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番茄金黄色突变体黄化幼苗中光不活性光敏色素A和绿叶中光活性光敏色素B的鉴定。

Identification of photo-inactive phytochrome A in etiolated seedlings and photo-active phytochrome B in green leaves of the aurea mutant of tomato.

作者信息

Sharma R, López-Juez E, Nagatani A, Furuya M

机构信息

Laboratory of Plant Biological Regulation, Frontier Research Program, RIKEN, Saitama, Japan.

出版信息

Plant J. 1993 Dec;4(6):1035-42. doi: 10.1046/j.1365-313x.1993.04061035.x.

Abstract

The contents of spectrophotometrically measurable phytochrome A (PhyA) and phytochrome B (PhyB) and the corresponding immunochemically detectable apoproteins (PHYA and PHYB) were examined in dark- and light-grown tissues of the aurea mutant of tomato and its wild-type (WT). The amount of PHYA in etiolated aurea seedlings was found to be about 20% of that in the WT; this PHYA showed no photo-reversible changes in absorbance, no downregulation of the level of PHYA in light-grown seedlings, and no differential proteolysis of Pr and Pfr species in vitro which was seen in the case of the WT. By contrast, the amount of PHYB in aurea seedlings was not significantly different from that in WT seedlings. Phytochrome isolated from green leaves of the aurea mutant and purified by ion-exchange chromatography showed a red/far-red reversible spectral change, and its elution profile during chromatography was essentially similar to that of PHYB. The results indicate that aurea is a mutant that is deficient in photoactive PhyA at the etiolated stage, when it contains a spectrally inactive PHYA. However, the mutant contains spectrally active PhyB in its green tissue as does the WT.

摘要

在番茄金黄色突变体及其野生型(WT)的黑暗生长和光照生长组织中,检测了分光光度法可测量的光敏色素A(PhyA)和光敏色素B(PhyB)的含量以及相应的免疫化学可检测脱辅基蛋白(PHYA和PHYB)。发现黄化的金黄色突变体幼苗中PHYA的含量约为野生型的20%;这种PHYA在吸光度上没有光可逆变化,在光照生长的幼苗中PHYA水平没有下调,在体外也没有观察到野生型中出现的Pr和Pfr物种的差异蛋白水解。相比之下,金黄色突变体幼苗中PHYB的含量与野生型幼苗没有显著差异。从金黄色突变体绿叶中分离并通过离子交换色谱法纯化的光敏色素显示出红/远红可逆光谱变化,其在色谱过程中的洗脱图谱与PHYB基本相似。结果表明,金黄色突变体是一种在黄化阶段缺乏光活性PhyA的突变体,此时它含有光谱无活性的PHYA。然而,该突变体在其绿色组织中含有与野生型一样的光谱活性PhyB。

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