Centre for Legumes in Mediterranean Agriculture, University of Western Australia, 6009, Nedlands, Western Australia.
J Chem Ecol. 1996 Feb;22(2):369-82. doi: 10.1007/BF02055105.
Artificially damaged cotyledons of subterranean clover (Trifolium subterraneum L.) released several volatile metabolites, including 1-octen-3-one, arising from lipid peroxidation. The amount of 1-octen-3-one produced was negatively correlated with feeding damage caused by the red-legged earth mite (Halotydeus destructor) in nine out of 10 resistant and susceptibleT. subterraneum varieties tested. The EC50 of this compound in deterring mites from feeding in a membrane bioassay was 50 ppm. Cotyledon toughness was also involved in resistance. The resistant variety, S3615D, which has the lowest toughness value among the resistant varieties, produced the highest amount of 1-octen-3-one recovered from the headspace in 1 hr. Artificially damaged cotyledons of both susceptible Dalkeith and resistant DG1007, growing in shade, showed lower toughness, but had enhanced production of C8 volatile compounds and were avoided by mites during a 3-hr feeding test. When both 1-octen-3-one content and cotyledon toughness value were taken as cofactors in resistance, the resultant multiplication value yielded a more significantly negative correlation with mite feeding damage scores within the 10 varieties than either factor alone. We conclude that 1-octen-3-one has a role in resistance of subclover cotyledon to the mite.
人工损伤的三叶草(Trifolium subterraneum L.)子叶会释放多种挥发性代谢物,包括脂类过氧化产生的 1-辛烯-3-酮。在 10 种抗感品种的 9 种中,1-辛烯-3-酮的产生量与红脚螨(Halotydeus destructor)造成的取食损伤呈负相关。在膜生物测定中,这种化合物阻止螨虫取食的 EC50 为 50 ppm。子叶韧性也与抗性有关。在抗感品种中,韧性最低的 S3615D 品种在 1 小时内从顶空回收的 1-辛烯-3-酮量最高。在遮荫下生长的易感品种 Dalkeith 和抗性品种 DG1007 的人工损伤子叶表现出较低的韧性,但产生了更多的 C8 挥发性化合物,并在 3 小时的取食试验中被螨虫回避。当将 1-辛烯-3-酮含量和子叶韧性值作为抗性的共同因子时,与 10 个品种中的螨虫取食损伤评分的相关性比单独使用任何一个因子都更为显著。我们得出结论,1-辛烯-3-酮在三叶草子叶抵抗螨虫方面具有作用。