Delis Costas, Dimou Maria, Efrose Rodica Catalina, Flemetakis Emmanouil, Aivalakis Georgios, Katinakis Panagiotis
Laboratory of Molecular Biology, Agricultural University of Athens, Georgios Aivalakis, Athens, Greece.
Plant Physiol Biochem. 2005 Jan;43(1):19-25. doi: 10.1016/j.plaphy.2004.11.006. Epub 2005 Jan 21.
Unlike other eukaryotes, which synthesize polyamines (PA) only from ornithine, plants possess an additional pathway utilizing arginine as a precursor. In this study, we have identified cDNA clones coding for a Glycine max ornithine decarboxylase (ODC, EC 4.1.1.7) and an arginine decarboxylase (ADC, EC 4.1.1.19). Expression analysis using semi-quantitative RT-PCR approach revealed that both genes coding for enzymes involved in putrescine biosynthesis (ODC and ADC) were found in most plant organs examined. Significant expression levels of both genes were detected in root tips and hypocotyls. The spatial distribution of GmODC and GmADC transcripts in primary and lateral roots and hypocotyls revealed that these genes are co-expressed in expanding cells of cortex parenchyma, expanding cells of central cylinder in main roots and in developing tissues and expanding cells of soybean hypocotyls. The data point out a correlation of the expression patterns of GmODC and GmADC gene to certain physiological roles such as organ development and cell expansion.
与其他仅从鸟氨酸合成多胺(PA)的真核生物不同,植物拥有一条额外的以精氨酸为前体的合成途径。在本研究中,我们鉴定出了编码大豆鸟氨酸脱羧酶(ODC,EC 4.1.1.7)和精氨酸脱羧酶(ADC,EC 4.1.1.19)的cDNA克隆。使用半定量RT-PCR方法进行的表达分析表明,在所检测的大多数植物器官中都发现了编码参与腐胺生物合成的酶(ODC和ADC)的两个基因。在根尖和下胚轴中检测到了这两个基因的显著表达水平。GmODC和GmADC转录本在主根和侧根以及下胚轴中的空间分布表明,这些基因在皮层薄壁组织的扩展细胞、主根中中柱的扩展细胞以及大豆下胚轴的发育组织和扩展细胞中共同表达。数据表明GmODC和GmADC基因的表达模式与某些生理作用(如器官发育和细胞扩展)之间存在相关性。