Rossard Stéphanie, Luini Estelle, Pérault Jean-Michel, Bonmort Janine, Roblin Gabriel
Laboratoire de Biochimie, Physiologie et Biologie Moléculaire Végétales, UMR CNRS 6161, University of Poitiers, 40, Avenue du Recteur Pineau, F-86022 Poitiers, France.
J Exp Bot. 2006;57(6):1245-52. doi: 10.1093/jxb/erj090. Epub 2006 Mar 1.
Ergosterol (a fungal membrane component) was shown to induce transient influx of protons and membrane hyperpolarization in cotyledonary cells of Mimosa pudica L. By contrast, chitosan (a fungal wall component with known elicitor properties) triggered membrane depolarization. In the processes induced by ergosterol, a specific desensitization was observed, since cells did not react to a second ergosterol application but did respond to a chitosan treatment. This comparative study correspondingly shows that ergosterol and chitosan were perceived in a distinct manner by plant cells. Generation of O2*-, visualized by infiltration with nitroblue tetrazolium, was displayed in organs treated with ergosterol and chitosan. This AOS production was preceded by an increase in activity of NADPH oxidase measured in protein extracts of treated cotyledons. In all the previously described processes, cholesterol had no effect, thereby indicating that ergosterol specifically induced these physiological changes known to participate in the reaction chain activated by characteristic elicitors. Contrary to chitosan, ergosterol did not greatly activate secondary metabolism as shown by the small change in content of free phenolics and by the low modification in activity of PAL, the key enzyme of this metabolic pathway. Therefore, future studies have to clarify the signalling cascade triggered by ergosterol recognition.
麦角固醇(一种真菌膜成分)被证明可诱导含羞草子叶细胞中质子的瞬时内流和膜超极化。相比之下,壳聚糖(一种具有已知激发子特性的真菌壁成分)引发膜去极化。在麦角固醇诱导的过程中,观察到一种特异性脱敏现象,因为细胞对第二次施加的麦角固醇没有反应,但对壳聚糖处理有反应。这项比较研究相应地表明,植物细胞以不同的方式感知麦角固醇和壳聚糖。通过用氮蓝四唑浸润可视化的超氧阴离子的产生,在经麦角固醇和壳聚糖处理的器官中表现出来。在用处理过的子叶的蛋白质提取物中测得的NADPH氧化酶活性增加之前,就有这种活性氧的产生。在所有上述过程中,胆固醇没有作用,从而表明麦角固醇特异性地诱导了这些已知参与由特征激发子激活的反应链的生理变化。与壳聚糖相反,麦角固醇并没有像游离酚类物质含量的微小变化以及该代谢途径的关键酶苯丙氨酸解氨酶活性的低变化所表明的那样,极大地激活次生代谢。因此,未来的研究必须阐明由麦角固醇识别引发的信号级联反应。