Fladerer Johannes-Paul, Grollitsch Selina, Bucar Franz
Karl-Franzens-Universitat Graz Pharmacognosy, Graz, Austria.
Arch Insect Biochem Physiol. 2023 Oct;114(2):1-13. doi: 10.1002/arch.22041. Epub 2023 Jul 30.
Cuticular hydrocarbons (CHCs) play various roles in insects' chemical ecology. As leafcutter ants live in a specific symbiosis with fungi, they harvest and with different bacteria, some of these CHCs might be associated with a mutualistic function within this symbiosis. To obtain a more precise picture in that respect we compared the CHC profiles of the leafcutter ants, Atta sexdens, Atta cephalotes, and Acromyrmex octospinosus inhabited by mutualistic bacteria with the profiles of Polyrhachis dives and Messor aciculatus by GC-EI-MS analysis and 28 other ant species by data from the literature. We were able to identify three alkyl amides (hexadecanamide, hexadecenamide, and tetradecanamide), occurring only in the CHC profiles of leafcutter ants inhabited by symbiotic bacteria. Our results lead to the conclusion that those alkyl amides could have a function in the tripartite symbiosis of leafcutter ants.
表皮碳氢化合物(CHCs)在昆虫的化学生态学中发挥着多种作用。由于切叶蚁与真菌存在特定的共生关系,它们会采集并与不同细菌相互作用,其中一些CHCs可能在这种共生关系中具有互利功能。为了在这方面获得更精确的情况,我们通过气相色谱 - 电子电离质谱(GC - EI - MS)分析,比较了栖息有共生细菌的切叶蚁Atta sexdens、Atta cephalotes和Acromyrmex octospinosus的CHC图谱与Polyrhachis dives和Messor aciculatus的图谱,并通过文献数据比较了其他28种蚂蚁的图谱。我们能够鉴定出三种烷基酰胺(十六酰胺、十六碳烯酰胺和十四酰胺),它们仅出现在栖息有共生细菌的切叶蚁的CHC图谱中。我们的结果得出结论,这些烷基酰胺可能在切叶蚁的三方共生关系中发挥作用。