首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: Convergent evolution of complex structures for ant–bacterial defensive symbiosis in fungus-farming ants
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From the Cover: Convergent evolution of complex structures for ant–bacterial defensive symbiosis in fungus-farming ants

机译:从封面开始:真菌-养殖蚂蚁中蚂蚁与细菌防御共生的复杂结构的趋同演化

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摘要

Evolutionary adaptations for maintaining beneficial microbes are hallmarks of mutualistic evolution. Fungus-farming “attine” ant species have complex cuticular modifications and specialized glands that house and nourish antibiotic-producing Actinobacteria symbionts, which in turn protect their hosts’ fungus gardens from pathogens. Here we reconstruct ant–Actinobacteria evolutionary history across the full range of variation within subtribe Attina by combining dated phylogenomic and ultramorphological analyses. Ancestral-state analyses indicate the ant–Actinobacteria symbiosis arose early in attine-ant evolution, a conclusion consistent with direct observations of Actinobacteria on fossil ants in Oligo-Miocene amber. qPCR indicates that the dominant ant-associated Actinobacteria belong to the genus Pseudonocardia. Tracing the evolutionary trajectories of Pseudonocardia-maintaining mechanisms across attine ants reveals a continuum of adaptations. In Myrmicocrypta species, which retain many ancestral morphological and behavioral traits, Pseudonocardia occur in specific locations on the legs and antennae, unassociated with any specialized structures. In contrast, specialized cuticular structures, including crypts and tubercles, evolved at least three times in derived attine-ant lineages. Conspicuous caste differences in Pseudonocardia-maintaining structures, in which specialized structures are present in worker ants and queens but reduced or lost in males, are consistent with vertical Pseudonocardia transmission. Although the majority of attine ants are associated with Pseudonocardia, there have been multiple losses of bacterial symbionts and bacteria-maintaining structures in different lineages over evolutionary time. The early origin of ant–Pseudonocardia mutualism and the multiple evolutionary convergences on strikingly similar anatomical adaptations for maintaining bacterial symbionts indicate that Pseudonocardia have played a critical role in the evolution of ant fungiculture.
机译:维持有益微生物的进化适应是相互进化的标志。真菌饲养的“ attine”蚂蚁物种具有复杂的表皮修饰和专门的腺体,可以容纳和滋养产生抗生素的放线菌共生菌,从而保护寄主的真菌园免受病原体侵害。在这里,我们通过结合过时的系统生物学和超形态学分析,重建了亚族Attina内整个变种范围内的蚂蚁-放线菌进化史。祖先状态的分析表明,蚂蚁-放线菌共生是在衰变-蚂蚁进化的早期出现的,这一结论与放线-中新世琥珀化石蚁对化石蚁的直接观察一致。 qPCR表明优势的与蚂蚁相关的放线菌属属于假性心动过菌属。在整个正常蚂蚁上追踪假性心动维持机制的进化轨迹揭示了适应的连续性。在保留许多祖先形态和行为特征的Myrmicocrypta物种中,假性心动过速发生在腿和触角的特定位置,与任何特殊结构无关。相比之下,包括隐窝和结节在内的特殊表皮结构在衍生的attine-ant谱系中至少进化了3次。假性心音维持结构中明显的种姓差异,其中特殊的结构存在于工蚁和蚁后,但在男性中减少或消失,与垂直的假性心音传播一致。尽管大多数attine蚂蚁与假性心动过速有关,但随着进化时间的流逝,不同谱系中细菌共生菌和细菌保持结构的损失不断。蚂蚁假拟心菌共生的早期起源以及在惊人相似的解剖适应性上保持细菌共生体的多重进化趋同表明,假拟心菌病在蚂蚁真菌培养的发展中起着至关重要的作用。

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