Javůrková Veronika Gvoždíková, Brlík Vojtěch, Heneberg Petr, Požgayová Milica, Procházka Petr, Dietz Maurine W, Salles Joana Falcao, Tieleman B Irene
Groningen Institute for Evolutionary Life Sciences, University of Groningen, Nijenborgh 7, 9747 AG Groningen, the Netherlands.
Institute of Vertebrate Biology of the Czech Academy of Sciences, Květná 8, 603 65 Brno, Czech Republic.
iScience. 2024 Sep 30;27(11):111079. doi: 10.1016/j.isci.2024.111079. eCollection 2024 Nov 15.
Feather bacterial load affects key avian life-history traits such as plumage condition, innate immunity, and reproductive success. Investigating the interplay between life-history traits and feather microbial load is critical for understanding mechanisms of host-microbiome interactions. We hypothesize that spatiotemporal variation associated with migration and molting, body size affecting colonizable body surface area, and preening intensity could shape feather bacterial load. Integrating 16S rDNA-qPCR and flow cytometry, we examined total and viable bacterial loads in the feathers of 316 individuals of 24 Palearctic passerine species. We found that viable bacterial load in feathers was lower in larger species and higher in residents compared to migrants. In contrast, total bacterial load was not explained by any of the life-history traits but varied considerably among species, sampling sites, and years. By pinpointing main drivers of bacterial loads on avian body surfaces, we identify key mechanisms shaping host-microbiome interactions and open alternative research directions.
羽毛细菌载量会影响关键的鸟类生活史特征,如羽毛状况、先天免疫力和繁殖成功率。研究生活史特征与羽毛微生物载量之间的相互作用对于理解宿主 - 微生物组相互作用机制至关重要。我们推测,与迁徙和换羽相关的时空变化、影响可定植体表面积的体型大小以及梳理强度可能会影响羽毛细菌载量。我们整合了16S rDNA - qPCR和流式细胞术,检测了24种古北界雀形目鸟类316个个体羽毛中的总细菌载量和活菌载量。我们发现,与候鸟相比,体型较大的物种羽毛中的活菌载量较低,留鸟的活菌载量较高。相比之下,总细菌载量无法用任何生活史特征来解释,但在物种、采样地点和年份之间差异很大。通过确定鸟类体表细菌载量的主要驱动因素,我们确定了塑造宿主 - 微生物组相互作用的关键机制,并开辟了新的研究方向。