Phytochemical profile of Schiekia orinocensis (Haemodoraceae)
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[1] M. Simpson,et al. Vegetative Anatomy of the Haemodoraceae and Its Phylogenetic Significance , 2017, International Journal of Plant Sciences.
[2] Riya C. Menezes,et al. Cultured roots of Xiphidium caeruleum: Phenylphenalenones and their biosynthetic and extractant-dependent conversion. , 2017, Phytochemistry.
[3] Riya C. Menezes,et al. Phenylbenzoisoquinolindione alkaloids accumulate in stamens of Xiphidium caeruleum Aubl. flowers. , 2016, Phytochemistry.
[4] Riya C. Menezes,et al. Phenylphenalenones protect banana plants from infection by Mycosphaerella fijiensis and are deactivated by metabolic conversion , 2015, Plant, cell & environment.
[5] R. Brkljača,et al. Phytochemical Investigation of the Constituents Derived from the Australian Plant Macropidia fuliginosa. , 2015, Journal of natural products.
[6] R. Brkljača,et al. HPLC-NMR and HPLC-MS Profiling and Bioassay-Guided Identification of Secondary Metabolites from the Australian Plant Haemodorum spicatum. , 2015, Journal of natural products.
[7] J. Popp,et al. Phenalenone-type phytoalexins mediate resistance of banana plants (Musa spp.) to the burrowing nematode Radopholus similis , 2013, Proceedings of the National Academy of Sciences.
[8] B. Schneider,et al. Phytochemical profile of aerial parts and roots of Wachendorfia thyrsiflora L. studied by LC-DAD-SPE-NMR. , 2012, Phytochemistry.
[9] D. Hölscher,et al. Co-occurrence of phenylphenalenones and flavonoids in Xiphidium caeruleum Aubl. flowers. , 2012, Phytochemistry.
[10] Y. Takeda,et al. A glycerol α-d-glucuronide and a megastigmane glycoside from the leaves of Guettardaspeciosa L. , 2011, Journal of Natural Medicines.
[11] F. Echeverri,et al. O-Methylation of phenylphenalenone phytoalexins in Musaacuminata and Wachendorfia thyrsiflora. , 2010, Phytochemistry.
[12] A. Saxena,et al. Flavone Glycoside Based Validated RP-LC Method for Quality Evaluation of Prishniparni (Uraria picta) , 2009 .
[13] X. Yao,et al. Flavonoids and a New Polyacetylene from Bidens parviflora Willd , 2008, Molecules.
[14] A. Zarrelli,et al. Revised structures of phenylphenalene derivatives from Eichhornia crassipes , 2008 .
[15] Myung-Koo Lee,et al. Monoamine oxidase inhibitory components fromCayratia japonica , 2007, Archives of pharmacal research.
[16] B. Schneider,et al. Laser microdissection and cryogenic nuclear magnetic resonance spectroscopy: an alliance for cell type-specific metabolite profiling , 2007, Planta.
[17] A. Simpson,et al. Purge NMR: effective and easy solvent suppression. , 2005, Journal of magnetic resonance.
[18] D. Hölscher,et al. The biosynthesis of 8-phenylphenalenones from Eichhornia crassipes involves a putative aryl migration step. , 2005, Phytochemistry.
[19] B. Schneider,et al. Histochemical analysis of phenylphenalenone-related compounds in Xiphidium caeruleum (Haemodoraceae) , 2003, Planta.
[20] B. Schneider,et al. Organ-specific analysis of phenylphenalenone-related compounds in Xiphidium caeruleum. , 2002, Phytochemistry.
[21] N. Oldham,et al. Phenylphenalenone-related compounds: chemotaxonomic markers of the haemodoraceae from Xiphidium caeruleum. , 2002, Journal of natural products.
[22] D. Hölscher,et al. Phenalenones from Strelitzia reginae. , 2000, Journal of natural products.
[23] D. Hölscher,et al. Phenylphenalenones from root cultures of Anigozanthos preissii , 1997 .
[24] F. Echeverri,et al. Phenalenone-type phytoalexins from Musa acuminata. Synthesis of 4-phenyl-phenalenones , 1994 .
[25] M. Carter,et al. Luteolin 7-O-(6″-O-malonyl)-β-d-glucoside and trans-chlorogenic acid: Oviposition stimulants for the black swallowtail butterfly , 1988 .
[26] J. M. Edwards,et al. Naturally occurring phenalenones and related compounds. , 1981, Fortschritte der Chemie organischer Naturstoffe = Progress in the chemistry of organic natural products. Progres dans la chimie des substances organiques naturelles.
[27] K. R. Markham,et al. Carbon-13 NMR studies of flavonoids—I , 1976 .
[28] A. C. Bazan,et al. Phenalenone pigments of the flowers of Lachnanthes tinctoria , 1976 .
[29] R. Cooke,et al. Colouring Matters of Australian Plants. XVIII. Constituents of Anigozanthos rufus , 1975 .
[30] U. Weiss,et al. Quinone methides derived from 5-oxa and 5-aza-9-phenyl-1-phenalenone in the flowers of (haemodoraceae). , 1972 .
[31] R. G. Cooke. Phenylnaphthalene pigments of Lachnanthes tinctoria , 1970 .
[32] W. Segal,et al. Colourning matters of Australian plants. IV. Haemocorin: A unique glycoside from Haemodorum corymbosum Vahl , 1955 .