نتایج جستجو برای: phytoene

تعداد نتایج: 632  

Journal: :Zeitschrift fur Naturforschung. C, Journal of biosciences 1991
H Linden N Misawa D Chamovitz I Pecker J Hirschberg G Sandmann

Three different phytoene desaturase genes, from Rhodobacter capsulatus, Erwinia uredovora, and Synechococcus PCC 7942, have been functionally complemented with a gene construct from E. uredovora which encodes all enzymes responsible for formation of 15-cis phytoene in Escherichia coli. As indicated by the contrasting reaction products detected in the pigmented E. coli cells after co-transformat...

Journal: :Plant physiology 1975
J A Gross R J Stroz

An examination of the carotene fractions extracted from Euglena gracilis Z and pressure-bleached Euglena mutants PR-1, PR-2, PR-3, and PR-4 revealed phytoene in mutants PR-1, PR-2, and PR-3. Photosynthetic E. gracilis Z cultured at different light intensities showed no detectable phytoene, nor was phytoene found in mutant PR-4. However, dark-cultured E. gracilis Z yielded readily assayable amou...

Journal: :The Journal of biological chemistry 1993
D Chamovitz G Sandmann J Hirschberg

Mutant strains of the cyanobacterium Synechococcus sp. PCC 7942 that are resistant to the herbicides norflurazon and fluridone were analyzed. These herbicides inhibit phytoene desaturase, a key enzyme in the carotenoid biosynthetic pathway. In three mutants the phenotype was related to specific point mutations in pds, the gene encoding phytoene desaturase. Since the resistance was manifested in...

Journal: :Journal of agricultural and food chemistry 2000
A J Simkin J Breitenbach M Kuntz G Sandmann

Pepper leaves treated with the herbicide J852 show an accumulation of phytoene and zeta-carotene, whereas treatment with norflurazon led to an accumulation of only phytoene. The effects of these herbicides were examined in vitro after the expression of carotenoid desaturases in Escherichia coli. Whereas norflurazon is a potent inhibitor of phytoene desaturase (PDS) (I(50) = 0.12 microM) but not...

2013
Gerhard Sandmann Manuela Albrecht

Colorless carotenoids were accum ulated, analyzed and quantified in heterotrophicallygrow n Scenedesm us cultures treated with the bleaching herbicide norflurazon. By optical, IR and m ass spectroscopy 15-cis as well as all-trans phytofluene, 15-cis phytoenes and traces o f its all-trans isom er were identified. Furtherm ore, a phytoene epoxyde and several hydroxyphytoenes were assigned. C om p...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2002
Paul D Fraser Susanne Romer Cathie A Shipton Philippa B Mills Joy W Kiano Norihiko Misawa Rachel G Drake Wolfgang Schuch Peter M Bramley

Phytoene synthase from the bacterium Erwinia uredovora (crtB) has been overexpressed in tomato (Lycopersicon esculentum Mill. cv. Ailsa Craig). Fruit-specific expression was achieved by using the tomato polygalacturonase promoter, and the CRTB protein was targeted to the chromoplast by the tomato phytoene synthase-1 transit sequence. Total fruit carotenoids of primary transformants (T(0)) were ...

2012
Phoi T. Tran Marina N. Sharifi Subhajit Poddar Rachel M. Dent Krishna K. Niyogi

Photosynthetic organisms synthesize carotenoids for harvesting light energy, photoprotection, and maintaining the structure and function of photosynthetic membranes. A light-sensitive, phytoene-accumulating mutant, pds1-1, was isolated in Chlamydomonas reinhardtii and found to be genetically linked to the phytoene desaturase (PDS) gene. PDS catalyzes the second step in carotenoid biosynthesis--...

Journal: :Microbiology 2007
Zhenjian Xu Bing Tian Zongtao Sun Jun Lin Yuejin Hua

The phytoene-related desaturases are the key enzymes in the carotenoid biosynthetic pathway. The gene encoding phytoene desaturase in the deinoxanthin synthesis pathway of Deinococcus radiodurans was identified and characterized. Two putative phytoene desaturase homologues (DR0861 and DR0810) were identified by analysis of conserved amino acid regions, and the former displayed the highest ident...

Journal: :The Plant cell 1995
S R Norris T R Barrette D DellaPenna

Carotenoids are C40 tetraterpenoids synthesized by nuclear-encoded multienzyme complexes located in the plastids of higher plants. To understand further the components and mechanisms involved in carotenoid synthesis, we screened Arabidopsis for mutations that disrupt this pathway and cause accumulation of biosynthetic intermediates. Here, we report the identification and characterization of two...

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