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双岐颤藻藻胆体调控突变体的分子特征分析

Molecular characterization of phycobilisome regulatory mutants of Fremyella diplosiphon.

作者信息

Bruns B U, Briggs W R, Grossman A R

机构信息

Department of Plant Biology, Carnegie Institution of Washington, Stanford, California 94305.

出版信息

J Bacteriol. 1989 Feb;171(2):901-8. doi: 10.1128/jb.171.2.901-908.1989.

Abstract

Three classes of pigment mutants were generated in Fremyella diplosiphon in the course of electroporation experiments. The red mutant class had high levels of phycoerythrin in both red and green light and no inducible phycocyanin in red light. Thus, this mutant behaved as if it were always in green light, regardless of light conditions. Blue mutants exhibited normal phycoerythrin photoregulation, whereas the inducible phycocyanin was present at high levels in both red- and green-light-grown cells. Furthermore, the absolute amount of allophycocyanin was increased threefold in comparison with our wild-type strain. Green mutants lost the capacity to accumulate phycoerythrin in green light but showed normal photoregulation of phycocyanin. Analyses of transcript abundance in these mutants demonstrated that changes in the levels of the different phycobilisome components correlated with changes in the levels of mRNAs encoding those components. The characterization of these mutants supports hypotheses previously discussed concerning molecular mechanisms involved in the regulation of the phycobiliprotein gene sets during chromatic adaptation.

摘要

在电击穿孔实验过程中,在双岐颤藻(Fremyella diplosiphon)中产生了三类色素突变体。红色突变体类在红光和绿光下均具有高水平的藻红蛋白,且在红光下没有可诱导的藻蓝蛋白。因此,该突变体的表现就好像它始终处于绿光下,而与光照条件无关。蓝色突变体表现出正常的藻红蛋白光调节,而可诱导的藻蓝蛋白在红光和绿光培养的细胞中均以高水平存在。此外,与我们的野生型菌株相比,别藻蓝蛋白的绝对量增加了三倍。绿色突变体失去了在绿光下积累藻红蛋白的能力,但显示出正常的藻蓝蛋白光调节。对这些突变体中转录本丰度的分析表明,不同藻胆体组分水平的变化与编码这些组分的mRNA水平的变化相关。这些突变体的表征支持了先前讨论的关于在色适应过程中藻胆蛋白基因集调控所涉及的分子机制的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/832f/209681/e9beee6e01d7/jbacter00168-0295-a.jpg

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