Lauvergeat Virginie, Rech Philippe, Jauneau Alain, Guez Colette, Coutos-Thevenot Pierre, Grima-Pettenati Jacqueline
IFR40, UMR CNRS-UPS 5546, Signaux et Messages Cellulaires chez les Végétaux, Pĵle de Biotechnologie Végétale, Castanet Tolosan, France.
Plant Mol Biol. 2002 Oct;50(3):497-509. doi: 10.1023/a:1019817913604.
Cinnamyl alcohol dehydrogenase (CAD; EC 1.1.1.195) catalyses the last step in the synthesis of the monomeric precursors of lignin. Here, we demonstrate that the vascular expression pattern conferred by the Eucalyptus gunnii EgCAD2 promoter in transgenic poplar (Populus tremula x Populus alba) is conserved in another perennial woody angiosperm of economic interest (Vitis vinifera L.), as well as in a model herbaceous plant (Nicotiana tabacum L.). Furthermore, promoter deletion analysis performed in both tobacco and poplar allowed us to identify the proximal region [-340/-124] as essential for vascular cambium/xylem-specific expression whereas the [-124/+117] region was shown to contain cis element-driving activity in phloem fibres. Interestingly, the [-340/-124] fragment contains an AC-rich cis-acting element present in numerous genes of the phenylpropanoid pathway expressed in xylem tissues, and known as a consensus Myb transcription factor binding site, suggesting that common Myb sites may provide a mechanism by which different steps of phenylpropanoid metabolism are coordinately regulated and expressed in vascular tissues. We have also shown in both tobacco and poplar that the EgCAD2 promoter is inducible by wounding and the cis-elements responsible for wounding responsiveness are located in the distal promoter region. Taken together, our data suggest that the mechanisms controlling developmental and wounding inducible expression of the EgCAD2 promoter are conserved among perennial woody and annual herbaceous plant species enabling us now to investigate in depth the transcriptional regulation of the EgCAD2 promoter in tobacco.
肉桂醇脱氢酶(CAD;EC 1.1.1.195)催化木质素单体前体合成的最后一步。在此,我们证明了在转基因杨树(欧洲山杨×银白杨)中由冈尼桉EgCAD2启动子赋予的维管组织表达模式,在另一种具有经济价值的多年生木本被子植物(葡萄)以及一种模式草本植物(烟草)中是保守的。此外,在烟草和杨树中进行的启动子缺失分析使我们能够确定近端区域[-340/-124]对于维管形成层/木质部特异性表达至关重要,而[-124/+117]区域在韧皮纤维中具有顺式元件驱动活性。有趣的是,[-340/-124]片段包含一个富含AC的顺式作用元件,该元件存在于木质部组织中表达的众多苯丙烷类途径基因中,并且是已知的共有Myb转录因子结合位点,这表明常见Myb位点可能提供了一种机制,通过该机制苯丙烷类代谢的不同步骤在维管组织中被协调调节和表达。我们还在烟草和杨树中表明,EgCAD2启动子可被创伤诱导,负责创伤反应性的顺式元件位于启动子远端区域。综上所述,我们的数据表明,控制EgCAD2启动子发育和创伤诱导表达的机制在多年生木本和一年生草本植物物种中是保守的,这使我们现在能够深入研究烟草中EgCAD2启动子的转录调控。