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First published online November 9, 2007; 10.1105/tpc.107.053322

The Plant Cell 19:3391-3402 (2007)
© 2007 American Society of Plant Biologists

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

Meryem Akyildiz, Udo Gowik, Sascha Engelmann, Maria Koczor, Monika Streubel and Peter Westhoff1

Heinrich-Heine Universität, Institut für Entwicklungs und Molekularbiologie der Pflanzen, 40225 Düsseldorf, Germany

1 Address correspondence to west{at}uni-duesseldorf.de.

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.




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S. Engelmann, C. Wiludda, J. Burscheidt, U. Gowik, U. Schlue, M. Koczor, M. Streubel, R. Cossu, H. Bauwe, and P. Westhoff
The Gene for the P-Subunit of Glycine Decarboxylase from the C4 Species Flaveria trinervia: Analysis of Transcriptional Control in Transgenic Flaveria bidentis (C4) and Arabidopsis (C3)
Plant Physiology, April 1, 2008; 146(4): 1773 - 1785.
[Abstract] [Full Text] [PDF]




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