Yu Zhi-Hai, Han Ya-Nan, Xiao Xing-Guo
State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing 100193, China.
Int J Mol Sci. 2015 Nov 12;16(11):27032-43. doi: 10.3390/ijms161126011.
A 1670 bp 5'-flanking region of the polyphenol oxidase (PPO) gene was isolated from red Swiss chard, a betalain-producing plant. This region, named promoter BvcPPOP, and its 5'-truncated versions were fused with the GUS gene and introduced into Arabidopsis, an anthocyanins-producing plant. GUS histochemical staining and quantitative analysis of transgenic plants at the vegetative and reproductive stages showed that BvcPPOP could direct GUS gene expression in vegetative organs with root- and petiole-preference, but not in reproductive organs including inflorescences shoot, inflorescences leaf, flower, pod and seed. This promoter was regulated by developmental stages in its driving strength, but not in expression pattern. It was also regulated by the abiotic stressors tested, positively by salicylic acid (SA) and methyl jasmonate (MeJA) but negatively by abscisic acid (ABA), gibberellin (GA), NaCl and OH(-). Its four 5'-truncated versions varied in the driving strength, but not obviously in expression pattern, and even the shortest version (-225 to +22) retained the root- and petiole- preference. This promoter is, to our knowledge, the first PPO promoter cloned and functionally elucidated from the betalain-producing plant, and thus provides not only a useful tool for expressing gene(s) of agricultural interest in vegetative organs, but also a clue to clarify the function of metabolism-specific PPO in betalain biosynthesis.
从一种能产生甜菜红素的植物——红色瑞士甜菜中分离出了多酚氧化酶(PPO)基因1670 bp的5'侧翼区域。该区域命名为启动子BvcPPOP,将其及其5'端截短版本与GUS基因融合,并导入一种能产生花青素的植物——拟南芥中。对转基因植物营养期和生殖期进行GUS组织化学染色及定量分析表明,BvcPPOP可使GUS基因在营养器官中表达,且在根和叶柄中表达量较高,但在包括花序茎、花序叶、花、豆荚和种子在内的生殖器官中不表达。该启动子驱动强度受发育阶段调控,但表达模式不受影响。它也受所测试的非生物胁迫因子调控,水杨酸(SA)和茉莉酸甲酯(MeJA)呈正调控,而脱落酸(ABA)、赤霉素(GA)、NaCl和OH(-)呈负调控。其4个5'端截短版本的驱动强度不同,但表达模式差异不明显,即使最短的版本(-225至+22)仍保持在根和叶柄中的偏好性。据我们所知,该启动子是从能产生甜菜红素的植物中克隆并进行功能阐释的首个PPO启动子,因此不仅为在营养器官中表达具有农业应用价值的基因提供了有用工具,也为阐明代谢特异性PPO在甜菜红素生物合成中的功能提供了线索。