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Evolution and Function of a cis-Regulatory Module for Mesophyll-Specific Gene Expression in the C4 Dicot Flaveria trinervia

机译:C4双子叶植物Flaveria trinervia叶肉特异性基因表达的顺式调控模块的进化和功能。

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摘要

C4 photosynthesis presents a sophisticated integration of two complementary cell types, mesophyll and bundle sheath cells. It relies on the differential expression of the genes encoding the component enzymes and transporters of this pathway. The entry enzyme of C4 photosynthesis, phosphoenolpyruvate carboxylase (PEPC), is found exclusively in mesophyll cells, and the expression of the corresponding gene is regulated at the transcriptional level. In the C4 dicot Flaveria trinervia, the mesophyll-specific expression of the C4 PEPC gene (ppcA) depends on a 41-bp segment in the distal promoter region referred to as MEM1 (for mesophyll expression module1). Here, we show that a MEM1 sequence found in the orthologous ppcA gene from the C3 species Flaveria pringlei is not able to direct mesophyll-specific gene expression. The two orthologous MEM1 sequences of F. pringlei and F. trinervia differ at two positions, a G-to-A exchange and the insertion of the tetranucleotide CACT. Changes at these two positions in the C3 MEM1 sequence were necessary and sufficient to create a mesophyll-specificity element during C4 evolution. The MEM1 of F. trinervia enhances mesophyll expression and concomitantly represses expression in bundle sheath cells and vascular bundles.
机译:C4光合作用代表了两种互补细胞类型(叶肉和束鞘细胞)的复杂整合。它依赖于编码该途径的组成酶和转运蛋白的基因的差异表达。 C4光合作用的进入酶磷酸烯醇丙酮酸羧化酶(PEPC)仅在叶肉细胞中发现,相应基因的表达在转录水平受到调控。在C4双子叶植物Flaveria trinervia中,C4 PEPC基因(ppcA)的叶肉特异性表达取决于远端启动子区域中称为MEM1的41 bp片段(对于叶肉表达模块1)。在这里,我们显示从C3物种黄萎病菌的直系同源ppcA基因中发现的MEM1序列不能指导叶肉特异性基因表达。 F.pringlei和F.trinervia的两个直系同源MEM1序列在两个位置不同,G到A交换和四核苷酸CACT的插入。 C3 MEM1序列中这两个位置的变化是必要的,并且足以在C4进化过程中产生叶肉特异性元件。 Trinervia F. trinervia的MEM1增强叶肉表达,并同时抑制束鞘细胞和血管束中的表达。

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