Xu Jiajia, Bräutigam Andrea, Weber Andreas P M, Zhu Xin-Guang
CAS Key Laboratory of Computational Biology and State Key Laboratory for Hybrid Rice, CAS-MPG Partner Institute for Computational Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Institute of Plant Biochemistry, Cluster of Excellence on Plant Sciences (CEPLAS), Heinrich-Heine University, 40225 Düsseldorf, Germany Network Analysis and Modeling, IPK Gatersleben, Correnstrasse 3, D-06466 Stadt Seeland, Germany.
J Exp Bot. 2016 Sep;67(17):5105-17. doi: 10.1093/jxb/erw275. Epub 2016 Jul 19.
Identification of potential cis-regulatory motifs controlling the development of C4 photosynthesis is a major focus of current research. In this study, we used time-series RNA-seq data collected from etiolated maize and rice leaf tissues sampled during a de-etiolation process to systematically characterize the expression patterns of C4-related genes and to further identify potential cis elements in five different genomic regions (i.e. promoter, 5'UTR, 3'UTR, intron, and coding sequence) of C4 orthologous genes. The results demonstrate that although most of the C4 genes show similar expression patterns, a number of them, including chloroplast dicarboxylate transporter 1, aspartate aminotransferase, and triose phosphate transporter, show shifted expression patterns compared with their C3 counterparts. A number of conserved short DNA motifs between maize C4 genes and their rice orthologous genes were identified not only in the promoter, 5'UTR, 3'UTR, and coding sequences, but also in the introns of core C4 genes. We also identified cis-regulatory motifs that exist in maize C4 genes and also in genes showing similar expression patterns as maize C4 genes but that do not exist in rice C3 orthologs, suggesting a possible recruitment of pre-existing cis-elements from genes unrelated to C4 photosynthesis into C4 photosynthesis genes during C4 evolution.
鉴定控制C4光合作用发育的潜在顺式调控基序是当前研究的一个主要重点。在本研究中,我们使用了在去黄化过程中从黄化玉米和水稻叶片组织收集的时间序列RNA-seq数据,以系统地表征C4相关基因的表达模式,并进一步鉴定C4直系同源基因的五个不同基因组区域(即启动子、5'UTR、3'UTR、内含子和编码序列)中的潜在顺式元件。结果表明,尽管大多数C4基因表现出相似的表达模式,但其中一些基因,包括叶绿体二羧酸转运蛋白1、天冬氨酸转氨酶和磷酸丙糖转运蛋白,与其C3对应物相比表现出不同的表达模式。在玉米C4基因与其水稻直系同源基因之间不仅在启动子、5'UTR、3'UTR和编码序列中,而且在核心C4基因的内含子中鉴定出了一些保守的短DNA基序。我们还鉴定出存在于玉米C4基因中以及与玉米C4基因具有相似表达模式但不存在于水稻C3直系同源基因中的顺式调控基序,这表明在C4进化过程中,可能有与C4光合作用无关的基因中预先存在的顺式元件被招募到C4光合作用基因中。