Department of Biological Sciences, Simon Fraser University, Burnaby, BC, V5A 1S6, Canada.
Department of General and Systematic Zoology, University of Greifswald, Greifswald, Germany.
Sci Rep. 2023 Oct 27;13(1):18426. doi: 10.1038/s41598-023-44948-0.
Targeted metabolomics has been widely used in pheromone research but may miss pheromone components in study organisms that produce pheromones in trace amount and/or lack bio-detectors (e.g., antennae) to readily locate them in complex samples. Here, we used non-targeted metabolomics-together with high-performance liquid chromatography-mass spectrometry (HPLC-MS), gas chromatography-MS, and behavioral bioassays-to unravel the sex pheromone of the triangulate cobweb spider, Steatoda triangulosa. A ternary blend of three contact pheromone components [N-4-methylvaleroyl-O-isobutyroyl-L-serine (5), N-3-methylbutyryl-O-isobutyroyl-L-serine (11), and N-3-methylbutyryl-O-butyroyl-L-serine (12)] elicited courtship by S. triangulosa males as effectively as female web extract. Hydrolysis of 5, 11 and 12 at the ester bond gave rise to two mate-attractant pheromone components [butyric acid (7) and isobutyric acid (8)] which attracted S. triangulosa males as effectively as female webs. Pheromone components 11 and 12 are reported in spiders for the first time, and were discovered only through the use of non-targeted metabolomics and GC-MS. All compounds resemble pheromone components previously identified in widow spiders. Our study provides impetus to apply non-targeted metabolomics for pheromone research in a wide range of animal taxa.
靶向代谢组学在信息素研究中得到了广泛的应用,但可能会错过研究生物体内产生微量信息素且缺乏生物探测器(例如触角)的信息素成分,从而难以在复杂样本中定位这些成分。在这里,我们使用非靶向代谢组学——结合高效液相色谱-质谱(HPLC-MS)、气相色谱-质谱和行为生物测定法——来揭示三角蛛网蛛(Steatoda triangulosa)的性信息素。三种接触信息素成分[N-4-甲基戊酰-O-异丁酰-L-丝氨酸(5)、N-3-甲基丁酰-O-异丁酰-L-丝氨酸(11)和 N-3-甲基丁酰-O-丁酰-L-丝氨酸(12)]的三元混合物可有效激发 S. triangulosa 雄蛛的求偶行为,其效果与雌蛛的蛛网提取物一样。5、11 和 12 在酯键处水解产生两种对配偶有吸引力的信息素成分[丁酸(7)和异丁酸(8)],它们吸引 S. triangulosa 雄蛛的效果与雌蛛的蛛网一样。11 和 12 这两种信息素成分在蜘蛛中首次被报道,而且仅通过使用非靶向代谢组学和 GC-MS 才被发现。所有化合物都类似于先前在寡妇蛛中鉴定出的信息素成分。我们的研究为在广泛的动物类群中应用非靶向代谢组学进行信息素研究提供了动力。