澳大利亚象鼻虫表皮烃谱分析

Joel B. Johnson
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引用次数: 0

摘要

角质层碳氢化合物(CHC)谱分析有望成为一种化学分类工具,用于鉴定和区分近亲昆虫物种。然而,利用CHC谱分析区分象鼻虫种类(鞘翅目:象鼻虫科)的研究有限。这项概念验证研究调查了使用CHC和挥发性分析来区分Gonipterini部落中三个属的五种象鼻虫。在5个物种中共发现56种CHCs和41种其他挥发性化合物,其中83种化合物通过它们的质量破碎模式被鉴定出来。每个物种的chc数量在20 ~ 43个之间,而每个物种特有的chc比例在0% ~ 19%之间。chc含量最高的是壬烷、7-甲基七烷、七烷和六烷。中心对数比转换数据的主成分分析显示,两种oxyopes物种之间的CHC谱存在广泛差异,其中Bryachus squamicollis与其他Gonipterini物种的差异最大。结果表明,CHC分析可用于支持现有的分类方法,包括形态学特征和基因测序结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cuticular Hydrocarbon Profiling of Australian Gonipterini Weevils
Cuticular hydrocarbon (CHC) profiling shows promise as a chemotaxonomic tool for identifying and discriminating between closely related insect species. However, there have been limited studies using CHC profiling to differentiate between weevil species (Coleoptera: Curculionidae). This proof-of-concept study investigated the use of CHC and volatile profiling to discriminate between five weevil species from three genera in the Gonipterini tribe. A total of 56 CHCs and 41 other volatile compounds were found across the five species, with 83 of the compounds being identified through their mass fragmentation patterns. The number of CHCs from each species ranged from 20 to 43, while the proportion of CHCs unique to each species varied between 0% and 19%. The most abundant CHCs were nonacosane, 7-methylheptacosane, heptacosane, and hexacosane. Principal component analysis of the centred log-ratio transformed data revealed broad differences in CHC profiles between the two Oxyops species, with Bryachus squamicollis demonstrating the greatest divergence from the other Gonipterini species. The results suggest that CHC analysis could be used to support established taxonomic methods, including morphological features and genetic sequencing results.
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