Literature DB >> 23431200

Anatomical and transcriptional dynamics of maize embryonic leaves during seed germination.

Wen-Yu Liu1, Yao-Ming Chang, Sean Chun-Chang Chen, Chen-Hua Lu, Yeh-Hwa Wu, Mei-Yeh Jade Lu, Di-Rong Chen, Arthur Chun-Chieh Shih, Chiou-Rong Sheue, Hsuan-Cheng Huang, Chun-Ping Yu, Hsin-Hung Lin, Shin-Han Shiu, Maurice Sun-Ben Ku, Wen-Hsiung Li.   

Abstract

Our anatomical analysis revealed that a dry maize seed contains four to five embryonic leaves at different developmental stages. Rudimentary kranz structure (KS) is apparent in the first leaf with a substantial density, but its density decreases toward younger leaves. Upon imbibition, leaf expansion occurs rapidly with new KSs initiated from the palisade-like ground meristem cells in the middle of the leaf. In parallel to the anatomical analysis, we obtained the time course transcriptomes for the embryonic leaves in dry and imbibed seeds every 6 h up to hour 72. Over this time course, the embryonic leaves exhibit transcripts of 30,255 genes at a level that can be regarded as "expressed." In dry seeds, ∼25,500 genes are expressed, showing functional enrichment in transcription, RNA processing, protein synthesis, primary metabolic pathways, and calcium transport. During the 72-h time course, ∼13,900 genes, including 590 transcription factor genes, are differentially expressed. Indeed, by 30 h postimbibition, ∼2,200 genes expressed in dry seeds are already down-regulated, and ∼2,000 are up-regulated. Moreover, the top 1% expressed genes at 54 h or later are very different from those before 30 h, reflecting important developmental and physiological transitions. Interestingly, clusters of genes involved in hormone metabolism, signaling, and responses are differentially expressed at various time points and TF gene expression is also modular and stage specific. Our dataset provides an opportunity for hypothesizing the timing of regulatory actions, particularly in the context of KS development.

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Year:  2013        PMID: 23431200      PMCID: PMC3593892          DOI: 10.1073/pnas.1301009110

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


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