Ewing R M, Jenkins G I, Langdale J A
Department of Plant Sciences, University of Oxford, UK.
Plant Mol Biol. 1998 Mar;36(4):593-9. doi: 10.1023/a:1005947306667.
RbcS genes exist as multigene families in most plant species examined. In this paper, we report an investigation into the expression patterns of two maize RbcS genes, designated in this report as RbcS1 and RbcS2. We present the sequence of RbcS2 and show that the structure of the gene has several features in common with other monocot RbcS genes. To determine whether RbcS1 and RbcS2 fulfil different functional roles with respect to the C3 and C4 carbon fixation pathways, we have investigated the expression patterns of the two genes in different maize tissue types. Transcripts of both genes are found at high levels specifically in bundle-sheath cells of maize seedling leaves, indicating that both genes are expressed in the C4-type pattern. However, we show that RbcS1 transcripts are relatively more abundant than RbcS2 transcripts in C3 tissues such as husk leaves. These results are discussed with respect to the evolution of C4 carbon fixation and the mechanisms required for the cell-specific expression of RbcS genes.
在大多数已研究的植物物种中,RbcS基因以多基因家族的形式存在。在本文中,我们报告了对两个玉米RbcS基因(本报告中命名为RbcS1和RbcS2)表达模式的研究。我们给出了RbcS2的序列,并表明该基因的结构与其他单子叶植物RbcS基因有几个共同特征。为了确定RbcS1和RbcS2在C3和C4碳固定途径中是否发挥不同的功能作用,我们研究了这两个基因在不同玉米组织类型中的表达模式。在玉米幼苗叶片的维管束鞘细胞中特别高水平地发现了这两个基因的转录本,表明这两个基因均以C4型模式表达。然而,我们发现,在诸如苞叶等C3组织中,RbcS1转录本比RbcS2转录本相对更丰富。结合C4碳固定的进化以及RbcS基因细胞特异性表达所需的机制对这些结果进行了讨论。