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. 1997 Mar;113(3):773–778. doi: 10.1104/pp.113.3.773

Biosynthesis of GA73 Methyl Ester in Lygodium Ferns.

T Yamauchi 1, N Oyama 1, H Yamane 1, N Murofushi 1, H Schraudolf 1, M Pour 1, H Seto 1, L N Mander 1
PMCID: PMC158195  PMID: 12223642

Abstract

Biosynthesis of GA73 methyl ester (GA73-Me), the principal antheridiogen in Lygodium ferns, was investigated. From the methanol extract of prothallia of Lygodium circinnatum, GA25, GA73, GA73-Me, GA88-Me, and a few unknown GA73 derivatives were detected by GC-MS. Because the presence of GA25 suggests that GA24, a direct precursor of GA25, could also be present in L. circinnatum prothallia, we used feeding experiments to investigate the possibility that GA24 is a precursor of GA73-Me. In L. circinnatum prothallia, [2H2]GA24 was converted into [2H2]GA73-Me and a trace amount of [2H2]GA9-Me, whereas [2H3]GA9 was converted into [2H3]GA9-Me and [2H3]monohydroxy-GA9-Me. Because GA73-Me, GA9-Me, and their monohydroxy derivatives had been identified by GC-MS from the culture medium of L. circinnatum prothallia, our results suggest that GA73-Me is biosynthesized from GA24 via GA73, and that neither GA9 nor GA9-Me is a precursor of GA73-Me. Though the possibility had been suggested that GA73-Me is biosynthesized from 9,15-cyclo-GA9 (GA103), [2H2]GA103 was not converted into [2H2]GA73-Me.

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Selected References

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  1. Zanno P. R., Endo M., Nakanishi K., Näf U., Stein C. On the structural diversity of fern antheridiogens. Naturwissenschaften. 1972 Nov;59(11):512–512. doi: 10.1007/BF00609821. [DOI] [PubMed] [Google Scholar]

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