Adam Maximilien A C, Cailleau Guillaume, Junier Pilar, Benrey Betty
Laboratory of Evolutionary Entomology, Institute of Biology, University of Neuchâtel, Neuchâtel, Switzerland.
CIRAD, UMR CBGP, 34398, Montpellier, France.
Microb Ecol. 2025 Jul 22;88(1):78. doi: 10.1007/s00248-025-02582-5.
The gut microbiome of Lepidopteran insects is highly dynamic, influenced by both host diet and phylogeny. While microbial communities are thought to facilitate host adaptation to diverse diets and environments, the existence of a core microbiome shared among closely related herbivores remains largely untested. In this study, we examined the microbial communities in the regurgitant of four Spodoptera species (S. exigua, S. frugiperda, S. latifascia, and S. littoralis) across different diets (artificial diet, cotton, maize, and squash). Using a high-throughput sequencing, we characterized bacterial and fungal community composition and diversity. Bacterial communities were shaped by both diet and host species, indicating species-specific bacterial selection. In contrast, fungal communities were exclusively structured by diet, with lower diversity and dominance of a few key taxa. Notably, no operational taxonomic units were consistently shared across all species or diets, challenging the concept of a conserved core microbiome in these generalist herbivores. Understanding how microbial communities shape generalist herbivores' ability to feed on diverse plants may offer potential strategies for microbiome-based pest management.
鳞翅目昆虫的肠道微生物群高度动态变化,受宿主饮食和系统发育的影响。虽然微生物群落被认为有助于宿主适应不同的饮食和环境,但密切相关的食草动物之间共享核心微生物群的情况在很大程度上仍未得到验证。在本研究中,我们检测了四种夜蛾属物种(甜菜夜蛾、草地贪夜蛾、宽带夜蛾和埃及棉夜蛾)在不同饮食(人工饲料、棉花、玉米和南瓜)条件下反流物中的微生物群落。我们使用高通量测序技术对细菌和真菌群落的组成及多样性进行了表征。细菌群落受饮食和宿主物种的共同影响,表明存在物种特异性的细菌选择。相比之下,真菌群落仅由饮食构成,少数关键分类群的多样性较低且占主导地位。值得注意的是,没有任何可操作分类单元在所有物种或饮食中都一致存在,这对这些多食性食草动物中存在保守核心微生物群的概念提出了挑战。了解微生物群落如何塑造多食性食草动物取食多种植物的能力,可能为基于微生物群的害虫管理提供潜在策略。