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拟南芥中光受体相互作用对下胚轴伸长的调控

Control of hypocotyl elongation in Arabidopsis thaliana by photoreceptor interaction.

作者信息

Hennig L, Poppe C, Unger S, Schäfer E

机构信息

Institut für Biologie II, Universität Freiburg, Germany.

出版信息

Planta. 1999 Apr;208(2):257-63. doi: 10.1007/s004250050557.

Abstract

In order to test the interaction of different phytochromes and blue-light receptors, etiolated seedlings of wild-type Arabidopsis thaliana (L.) Heynh., a phytochrome (phy) B-overexpressor line (ABO), and the photoreceptor mutants phyA-201, phyB-5, hy4-2.23n, fha-1, phyA-201/phyB-5, and phyA-201/hy4-2.23n were exposed to red and far-red light pulses after various preirradiations. The responsiveness to the inductive red pulses is primarily mediated by phyB which is rather stable in its far-red-absorbing form as demonstrated by a very slow loss of reversibility. Without preirradiation the red pulses had an impact on hypocotyl elongation only in PHYA mutants but not in the wild type. This indicates a suppression of phyB function by the presence of phyA. Preirradiation with either far-red or blue light resulted in an inhibition of hypocotyl elongation by red pulses in the wild type. Responsiveness amplification by far-red light is mediated by phyA and disappears slowly in the dark. The extent of responsiveness amplification by blue light was identical in the wild type and in the absence of phyA, or the cryptochromes cryl (hy4-2.23n) or cry2 (fha-1). Therefore, we conclude that stimulation of phyB by blue light preirradiation is either mediated by an additional still-unidentified blue-light-absorbing pigment or that phyA, cry1 and cry2 substitute for each other completely. Both blue and red preirradiation established responsiveness to red pulses in phyA-201/phyB-5 double mutants. These results demonstrate that inhibition of hypocotyl elongation by red pulses is not only mediated by phyB but also by a phytochrome(s) other than phyA and phyB.

摘要

为了测试不同光敏色素和蓝光受体之间的相互作用,将野生型拟南芥(L.)Heynh.、光敏色素(phy)B过表达系(ABO)以及光受体突变体phyA - 201、phyB - 5、hy4 - 2.23n、fha - 1、phyA - 201/phyB - 5和phyA - 201/hy4 - 2.23n的黄化幼苗在各种预照射后暴露于红光和远红光脉冲下。对诱导性红光脉冲的反应主要由phyB介导,phyB以其远红光吸收形式相当稳定,这一点通过可逆性的非常缓慢丧失得以证明。在没有预照射的情况下,红光脉冲仅对PHYA突变体的下胚轴伸长有影响,而对野生型没有影响。这表明phyA的存在会抑制phyB的功能。用远红光或蓝光进行预照射会导致野生型中红光脉冲抑制下胚轴伸长。远红光引起的反应性放大由phyA介导,并且在黑暗中会缓慢消失。在野生型以及不存在phyA、隐花色素cry1(hy4 - 2.23n)或cry2(fha - 1)的情况下,蓝光引起的反应性放大程度相同。因此,我们得出结论,蓝光预照射对phyB的刺激要么由另一种尚未鉴定的蓝光吸收色素介导,要么phyA、cry1和cry2可以完全相互替代。蓝光和红光预照射都使phyA - 201/phyB - 5双突变体对红光脉冲产生反应。这些结果表明,红光脉冲对下胚轴伸长的抑制不仅由phyB介导,还由phyA和phyB以外的一种或多种光敏色素介导。

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