Amborabé Bénigne-Ernest, Rossard Stéphanie, Pérault Jean-Michel, Roblin Gabriel
Laboratoire de biochimie, physiologie et biologie moléculaire végétales, UMR CNRS 6161, université de Poitiers, Bât. Botanique, 40, av. du Recteur-Pineau, 86022 Poitiers, France.
C R Biol. 2003 Apr;326(4):363-70. doi: 10.1016/s1631-0691(03)00118-5.
Ergosterol (a fungal membrane component) induced modification of proton fluxes and membrane hyperpolarization in motor cells of Mimosa pudica. These reactions appear specific since they were not induced by the other sterols tested. A specific desensitization was observed, since cells did not react to a second ergosterol application. Exposed at first to other sterols, cells remained reactive to ergosterol. Comparatively, chitosan (a fungal wall component with known elicitor properties) triggered a membrane depolarization and also induced specific desensitization. This comparative study shows that ergosterol and chitosan are distinctly perceived by plant cells and induced different early events at the plasma membrane level.
麦角固醇(一种真菌膜成分)可诱导含羞草运动细胞中质子通量的改变和膜超极化。这些反应似乎具有特异性,因为它们不是由所测试的其他固醇诱导产生的。观察到一种特异性脱敏现象,即细胞对第二次施加的麦角固醇没有反应。最初暴露于其他固醇的细胞,对麦角固醇仍有反应。相比之下,壳聚糖(一种具有已知激发子特性的真菌细胞壁成分)引发了膜去极化,并且也诱导了特异性脱敏。这项比较研究表明,植物细胞能够明确识别麦角固醇和壳聚糖,并在质膜水平诱导不同的早期事件。