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Beta-zeacarotene of the bovine ovary.
Gawienowski AM, Soderstrom DN, Tan B. Gawienowski AM, et al. Biotechnol Appl Biochem. 1986 Apr-Jun;8(2-3):190-4. Biotechnol Appl Biochem. 1986. PMID: 3741631
An investigation of the carotenoids from a bovine ovary extract has revealed the presence of three Porter-Lincoln pathway intermediates of which beta-zeacarotene is previously unreported. Analysis using spectrophotometric and chemical tests reveals beta-zeacarotene
An investigation of the carotenoids from a bovine ovary extract has revealed the presence of three Porter-Lincoln pathway intermediates of w …
Evidence for differential absorption of zeacarotene, cryptoxanthin, and lutein in young broiler chickens.
Tyczkowski JK, Hamilton PB. Tyczkowski JK, et al. Poult Sci. 1986 Jun;65(6):1137-40. doi: 10.3382/ps.0651137. Poult Sci. 1986. PMID: 3737521 Free article.
The contents of the segments were removed and analyzed for content of zeacarotene, cryptoxanthin (monohydroxycarotenoid), and lutein (dihydroxycarotenoid) by high pressure liquid chromatography. Cryptoxanthin, which is poorly absorbed by young chickens, served as a nonabso …
The contents of the segments were removed and analyzed for content of zeacarotene, cryptoxanthin (monohydroxycarotenoid), and lutein …
Cloning and functional analysis of the beta-carotene hydroxylase of Arabidopsis thaliana.
Sun Z, Gantt E, Cunningham FX Jr. Sun Z, et al. J Biol Chem. 1996 Oct 4;271(40):24349-52. doi: 10.1074/jbc.271.40.24349. J Biol Chem. 1996. PMID: 8798688 Free article.
The product of this cDNA adds hydroxyl groups to both beta rings of the symmetrical beta-carotene (beta,beta-carotene) to form zeaxanthin (beta,beta-carotene-3,3'-diol) and converts the monocyclic beta-zeacarotene (7',8'-dihydro-beta,psi-carotene) to hydroxy-beta-zeacar
The product of this cDNA adds hydroxyl groups to both beta rings of the symmetrical beta-carotene (beta,beta-carotene) to form zeaxanthin (b …
Monocyclic carotenoid biosynthetic pathway in the yeast Phaffia rhodozyma (Xanthophyllomyces dendrorhous).
An GH, Cho MH, Johnson EA. An GH, et al. J Biosci Bioeng. 1999;88(2):189-93. doi: 10.1016/s1389-1723(99)80200-x. J Biosci Bioeng. 1999. PMID: 16232596
The yellow mutants grown with 0.01% triethylamine (TEA) or 2 mM 2-methylimidazole (MI) produced significantly increased amounts of torulene, which is a monocyclic carotene produced from neurosporene through beta-zeacarotene. When red strains of P. rhodozyma were grown with …
The yellow mutants grown with 0.01% triethylamine (TEA) or 2 mM 2-methylimidazole (MI) produced significantly increased amounts of torulene, …
Inhibition of carotenoid synthesis in Micrococcus roseus.
Cooney JJ, Berry RA. Cooney JJ, et al. Can J Microbiol. 1981 Apr;27(4):421-5. doi: 10.1139/m81-064. Can J Microbiol. 1981. PMID: 7237286
CPTA inhibited canthaxanthin synthesis and caused accumulation of beta-zeacarotene and gamma-carotene and their mono- and di-hydroxy derivatives. ...Therefore, carotenoid cyclization in M. roseus does not involve neurosporene or lycopene and must occur early in carotene bi …
CPTA inhibited canthaxanthin synthesis and caused accumulation of beta-zeacarotene and gamma-carotene and their mono- and di-hydroxy …
The Carotenoid Hydrocarbons of Euglena gracilis and Derived Mutants.
Gross JA, Stroz RJ. Gross JA, et al. Plant Physiol. 1975 Feb;55(2):175-7. doi: 10.1104/pp.55.2.175. Plant Physiol. 1975. PMID: 16659045 Free PMC article.
With the exception of PR-4, in which no C(40) carotenoids were detected, the following carotenes were identified in all from their mass spectra: phytoene, phytofluene, zeta-carotene, beta-zeacarotene, and beta-carotene. Of these, phytoene and beta-zeacarotene had no …
With the exception of PR-4, in which no C(40) carotenoids were detected, the following carotenes were identified in all from their mass spec …
Bleaching activity of 4-phenyl-3-(substituted benzylthio)-4H-1,2,4-triazoles.
Yamada N, Kusano D, Kuwano E. Yamada N, et al. Biosci Biotechnol Biochem. 2002 Aug;66(8):1671-6. doi: 10.1271/bbb.66.1671. Biosci Biotechnol Biochem. 2002. PMID: 12353626 Free article.
In the dark condition, compound 39 inhibited the formation of such carotenoids as beta-carotene, violaxanthin, neoxanthin and lutein, resulting in the formation of zeta-carotene, phytoene, phytofluene and beta-zeacarotene, which were not detected in the untreated control. …
In the dark condition, compound 39 inhibited the formation of such carotenoids as beta-carotene, violaxanthin, neoxanthin and lutein, result …
The carotenoids of Flavobacterium strain R1560.
Britton G, Brown DJ, Goodwin TW, Leuenberger FJ, Schocher AJ. Britton G, et al. Arch Microbiol. 1977 May 13;113(1-2):33-7. doi: 10.1007/BF00428576. Arch Microbiol. 1977. PMID: 889385
Also present were small amounts of 15-cis-phytoene, phytofluene, "zeta-carotene" (7,8,7',8'-tetrahydro-psi, psi-carotene plus 7,8,11,12-tetrahydro-psi, psi-carotene), neurosporene, lycopene, beta-zeacarotene, gamma-carotene, beta-carotene, beta-cryptoxanthin, rubixanthin, …
Also present were small amounts of 15-cis-phytoene, phytofluene, "zeta-carotene" (7,8,7',8'-tetrahydro-psi, psi-carotene plus 7,8,11,12-tetr …
Isolation and Characterization of Carotenoid-rich Lipid Globules from Peridinium foliaceum.
Withers NW, Haxo FT. Withers NW, et al. Plant Physiol. 1978 Jul;62(1):36-9. doi: 10.1104/pp.62.1.36. Plant Physiol. 1978. PMID: 16660464 Free PMC article.
In addition to beta-carotene, gamma-carotene, and canthaxanthin, the carotenogenic precursors: phytoene, phytofluence, zeta-carotene and beta-zeacarotene were isolated from the globules. Corrected fluorescence maxima of phytoene and phytofluene in hexane were recorded at 3 …
In addition to beta-carotene, gamma-carotene, and canthaxanthin, the carotenogenic precursors: phytoene, phytofluence, zeta-carotene and bet …
32 results