukas Christian5,Chen Ling-ling4,Fan Yunliu26,Chen Ming3,Zhang Chunyi26

Affiliation:

1. Department of Life Sciences, Qilu Normal University, Jinan 250200, China (X.L., D.S.)

2. Department of Crop Genomics and Genetic Improvement, Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China (X.L., W.W., Y.F., C.Z.)

3. Department of Bioinformatics, College of Life Sciences, Zhejiang University, Hangzhou 310058, China (D.C., Z.Z., M.C.)

4. State Key Laboratory of Crop Genetic Improvement, College of Life Science and Technology, Huazhong Agricultural University, Wuhan 430070, China (D.C., L.l.-C.)

5. Department of Molecular Genetics, Leibniz Institute of Plant Genetics and Crop Plant Research Gatersleben, 06446 Gatersleben, Germany (D.C., C.K.); and

6. National Key Facility for Crop Gene Resources and Genetic Improvement, Beijing 100081, China (W.W., Y.F., C.Z.)

Abstract

Abstract Transcriptome analysis of early-developing maize (Zea mays) seed was conducted using Illumina sequencing. We mapped 11,074,508 and 11,495,788 paired-end reads from endosperm and embryo, respectively, at 9 d after pollination to define gene structure and alternative splicing events as well as transcriptional regulators of gene expression to quantify transcript abundance in both embryo and endosperm. We identified a large number of novel transcribed regions that did not fall within maize annotated regions, and many of the novel transcribed regions were tissue-specifically expressed. We found that 50.7% (8,556 of 16,878) of multiexonic genes were alternatively spliced, and some transcript isoforms were specifically expressed either in endosperm or in embryo. In addition, a total of 46 trans-splicing events, with nine intrachromosomal events and 37 interchromosomal events, were found in our data set. Many metabolic activities were specifically assigned to endosperm and embryo, such as starch biosynthesis in endosperm and lipid biosynthesis in embryo. Finally, a number of transcription factors and imprinting genes were found to be specifically expressed in embryo or endosperm. This data set will aid in understanding how embryo/endosperm development in maize is differentially regulated.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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