拟南芥中隐花色素依赖的下胚轴生长抑制作用光谱。

Action spectrum for cryptochrome-dependent hypocotyl growth inhibition in Arabidopsis.

作者信息

Ahmad Margaret, Grancher Nicholas, Heil Mary, Black Robert C, Giovani Baldissera, Galland Paul, Lardemer Danielle

机构信息

Universite Paris VI, Tour 53 E 5, Casier 156, 4, Place Jussieu, 75252 Paris cedex 05, France.

出版信息

Plant Physiol. 2002 Jun;129(2):774-85. doi: 10.1104/pp.010969.

Abstract

Cryptochrome blue-light photoreceptors are found in both plants and animals and have been implicated in numerous developmental and circadian signaling pathways. Nevertheless, no action spectrum for a physiological response shown to be entirely under the control of cryptochrome has been reported. In this work, an action spectrum was determined in vivo for a cryptochrome-mediated high-irradiance response, the blue-light-dependent inhibition of hypocotyl elongation in Arabidopsis. Comparison of growth of wild-type, cry1cry2 cryptochrome-deficient double mutants, and cryptochrome-overexpressing seedlings demonstrated that responsivity to monochromatic light sources within the range of 390 to 530 nm results from the activity of cryptochrome with no other photoreceptor having a significant primary role at the fluence range tested. In both green- and norflurazon-treated (chlorophyll-deficient) seedlings, cryptochrome activity is fairly uniform throughout its range of maximal response (390-480 nm), with no sharply defined peak at 450 nm; however, activity at longer wavelengths was disproportionately enhanced in CRY1-overexpressing seedlings as compared with wild type. The action spectrum does not correlate well with the absorption spectra either of purified recombinant cryptochrome photoreceptor or to that of a second class of blue-light photoreceptor, phototropin (PHOT1 and PHOT2). Photoreceptor concentration as determined by western-blot analysis showed a greater stability of CRY2 protein under the monochromatic light conditions used in this study as compared with broad band blue light, suggesting a complex mechanism of photoreceptor activation. The possible role of additional photoreceptors (in particular phytochrome A) in cryptochrome responses is discussed.

摘要

隐花色素蓝光光感受器存在于植物和动物中,并参与了众多发育和昼夜节律信号通路。然而,尚未有报道称某种生理反应的作用光谱完全受隐花色素控制。在这项研究中,测定了拟南芥中隐花色素介导的高辐照度反应(蓝光依赖的下胚轴伸长抑制)的体内作用光谱。对野生型、cry1cry2隐花色素缺陷双突变体和隐花色素过表达幼苗的生长进行比较表明,在390至530纳米范围内对单色光源的反应性源于隐花色素的活性,在测试的光通量范围内没有其他光感受器起主要作用。在绿色和氟草酮处理(叶绿素缺乏)的幼苗中,隐花色素活性在其最大反应范围(390 - 480纳米)内相当均匀,在450纳米处没有明显的峰值;然而,与野生型相比,CRY1过表达幼苗中较长波长的活性不成比例地增强。该作用光谱与纯化的重组隐花色素光感受器或第二类蓝光光感受器向光素(PHOT1和PHOT2)的吸收光谱均无很好的相关性。通过蛋白质免疫印迹分析测定的光感受器浓度表明,与宽带蓝光相比,本研究中使用的单色光条件下CRY2蛋白具有更高的稳定性,这表明光感受器激活机制复杂。讨论了其他光感受器(特别是光敏色素A)在隐花色素反应中的可能作用。

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