Department of Bacteriology, University of Wisconsin, Madison, 4325 Microbial Sciences Building, 1550 Linden Drive, Madison, WI 53706, USA.
Proc Biol Sci. 2011 Jun 22;278(1713):1814-22. doi: 10.1098/rspb.2010.2118. Epub 2010 Nov 24.
Fungus-growing ants (tribe Attini) engage in a mutualism with a fungus that serves as the ants' primary food source, but successful fungus cultivation is threatened by microfungal parasites (genus Escovopsis). Actinobacteria (genus Pseudonocardia) associate with most of the phylogenetic diversity of fungus-growing ants; are typically maintained on the cuticle of workers; and infection experiments, bioassay challenges and chemical analyses support a role of Pseudonocardia in defence against Escovopsis through antibiotic production. Here we generate a two-gene phylogeny for Pseudonocardia associated with 124 fungus-growing ant colonies, evaluate patterns of ant-Pseudonocardia specificity and test Pseudonocardia antibiotic activity towards Escovopsis. We show that Pseudonocardia associated with fungus-growing ants are not monophyletic: the ants have acquired free-living strains over the evolutionary history of the association. Nevertheless, our analysis reveals a significant pattern of specificity between clades of Pseudonocardia and groups of related fungus-growing ants. Furthermore, antibiotic assays suggest that despite Escovopsis being generally susceptible to inhibition by diverse Actinobacteria, the ant-derived Pseudonocardia inhibit Escovopsis more strongly than they inhibit other fungi, and are better at inhibiting this pathogen than most environmental Pseudonocardia strains tested. Our findings support a model that many fungus-growing ants maintain specialized Pseudonocardia symbionts that help with garden defence.
共生真菌蚁(Attini 族)与一种真菌形成互利共生关系,这种真菌是蚂蚁的主要食物来源,但成功的真菌栽培受到微真菌寄生虫(Escovopsis 属)的威胁。放线菌(Pseudonocardia 属)与大多数共生真菌蚁的系统发育多样性相关联;通常存在于工蚁的外骨骼上;感染实验、生物测定挑战和化学分析支持 Pseudonocardia 通过抗生素产生在抵御 Escovopsis 方面发挥作用。在这里,我们为与 124 个共生真菌蚁群体相关的 Pseudonocardia 生成了一个双基因系统发育树,评估了蚂蚁-Pseudonocardia 特异性的模式,并测试了 Pseudonocardia 对抗 Escovopsis 的抗生素活性。我们表明,与共生真菌蚁相关的 Pseudonocardia 不是单系的:在蚂蚁与共生菌的进化历史中,已经获得了自由生活的菌株。然而,我们的分析揭示了 Pseudonocardia 与相关共生真菌蚁的群之间存在显著的特异性模式。此外,抗生素测定表明,尽管 Escovopsis 通常容易受到各种放线菌的抑制,但蚂蚁衍生的 Pseudonocardia 对 Escovopsis 的抑制作用强于对其他真菌的抑制作用,并且比大多数测试的环境 Pseudonocardia 菌株更能抑制这种病原体。我们的研究结果支持这样一种模型,即许多共生真菌蚁维持专门的 Pseudonocardia 共生体,有助于防御花园。