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光诱导酸黄瓜幼苗中苯丙氨酸解氨酶的产生:Ⅱ. 红光和远红光的影响。

Photoinduction of phenylalanine deaminase in gherkin seedlings : II. Effect of red and far-red light.

机构信息

Philips Research Laboratories, N. V. Philips' Gloeilampenfabrieken, Eindhoven, Netherlands.

出版信息

Planta. 1967 Mar;77(1):49-57. doi: 10.1007/BF00387559.

Abstract
  1. Exposure of dark-grown gherkin seedlings to red or far-red light causes changes in the level of phenylalanine deaminase (PADAse) which follow the same time course and show a similar dependence on light intensity as the changes induced in blue light. From this it is concluded that light of different regions of the visible spectrum is initiating the same sequence of dark reactions leading to enhanced production of PADAse, followed by a phase of inactivation of this enzyme and repression of its synthesis. 2. In blue light a higher PADAse level can be obtained than in red or far-red light, and only blue light is capable of inducing PADAse synthesis in excised hypocotyls. This suggests that different pigment systems are involved in the high-energy phenomena in the gherkin seedling. 3. The effects of irradiation sequences with different light qualities and intensities on the accumulation of hydroxycinnamic acids can be explained on the basis of the regulatory mechanisms which control of PADAse level.
摘要
  1. 黑暗中生长的黄瓜幼苗暴露在红光或远红光下会引起苯丙氨酸脱氨酶(PADAse)水平的变化,其时间进程与蓝光诱导的变化相同,并且对光强的依赖性也相似。由此可以得出结论,可见光谱不同区域的光正在引发相同的暗反应序列,从而导致 PADAse 的产量增加,随后是该酶的失活阶段和其合成的抑制。

  2. 在蓝光下可以获得比红光或远红光更高的 PADAse 水平,并且只有蓝光能够在离体下胚轴中诱导 PADAse 合成。这表明不同的色素系统参与了黄瓜幼苗中的高能现象。

  3. 根据控制 PADAse 水平的调节机制,可以解释不同光质和强度的辐照序列对羟基肉桂酸积累的影响。

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