Biologisches Institut II, Universität freiburg, Schänzlestr. 1, D-7800, Freiburg, Federal Republic of germany.
Planta. 1978 Jan;141(2):217-23. doi: 10.1007/BF00387892.
After sowing, mustard (Sinapis alba L.) seedlings were grown for 48 h in white light (25°C). These fully de-etiolated, green seedlings were used as experimental material between 48 and 72 h after sowing to study the control by phytochrome (Pfr) of hypocotyl elongation after a white light→dark transition. It was found that the transfer to darkness leads to a complete loss of sensitivity towards newlyformed Pfr for a period of 12 h while the effectiveness of the Pfr, which was established at the end of the 48 h white light pretreatment was maintained. It is concluded that two kinds of Pfr must be kept apart: "old" Pfr which operates during the first 12 h after the light→dark transition and "new" Pfr the appearance of which is totally ignored by the plant. Between 12 and 24 h after the white light→dark transition the sensitivity of the seedling towards "new" Pfr is restored while an effect of the "old" Pfr is no longer detectable. The restoration process is accelerated by light which operates through phytochrome ("positive feedback"). The implications of these findings for plant growth under natural light/dark regimes are discussed.
播种后,芥菜(Sinapis alba L.)幼苗在白光(25°C)下生长 48 h。这些完全去黄化、绿色的幼苗在播种后 48 至 72 h 之间被用作实验材料,以研究在白光→黑暗转变后,赤霉素(Pfr)对下胚轴伸长的控制作用。研究发现,在 12 h 的时间内,幼苗对新形成的 Pfr 的敏感性完全丧失,而在 48 h 白光预处理结束时建立的 Pfr 的有效性则得以维持。由此得出结论,两种 Pfr 必须分开:“旧” Pfr 在光→暗转变后的头 12 h 起作用,而“新” Pfr 的出现则完全被植物忽略。在白光→黑暗转变后的 12 至 24 h 之间,幼苗对“新” Pfr 的敏感性得以恢复,而“旧” Pfr 的作用则不再可检测到。光照通过赤霉素(“正反馈”)加速了恢复过程。讨论了这些发现对植物在自然光/暗周期下生长的意义。