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含羞草叶片运动的光控。

Photocontrol of Mimosa pudica L. leaf movement.

机构信息

Agricultural Research Service, U.S. Department of Agriculture, Beltsville, Md..

出版信息

Planta. 1967 Sep;75(3):228-38. doi: 10.1007/BF00386322.

Abstract
  1. Mimosa pudica L. pinnae close in darkness when phytochrome is predominantly in the far-red-absorbing form (Pfr) and remain open when Pfr is low [6]. The leaflets remain open, however, in normal light periods irrespective of the form of phytochrome. Pinnae, after closing in darkness, regularly reopen in light. 2. An action spectrum for the opening response shows maxima for effectiveness near 710 and 480 nm. This action spectrum is similar to that for a high-energy response affecting morphogenesis in many plants. 3. Dropping of the petiole of M. pudica can be photostimulated by irradiation of the primary pulvinus after holding the plants in darkness [4]. 4. The photostimulation of the primary pulvinus is effective only at wavelengths less than 520 nm. Wave bands in the region of 400 to 470 nm are about equally effective. 5. These photoresponses of M. pudica are related to current discussion about the nature of the high-energy and phytochrome photomorphogenic reactions.
摘要
  1. 含羞草的小叶在黑暗中合拢,此时光敏色素主要处于远红光吸收形式(Pfr),当 Pfr 较低时则保持张开[6]。然而,在正常光照条件下,小叶保持张开,而不论光敏色素的形式如何。在黑暗中合拢的小叶定期在光下重新张开。

  2. 对张开反应的作用光谱显示,在 710nm 和 480nm 附近的有效性达到最大值。该作用光谱类似于影响许多植物形态发生的高能反应的作用光谱。

  3. 在将植物置于黑暗中后,对初级叶枕进行照射可以光刺激含羞草叶柄的下垂[4]。

  4. 初级叶枕的光刺激仅在波长小于 520nm 时有效。在 400 到 470nm 区域的波段同样有效。

  5. 含羞草的这些光反应与当前关于高能和光敏色素光形态发生反应本质的讨论有关。

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