Buysse Marie, Binetruy Florian, Leibson Raz, Gottlieb Yuval, Duron Olivier
Maladies Infectieuses et Vecteurs : Ecologie, Génétique, Evolution et Contrôle), Centre National de la Recherche Scientifique (CNRS) - Institut pour la Recherche et le Développement (IRD), Université de Montpellier (UM), Montpellier, France.
CREES (Centre de Recherche en Écologie et Évolution de la Santé), Montpellier, France.
Microb Ecol. 2022 Apr;83(3):776-788. doi: 10.1007/s00248-021-01773-0. Epub 2021 Jul 8.
Symbiosis with vitamin-provisioning microbes is essential for the nutrition of animals with some specialized feeding habits. While coevolution favors the interdependence between symbiotic partners, their associations are not necessarily stable: Recently acquired symbionts can replace ancestral symbionts. In this study, we demonstrate successful replacement by Francisella-like endosymbionts (-LE), a group of B-vitamin-provisioning endosymbionts, across tick communities driven by horizontal transfers. Using a broad collection of Francisella-LE-infected tick species, we determined the diversity of Francisella-LE haplotypes through a multi-locus strain typing approach and further characterized their phylogenetic relationships and their association with biological traits of their tick hosts. The patterns observed showed that Francisella-LE commonly transfer through similar ecological networks and geographic distributions shared among different tick species and, in certain cases, through preferential shuffling across congeneric tick species. Altogether, these findings reveal the importance of geographic, ecological, and phylogenetic proximity in shaping the replacement pattern in which new nutritional symbioses are initiated.
与能提供维生素的微生物共生对于某些具有特殊摄食习性的动物的营养至关重要。虽然共同进化有利于共生伙伴之间的相互依存,但它们的关联并不一定稳定:最近获得的共生体可以取代祖先共生体。在本研究中,我们证明了一类能提供B族维生素的内共生体——类弗朗西斯菌内共生体(-LE)通过水平转移在蜱虫群落中成功实现了取代。我们使用了大量感染类弗朗西斯菌-LE的蜱虫物种样本,通过多位点菌株分型方法确定了类弗朗西斯菌-LE单倍型的多样性,并进一步表征了它们的系统发育关系以及它们与蜱虫宿主生物学特性的关联。观察到的模式表明,类弗朗西斯菌-LE通常通过不同蜱虫物种之间共享的相似生态网络和地理分布进行转移,在某些情况下,还通过在同属蜱虫物种间的优先重组进行转移。总之,这些发现揭示了地理、生态和系统发育上的接近性在塑造新营养共生关系起始的取代模式中的重要性。