Benveniste Irène, Bronner Roberte, Wang Yong, Compagnon Vincent, Michler Pierre, Schreiber Lukas, Salaün Jean-Pierre, Durst Francis, Pinot Franck
CNRS-Institut de Biologie Molèculaire des Plantes--UPR2357--Département Réponses métaboliques à l'environnement biotique, Université Louis-Pasteur, 28 Rue Goethe, 67083, Strasbourg Cedex, France.
Planta. 2005 Aug;221(6):881-90. doi: 10.1007/s00425-005-1503-y. Epub 2005 May 21.
CYP94A1 is a cytochrome P450 (P450) catalyzing fatty acid (FA) omega-hydroxylation in Vicia sativa seedlings. To study the physiological role of this FA monooxygenase, we report here on its regulation at the transcriptional level (Northern blot). Transcripts of CYP94A1, as those of two other P450-dependent FA hydroxylases (CYP94A2 and CYP94A3) from V. sativa, are barely detectable during the early development of the seedlings. CYP94A1 transcripts, in contrast to those of the two other isoforms, are rapidly (less than 20 min) and strongly (more than 100 times) enhanced after treatment by clofibrate, an hypolipidemic drug in animals and an antiauxin (p-chlorophenoxyisobutyric acid) in plants, by auxins (2,4-dichlorophenoxyacetic acid and indole-3-acetic acid), by an inactive auxin analog (2,3-dichlorophenoxyacetic acid), and also by salicylic acid. All these compounds activate CYP94A1 transcription only at high concentrations (50-500 microM range). In parallel, these high levels of clofibrate and auxins modify seedling growth and development. Therefore, the expression of CYP94A1 under these conditions and the concomitant morphological and cytological modifications would suggest the implication of this P450 in a process of plant defense against chemical injury.
CYP94A1是一种细胞色素P450(P450),可催化蚕豆幼苗中的脂肪酸(FA)ω-羟基化反应。为了研究这种脂肪酸单加氧酶的生理作用,我们在此报告其在转录水平的调控(Northern印迹法)。与蚕豆中另外两种依赖P450的脂肪酸羟化酶(CYP94A2和CYP94A3)的转录本一样,CYP94A1的转录本在幼苗早期发育过程中几乎检测不到。相比之下,与另外两种同工型的转录本不同,在使用氯贝丁酯(一种在动物中具有降血脂作用且在植物中为抗生长素(对氯苯氧基异丁酸))、生长素(2,4-二氯苯氧乙酸和吲哚-3-乙酸)、无活性的生长素类似物(2,3-二氯苯氧乙酸)以及水杨酸处理后,CYP94A1的转录本迅速(不到20分钟)且强烈(超过100倍)增加。所有这些化合物仅在高浓度(50 - 500 microM范围)时激活CYP94A1转录。同时,这些高浓度的氯贝丁酯和生长素会改变幼苗的生长和发育。因此,在这些条件下CYP94A1的表达以及伴随的形态学和细胞学改变表明这种P450参与了植物对化学损伤的防御过程。