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通过对拟南芥中phyA、phyB和hy4单突变体、双突变体及三突变体的分析,揭示了隐花色素1与光敏色素B之间的条件协同作用。

Conditional synergism between cryptochrome 1 and phytochrome B is shown by the analysis of phyA, phyB, and hy4 simple, double, and triple mutants in Arabidopsis.

作者信息

Casal J J, Mazzella M A

机构信息

Departamento de Ecología, Facultad de Agronomía, Universidad de Buenos Aires, Av. San Martín 4453, 1417-Buenos Aires, Argentina.

出版信息

Plant Physiol. 1998 Sep;118(1):19-25. doi: 10.1104/pp.118.1.19.

Abstract

Wild-type or phyA, phyB, or hy4 mutant Arabidopsis seedlings lacking phytochrome A (phyA), phytochrome B (phyB), or cryptochrome 1 (cry1), respectively, and the double and triple mutants were used in combination with blue-light treatments given simultaneously with red or far-red light. We investigated the interaction between phytochromes and cry1 in the control of hypocotyl growth and cotyledon unfolding. Under conditions deficient for cry1 (short exposures to blue light) or phyB (far-red background), these photoreceptors acted synergistically: Under short exposures to blue light (3 h/d) added to a red-light background, cry1 activity required phyB (e.g. the hy4 mutant was taller than the wild type but the phyBhy4 mutant was not taller than the phyB mutant). Under prolonged exposures to blue light (24 h/d) added to a far-red light background, phyB activity required cry1 (e.g. the phyAphyB mutant was taller than the phyA mutant but the phyAphyBhy4 mutant was not taller than the phyAhy4 mutant). Under more favorable light inputs, i.e. prolonged exposures to blue light added to a red-light background, the effects of cry1 and phyB were independent. Thus, the synergism between phyB and cry1 is conditional. The effect of cry1 was not reduced by the phyA mutation under any tested light condition. Under continuous blue light the triple mutant phyAphyBhy4 showed reduced hypocotyl growth inhibition and cotyledon unfolding compared with the phyAphyB mutant. The action of cry1 in the phyAphyB double mutant was higher under the red-light than the far-red-light background, indicating a synergistic interaction between cry1 and phytochromes C, D, or E; however, a residual action of cry1 independent of any phytochrome is likely to occur.

摘要

分别缺失光敏色素A(phyA)、光敏色素B(phyB)或隐花色素1(cry1)的野生型或phyA、phyB或hy4突变拟南芥幼苗,以及双突变体和三突变体,与在给予红光或远红光的同时进行蓝光处理相结合。我们研究了光敏色素与cry1在控制下胚轴生长和子叶展开中的相互作用。在cry1缺乏(短时间蓝光照射)或phyB缺乏(远红光背景)的条件下,这些光感受器协同作用:在短时间蓝光照射(每天3小时)添加到红光背景下,cry1活性需要phyB(例如,hy4突变体比野生型高,但phyBhy4突变体不比phyB突变体高)。在长时间蓝光照射(每天24小时)添加到远红光背景下,phyB活性需要cry1(例如,phyAphyB突变体比phyA突变体高,但phyAphyBhy4突变体不比phyAhy4突变体高)。在更有利的光照条件下,即长时间蓝光照射添加到红光背景下,cry1和phyB的作用是独立的。因此,phyB和cry1之间的协同作用是有条件的。在任何测试光照条件下,phyA突变都不会降低cry1的作用。在连续蓝光下,与phyAphyB突变体相比,三突变体phyAphyBhy4表现出下胚轴生长抑制和子叶展开减少。cry1在phyAphyB双突变体中的作用在红光背景下比在远红光背景下更高,表明cry1与光敏色素C、D或E之间存在协同相互作用;然而,cry1可能存在独立于任何光敏色素的残余作用。

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