A suite of novel allenes from Australian melolonthine scarab beetles. Structure, synthesis, and stereochemistry


Autoria(s): McGrath, Matthew J.; Fletcher, Mary T.; Konig, Wilfried A.; Moore, Christopher J.; Cribb, Bronwen W.; Allsopp, Peter G.; Kitching, William
Data(s)

01/01/2003

Resumo

A suite of allenic hydrocarbons, previously unknown as a molecular class from insects, has been characterized from several Australian melolonthine scarab beetles. The allenes are represented by the formula CH3(CH2)nCH=.=CH(CH2)(7)CH3 with n being 11-15, 17 and 19, and thus, all have Delta(9,10)-unsaturation. These structures have been confirmed by syntheses and comparisons of spectral and chromatographic properties with those of the natural components. The enantiomers of (+/-)-Delta(9,10)-tricosadiene and Delta(9,10)-pentacosadiene were separable on a modified beta-cyclodextrin column (gas chromatography), and the natural Delta(9,10)-tricosadiene (n = 11) and Delta(9,10)-pentacosadiene (n = 13) were shown to be of >85% ee. Syntheses of nonracemic allenes of known predominating chirality were acquired using both organotin chemistry and sulfonylhydrazine intermediates, and comparisons then demonstrated that the natural allenes were predominantly (R)-configured.

Identificador

http://espace.library.uq.edu.au/view/UQ:64477

Idioma(s)

eng

Publicador

American Chemical Society

Palavras-Chave #Chemistry, Organic #Propargylic Alcohols #Chiral Allenes #Hydrocarbons #Route #Biosynthesis #Reduction #Bond #C1 #300204 Plant Protection (Pests, Diseases and Weeds) #620106 Sugar
Tipo

Journal Article