Eco-Chemistry, Department of Chemical Engineering, Mid Sweden University, SE-851 70, Sundsvall, Sweden.
Department of Plant Protection Biology, Swedish University of Agricultural Sciences, Box 102, SE-230 53, Alnarp, Sweden.
J Chem Ecol. 2020 Feb;46(2):115-127. doi: 10.1007/s10886-020-01145-x. Epub 2020 Feb 13.
Whittleia retiella (Newman, 1847) is a threatened salt marsh species of the bagworm moth family Psychidae. For its preservation it is necessary to develop efficient tools to survey its distribution and habitat requirements in order to use appropriate conservation methods. Such tools may be pheromone-based monitoring systems, which have documented efficacy in establishing the occurrence of cryptic insect species in nature. By using gas chromatography combined with electroantennographic detection (GC-EAD), we found two compounds in female W. retiella headspace samples and whole-body extracts that elicited electrophysiological activity in male antennae. Gas chromatograpy coupled with mass spectrometry (GC-MS) operating in electron impact (EI) mode and comparison of the analytical data with those of synthetic reference compounds showed the chemical structures of these putative pheromone components to be (1S)-1-methylpropyl (5Z)-dec-5-enoate and 1-methylethyl (5Z)-dec-5-enoate. Field assays using baits loaded with synthetic compounds revealed that conspecific males were attracted to (1S)-1-methylpropyl (5Z)-dec-5-enoate alone or in combination with 1-methylethyl (5Z)-dec-5-enoate, whereas 1-methylethyl (5Z)-dec-5-enoate neither attracted nor repelled males in the field assays when tested alone. This study shows the potential of using (1S)-1-methylpropyl (5Z)-dec-5-enoate for monitoring W. retiella to gather more detailed information about the geographic distribution and habitat needs of this rare moth.
威氏 retiring 袋蛾(Whittleia retiella)(Newman,1847)是一种受到威胁的盐沼袋蛾科物种。为了保护它,有必要开发有效的工具来调查其分布和栖息地需求,以便使用适当的保护方法。这些工具可能是基于信息素的监测系统,该系统已证明在确定自然界中隐蔽昆虫物种的存在方面具有功效。通过使用气相色谱法结合触角电生理学检测(GC-EAD),我们在雌性威氏 retiring 袋蛾头部空间样本和全身体提取物中发现了两种化合物,这些化合物在雄性触角中引起了电生理活性。气相色谱法与质谱联用(GC-MS)在电子冲击(EI)模式下运行,并且比较分析数据与合成参考化合物的数据表明,这些假定的信息素成分的化学结构为(1S)-1-丙基(5Z)-癸-5-烯酸酯和 1-甲基乙基(5Z)-癸-5-烯酸酯。使用含有合成化合物的诱饵进行野外试验表明,同种雄性对(1S)-1-丙基(5Z)-癸-5-烯酸酯单独或与 1-甲基乙基(5Z)-癸-5-烯酸酯结合具有吸引力,而 1-甲基乙基(5Z)-癸-5-烯酸酯在野外试验中单独测试时既不吸引也不排斥雄性。这项研究表明,使用(1S)-1-丙基(5Z)-癸-5-烯酸酯监测威氏 retiring 袋蛾的潜力,可以收集有关这种稀有飞蛾地理分布和栖息地需求的更详细信息。