Liscum E., Hangarter R. P.
Department of Plant Biology, The Ohio State University, Columbus, Ohio 43210.
Plant Physiol. 1993 Feb;101(2):567-572. doi: 10.1104/pp.101.2.567.
Apical hook opening and cotyledon unfolding are characteristic responses that occur during deetiolation of dicotyledonous seedlings. Light-stimulated apical hook opening and cotyledon unfolding in etiolated Arabidopsis thaliana seedlings appears to involve the activities of multiple photosensory systems. Red, far-red, and blue light are all effective in stimulating these responses in Arabidopsis. Stimulation of hook opening by red light and low fluence blue light is inductive, far-red reversible, and exhibits reciprocity, as is characteristic of many low fluence-dependent phytochrome-mediated responses. Far-red and high-fluence blue light appear to stimulate hook opening and cotyledon unfolding through high-irradiance-response systems during long-term light treatments. Although a phytochrome high-irradiance-response system presumably mediates the responses in far-red light, the responses to high-fluence blue light may be mediated by a blue light-specific photosensory system.
顶端弯钩打开和子叶展开是双子叶植物幼苗去黄化过程中出现的典型反应。在黄化拟南芥幼苗中,光刺激的顶端弯钩打开和子叶展开似乎涉及多个光感受系统的活动。红光、远红光和蓝光在刺激拟南芥的这些反应方面均有效。红光和低光通量蓝光对弯钩打开的刺激具有诱导性、远红光可逆性,并表现出互易性,这是许多低光通量依赖型光敏色素介导反应的特征。在长期光照处理期间,远红光和高光通量蓝光似乎通过高辐照反应系统刺激弯钩打开和子叶展开。尽管推测光敏色素高辐照反应系统介导远红光下的反应,但对高光通量蓝光的反应可能由蓝光特异性光感受系统介导。