نتایج جستجو برای: phytoene

تعداد نتایج: 632  

Journal: :Zeitschrift fur Naturforschung. C, Journal of biosciences 2001
J Breitenbach A Vioque G Sandmann

The function of gene sll0033 from Synechocystis 6803 which is homologous to the bacterial crtI-type phytoene desaturase genes was elucidated as a novel carotene isomerase. Escherichia coli transformed with all genes necessary for the formation of zeta-carotene and expressing a zeta-carotene desaturase synthesized the positional isomer prolycopene (7,9,7',9'Z lycopene) which cannot be cyclized i...

2014
Rie Yatsunami Ai Ando Ying Yang Shinichi Takaichi Masahiro Kohno Yuriko Matsumura Hiroshi Ikeda Toshiaki Fukui Kaoru Nakasone Nobuyuki Fujita Mitsuo Sekine Tomonori Takashina Satoshi Nakamura

The carotenoids produced by extremely halophilic archaeon Haloarcula japonica were extracted and identified by their chemical, chromatographic, and spectroscopic characteristics (UV-Vis and mass spectrometry). The composition (mol%) was 68.1% bacterioruberin, 22.5% monoanhydrobacterioruberin, 9.3% bisanhydrobacterioruberin, <0.1% isopentenyldehydrorhodopin, and trace amounts of lycopene and phy...

Journal: :The Journal of biological chemistry 2008
Jonathan T Vogel Bao-Cai Tan Donald R McCarty Harry J Klee

In many organisms, various enzymes mediate site-specific carotenoid cleavage to generate biologically active apocarotenoids. These carotenoid-derived products include provitamin A, hormones, and flavor and fragrance molecules. In plants, the CCD1 enzyme cleaves carotenoids at 9,10 (9',10') bonds to generate multiple apocarotenoid products. Here we systematically analyzed volatile apocarotenoids...

Journal: :The Biochemical journal 1993
P D Fraser H Linden G Sandmann

The Synechococcus phytoene desaturase has been isolated from an overexpressing strain of Escherichia coli. The plasma pPDSde135 mediated the overexpression of the full-length polypeptide directly. The recombinant protein comprised 5% of the total cellular protein and was found predominantly in the inclusion body fraction. Urea was used to solubilize the recombinant protein from the inclusion fr...

Journal: :Applied and environmental microbiology 2009
Ken Ukibe Keisuke Hashida Nobuyuki Yoshida Hiroshi Takagi

The red carotenoid astaxanthin possesses higher antioxidant activity than other carotenoids and has great commercial potential for use in the aquaculture, pharmaceutical, and food industries. In this study, we produced astaxanthin in the budding yeast Saccharomyces cerevisiae by introducing the genes involved in astaxanthin biosynthesis of carotenogenic microorganisms. In particular, expression...

2014
In Vivo Lesley Wassef Ruth Wirawan Michael Chikindas Paul A. S. Breslin Daniel J. Hoffman Loredana Quadro

Vitamin A deficiency (VAD) is an overwhelming public health problem that affects hundreds of millions of people worldwide. A definitive solution to VAD has yet to be identified. Because it is an essential nutrient, vitamin A or its carotenoid precursor b-carotene can only be obtained from food or supplements. In this study, wewanted to establish whether b-carotene produced in themouse intestine...

2014
Jian-Xin Liu Chung-Yi Chiou Chin-Hui Shen Peng-Jen Chen Yao-Chung Liu Chin-Der Jian Xiao-Lan Shen Fu-Quan Shen Kai-Wun Yeh

Phytoene synthase (PSY) is the first rate-limiting regulatory enzyme in the carotenoid biosynthesis pathway. In order to modify the floral color pattern by reducing carotenoid contents, a phytoene synthase-RNAi construct was delivered into protocorm-like body (PLB) of Oncidium hybrid orchid. The transgenic orchids show down-regulated level of PSY and geranyl synthase gene. They displayed semi-d...

2015
Meiya Li Yan Cui Zhibing Gan Chunlei Shi Xianming Shi Graziano Riccioni

Phytoene synthase (PSY) catalyzes the condensation of two molecules of geranylgeranyl pyrophosphate to form phytoene, the first colorless carotene in the carotenoid biosynthesis pathway. So it is regarded as the crucial enzyme for carotenoid production, and has unsurprisingly been involved in genetic engineering studies of carotenoid production. In this study, the psy gene from Chlorella protot...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
David E Kachanovsky Shdema Filler Tal Isaacson Joseph Hirschberg

Tomato (Solanum lycopersicum) fruit accumulate the red carotenoid pigment lycopene. The recessive mutation yellow-flesh (locus r) in tomato eliminates fruit carotenoids by disrupting the activity of the fruit-specific phytoene synthase (PSY1), the first committed step in the carotenoid biosynthesis pathway. Fruits of the recessive mutation tangerine (t) appear orange due to accumulation of 7,9,...

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