Department of Botany, University of Leicester, LE1 7RH, Leicester, UK.
Planta. 1982 Mar;154(2):128-34. doi: 10.1007/BF00387905.
Phytochrome in the far-red light absorbing form (Pfr) was observed to disappear in vivo more rapidly from the non-cation-requiring pelletable phytochrome population than from the supernantant phytochrome population of oat seedlings given an increasing dark incubation after red irradiation. The amount of pelletable phytochrome in the red light absorbing form (Pr) remained relatively stable while supernatant Pr was lost. These observations indicated that supernant Pfr was subject to loss during the incubation, while pelletable Pfr was subject to both dark reversion and loss.During the incubation, the ability of far-red irradiation to reverse the red-induced increase in phytochrome pelletability was lost, with kinetics similar to those of the loss of pelletable Pfr.Far-red reversibility of the red-induced increase in coleoptile elongation correlated with the change intotal Pfr in both supernatant and pelletable phytochrome populations, but with the change in the ratio of Pfr to total phytochrome only in the pelletable phytochrome population.The possible significance of these results is discussed with reference to the action of phytochrome in the photocontrol of physiological growth responses.
远红光吸收型(Pfr)的光敏色素在红光照射后,经暗期孵育,在体内从非依赖阳离子可沉淀的光敏色素群体中比从超滤液光敏色素群体中更快地消失。在红光吸收型(Pr)中,可沉淀的光敏色素的量保持相对稳定,而超滤液 Pr 则丢失。这些观察结果表明,超滤液 Pfr 在孵育过程中会丢失,而可沉淀的 Pfr 则会经历暗逆转和丢失。在孵育过程中,远红光照射逆转红光诱导的光敏色素可沉淀性增加的能力丧失,其动力学与可沉淀 Pfr 的丢失相似。远红光对红光诱导的伸长增加的可逆性与上清液和可沉淀光敏色素群体中总 Pfr 的变化相关,但仅与可沉淀光敏色素群体中 Pfr 与总光敏色素的比值变化相关。这些结果的可能意义与光敏色素在光控生理生长反应中的作用有关。