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Cophylogenetic analyses reveal extensive host-shift speciation in a highly specialized and host-specific symbiont system

机译:CopHylocy分析揭示了高度专业化和宿主特定的Symbiont系统中的广泛宿主移位

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摘要

Host-shift speciation and cospeciation are the two major processes driving symbiont macroevolutionary diversification. Cospeciation is expected to be frequent in vertically transmitted and host-specific symbionts, and leads to congruent host-symbiont phylogenies. However, the cophylogenetic dynamics of many groups of highly specialized host-specific symbionts is largely unstudied. Thus, the relevance of cospeciation vs. host-shift speciation remains largely unknown. Here, we investigated this question by performing the largest cophylogenetic study of feather mites to date, using both distance and event-based cophylogenetic methods. For these analyses, we inferred phylogenies based on all protein coding genes of the mitochondrial genome of Proctophyllodes and Trouessartia feather mite species living on European passerine birds. Results show high incongruence among bird and feather mite phylogenies, because of extensive host-switching. We conclude that host-shift speciation, rather than cospeciation, may be the main driver of symbiont diversification even for highly specialized symbionts with low host-switching potential.
机译:宿主转换品质和核化是推动Symbiont宏观调度多样化的两个主要过程。预计COSPeciation将在垂直传输和特定于宿主的Symbion中频繁,并导致一致的宿主共生。然而,许多高度专业的宿主特异性共生的基本遗传学动力学基本上是不孤立的。因此,COPEPECIATIAIT与宿主转移品种的相关性仍然很大程度上是未知的。在这里,我们通过迄今为止迄今为止迄今为止的羽毛螨的最大的基底发育研究来调查了这个问题,并使用距离和事件的基于的基于的基于的基于的基于的基于的基于的保护方法。对于这些分析,我们基于欧洲旁角鸟类的Proctophllode和Tryessartaria羽毛螨物种的线粒体基因组的所有蛋白质编码基因推断出文献。结果显示鸟类和羽毛螨语法的高态度,因为大量主机切换。我们得出结论,即使对于具有低主机切换潜力的高度专业化的共生,我们的主持人改变,而不是COSPECICIENCE也可能是Symbiont多样化的主要驱动因素。

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