Zhu Betty C R, Henderson Gregg, Sauer Anne M, Yu Ying, Crowe William, Laine Roger A
Department of Entomology, Louisiana Agricultural Experiment Station, Louisiana State University Agricultural Center, Louisiana State University , Baton Rouge, USA.
J Chem Ecol. 2003 Dec;29(12):2695-701. doi: 10.1023/b:joec.0000008013.07845.4c.
Eight valencenoid derivatives were evaluated for their repelling activity against Formosan subterranean termites, Coptotermes formosanus Shiraki. Among them, 1,10-dihydronootkatone was the strongest repellent, and valencene was the weakest. Results of the structure-repellency relationships indicated (1) reduction of the ketone group to the alcohol on position 2 of nootkatone curtailed the activity; (2) because of the low activity of valencene relative to nootkatone that the ketone group was essential for repellent activity; (3) reduction of the 1,10 double bond (1,10-dihydronootkatone and tetrahydronootkatone) produced compounds more repellent than nootkatone; (4) the isopropenyl group probably does not participate in binding as evidenced by no significant difference in the repellent activity among nootkatone (double bond between position 11 and 12), isonootkatone (double bond between position 7 and 11), and 11,12-dihydronootkatone.
对八种瓦伦烯类衍生物针对台湾乳白蚁(Coptotermes formosanus Shiraki)的驱避活性进行了评估。其中,1,10 - 二氢诺卡酮是最强的驱避剂,而瓦伦烯是最弱的。结构 - 驱避关系的结果表明:(1)诺卡酮2位上的酮基还原为醇会降低活性;(2)由于瓦伦烯相对于诺卡酮活性较低,酮基对驱避活性至关重要;(3)1,10双键的还原(1,10 - 二氢诺卡酮和四氢诺卡酮)产生的化合物比诺卡酮更具驱避性;(4)诺卡酮(11位和12位之间有双键)、异诺卡酮(7位和11位之间有双键)和11,12 - 二氢诺卡酮之间的驱避活性无显著差异,这表明异丙烯基可能不参与结合。