[18O]-Oxygen incorporation reveals novel pathways in spiroacetal biosynthesis by Bactrocera cacuminata and B. cucumis


Autoria(s): Fletcher, Mary T.; Wood, Barry J.; Brereton, Ian M.; Stok, Jeanette E.; De Voss, James J.; Kitching, William
Data(s)

03/07/2002

Resumo

The origins of the oxygen atoms in 1,7-dioxaspiro[5.5]undecane (1) and hydroxyspiroacetal (2) from Bactrocera cacuminata, and in 2,8-dimethyl-1,7-dioxaspiro[5.5]undecane (3) and hydroxyspiroacetal (4) from B. cucumis, have been investigated by incorporation studies from both [18O2]-dioxygen and [18O]-water. Combined GC-MS examination and high-field NMR analysis have demonstrated that all oxygen atoms in 1 and 2 from B. cacuminata are dioxygen derived, but in contrast, the spiroacetals 3 and 4 from B. cucumis incorporate one ring oxygen from water and one ring oxygen (and the hydroxyl oxygen in 4) from [18O2]-dioxygen. These results reveal not only the generality of monoxygenase mediation of spiroacetal formation in Bactrocera sp., but also an unexpected complexity in their biosynthesis. A general paradigm accommodating these and other observations is presented.

Identificador

http://espace.library.uq.edu.au/view/UQ:61710

Idioma(s)

eng

Publicador

American Chemical Society

Palavras-Chave #Chemistry, Multidisciplinary #Fruit-flies #Sex-pheromone #Fatty-acids #Chemistry #Fly #Secretion #Beetle #C1 #250300 Organic Chemistry #780103 Chemical sciences
Tipo

Journal Article