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并非所有小蠹虫气味相同:欧洲云杉八齿小蠹信息素受体ItypOR33中的群体水平功能性嗅觉多态性

Not All Bark Beetles Smell the Same: Population-Level Functional Olfactory Polymorphisms in Ips typographus Pheromone Receptor ItypOR33.

作者信息

Johny Jibin, Diallo Souleymane, Nadachowska-Brzyska Krystyna, Moliterno Antonioni Acacio Campos, Roy Amit, Kalinová Blanka, Große-Wilde Ewald, Schlyter Fredrik

机构信息

Faculty of Forestry and Wood Sciences, Czech University of Life Sciences Prague, Suchdol, Czech Republic.

Institute of Environmental Sciences, Faculty of Biology, Jagiellonian University, Kraków, Poland.

出版信息

Mol Ecol. 2025 Mar;34(6):e17693. doi: 10.1111/mec.17693. Epub 2025 Feb 21.

Abstract

Eurasian spruce bark beetle Ips typographus, a natural part of forest ecosystems, is a major threat to Norway spruce forests during outbreaks. Olfaction plays a crucial role in the survival and range expansion of these beetles, amid forest disturbances and climate change. As the current management strategies are suboptimal for controlling outbreaks, the reverse chemical ecology approaches based on pheromone receptors offer promising alternatives. While the search for pheromone receptors is in progress, recently found chromosomal inversions indicates signs of adaptation in this species. Our attempts to characterise one of the highly expressed odorant receptors, ItypOR33, located in an inversion, led to the discovery of polymorphic variants distributed with similar frequency across 18 European populations. Deorphanizing ItypOR33 and its variant ItypOR33a using the Drosophila empty-neuron system (DeNS) revealed ItypOR33 tuned to amitinol, a heterospecific pheromone component in Ips spp., whereas its variant tuned to (S)-(-)-ipsenol, a conspecific pheromone component of I. typographus. The in silico approaches revealed the structural basis of variations by predicting putative ligand-binding sites, tunnels and ligand-receptor interactions. However, no sex-specific differences were found in the ItypOR33 expression, and its ligand amitinol elicited behavioural and electrophysiological responses. Reporting population-level functional olfactory polymorphisms for the first time in a non-model organism-bark beetles, provides key evidence for further exploring their survival and adaptation in forests. Additionally, these findings indicate potential long-term complexities of managing bark beetles in forests.

摘要

欧亚云杉树皮小蠹(Ips typographus)是森林生态系统的自然组成部分,但在爆发期间对挪威云杉林构成重大威胁。在森林干扰和气候变化的背景下,嗅觉在这些小蠹的生存和范围扩张中起着至关重要的作用。由于目前的管理策略在控制疫情方面并不理想,基于信息素受体的反向化学生态学方法提供了有前景的替代方案。在寻找信息素受体的过程中,最近倒置表明这个物种适应的迹象。我们试图对位于倒置区域的一个高表达气味受体ItypOR33进行表征,结果发现了多态性变体,它们在18个欧洲种群中以相似的频率分布。利用果蝇空神经元系统(DeNS)对ItypOR33及其变体ItypOR33a进行去孤儿化研究发现,ItypOR33对阿米替诺有反应,阿米替诺是 Ips属中的一种异种信息素成分,而其变体对(S)-(-)-异松油烯有反应,(S)-(-)-异松油烯是欧洲云杉树皮小蠹的同种信息素成分。计算机模拟方法通过预测假定的配体结合位点、通道和配体-受体相互作用,揭示了变异的结构基础。然而,在ItypOR33的表达中未发现性别特异性差异,其配体阿米替诺引发了行为和电生理反应。首次在非模式生物——树皮小蠹中报道种群水平的功能性嗅觉多态性,为进一步探索它们在森林中的生存和适应性提供了关键证据。此外,这些发现表明了森林中树皮小蠹管理可能存在的长期复杂性。

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