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72Nigel C. Veitch.
Isoflavonoids of the Leguminosae, Nat. Prod. Rep., 2009, 26, 776. Feng Zhen-Gao, Bai Wen-Ju, Pettus Thomas R. R..
Unified Total Syntheses of (−)-Medicarpin, (−)-Sophoracarpan A, and (±)-Kushecarpin A with Some Structural Revisions, Angewandte Chemie International Edition, 2015 Degradation of the pterocarpan phytoalexin medicarpin by Ascochyta rabiei, Archives of Microbiology Induced pterocarpan formation in two Melilotus species, Netherlands Journal of Plant Pathology BTH and BABA induce resistance in pea against rust (Uromyces pisi) involving differential phytoalexin accumulation, Planta Regulation by sulfhydryl groups of glyceollin accumulation in soybean hypocotyls, Planta Plantlet formation via somatic embryogenesis and LC ESI Q-TOF MS determination of secondary metabolites in Butea monosperma (Lam.) Kuntze, Acta Physiologiae Plantarum Phytoalexine und verwandte Pflanzenstoffe, Fortschritte der Chemie Organischer Naturstoffe / Progress in the Chemistry of Organic Natural Products Pterocarpans: interesting natural products with antifungal activity and other biological properties, Phytochemistry Reviews Biochemische Wechselwirkungen zwischen h??heren und niederen Pflanzen, ??kologische Biochemie