Suppr超能文献

在表达拟南芥光敏色素B的转基因马铃薯中光敏色素A和B的荧光及光化学特性

Fluorescence and photochemical characterization of phytochromes A and B in transgenic potato expressing Arabidopsis phytochrome B.

作者信息

Sineshchekov V, Ogorodnikova O, Thiele A, Gatz C

机构信息

Biology Department, M.V Lomonosov Moscow State University, Russia.

出版信息

J Photochem Photobiol B. 2000 Dec;59(1-3):139-46. doi: 10.1016/s1011-1344(00)00151-2.

Abstract

Phytochrome in etiolated sprouts of wild type (WT) potato and its transgenic strains (DARA5 and DARA12) expressing Arabidopsis thaliana phytochrome B (phyB) was investigated using low-temperature (85 K) fluorescence spectroscopy and photochemistry. Phytochrome content, [Ptot], position of the Pr emission and excitation spectra, lambda(max), and extent of the Pr-->lumi-R, gamma1, and Pr-->Pfr, gamma2, phototransformations (at 85 and 273 K, respectively) were shown to vary in the transgenic lines and WT depending on tissue used (upper vs. lower parts of etiolated sprouts) and light-induced phytochrome depletion. Differences in the parameters between the transgenic lines and WT were detected which were interpreted in terms of the two phenomenological Pr types: a labile Pr' with gamma1 approximately 0.5 consisting of a major phytochrome A (phyA) fraction (phyA') and a relatively conserved Pr" with gamma1 = 0 comprising a minor phyA fraction (phyA") and phyB. Both DARA lines had higher [Pr"] as compared with WT in the lower parts of etiolated stems, especially after light-induced phytochrome depletion (residual phytochrome in DARA5 and DARA12 made up to one-third of its initial level vs. <5% in WT). These differences were associated with the expression of Arabidopsis phyB in the DARA lines and its higher light stability than that of phyA. Arabidopsis phyB expressed in potato was characterised by lambda(max) = 683/669 nm in the emission/excitation (absorption) spectra and gamma1 = 0. PhyB also revealed a relatively low gamma2 (approx. 0.5) and its early red drop as compared with the gamma2 wavelength dependence for phyA. This is believed to contribute to the lower signalling ability of phyB and to confine the region (red) of its physiological activity.

摘要

利用低温(85K)荧光光谱法和光化学方法,研究了野生型(WT)马铃薯及其表达拟南芥光敏色素B(phyB)的转基因株系(DARA5和DARA12)黄化芽中的光敏色素。结果表明,光敏色素含量[Ptot]、Pr发射光谱和激发光谱的位置、λ(max)以及Pr→lumi-R(γ1)和Pr→Pfr(γ2)光转化程度(分别在85K和273K下)在转基因株系和野生型中因所用组织(黄化芽的上部与下部)以及光诱导的光敏色素消耗而有所不同。检测到转基因株系和野生型之间参数的差异,这些差异根据两种现象学Pr类型进行了解释:一种是γ1约为0.5的不稳定Pr',主要由主要的光敏色素A(phyA)组分(phyA')组成;另一种是γ1 = 0的相对保守的Pr",由少量的phyA组分(phyA")和phyB组成。在黄化茎的下部,两个DARA株系的[Pr"]均高于野生型,尤其是在光诱导的光敏色素消耗后(DARA5和DARA12中的残留光敏色素占其初始水平的三分之一,而野生型中<5%)。这些差异与DARA株系中拟南芥phyB的表达及其比phyA更高的光稳定性有关。在马铃薯中表达的拟南芥phyB在发射/激发(吸收)光谱中的特征为λ(max) = 683/669nm,γ1 = 0。与phyA的γ2波长依赖性相比,phyB还显示出相对较低的γ2(约0.5)及其早期红降。据信这有助于降低phyB的信号传导能力并限制其生理活性区域(红色)。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验