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Peniophora sanguinea

Simple alkylated polyhydroxyterphenyls like penioflavin (114), isolated from Peniophora sanguinea, can be derived formally from a C-18 terphenylquinone as precursor and subsequent formation of a new carbon-carbon bond [94]. The biosynthesis of xylerithrin (118) and related pigments from P. sanguinea, according to the studies of Von Massow [113, 114], requires the insertion of a third unbranched phenylpropanoid unity on a pulvinic acid intermediate derived from a terphenylquinone, as indicated in Scheme 2. [Pg.298]

Fungus Pigments XVI. The Pigments of Peniophora sanguinea Bres. Acta Chem. Scand. 19, 2242 (1965). [Pg.268]

Von Massow, F. A Combination of Thin-layer Chromatographic Systems for Analysis of the Pij ents from Peniophora sanguinea (Fr.) Bres. J. Chromatogr. 105, 391 (1975). [Pg.284]

Incorporation of Phenylpropanes into Xylerythrin-Type Pigments in Peniophora sanguinea. Phytochem. 16, 1695 (1977). [Pg.284]

Produced by Peniophora sanguinea Bres. Acta. Chem. Scand. 24, 3444 (1970). [Pg.190]

Paecilomyces victoria Parmelia birulae Peltophorum interme Penicillium brevicompactum Penicillium canescens Penicillium citreo-viride Penicillium citrinum Penicillium cyclopium Penicillium duclauxi Penicillium herquei Penicillium stipitatum Penicillium thomii Penicillium viridicatum Peniophora sanguinea Periconia macrospinosa Pestalotia ramula Pseudomonas yoshitomiensis Pyricularia oryzae... [Pg.62]


See other pages where Peniophora sanguinea is mentioned: [Pg.291]    [Pg.291]    [Pg.707]    [Pg.70]    [Pg.135]    [Pg.135]    [Pg.181]    [Pg.36]   
See also in sourсe #XX -- [ Pg.29 , Pg.293 , Pg.294 , Pg.298 ]

See also in sourсe #XX -- [ Pg.135 , Pg.181 ]




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