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A reconciliation analysis of host switching in plant-fungal symbioses

机译:植物-真菌共生体宿主转化的和解分析

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Plant-fungal symbioses include many familiar antagonistic and mutualistic associations and some model cases of coevolution. The relationship between coevolution at the different evolutionary scales has remained an open question. Widespread host specificity and documented host switches offer conflicting indications of what to expect from comparisons of plant and fungal phylogenies. This study sought to establish the role of plant phylogeny in determining fungal phylogeny and the relative contributions of codivergence and host switching by comparing tree topologies for 15 plant-fungal symbioses. Second it attempted to characterize the relationship between phylogenetic congruence and switching. Trees were estimated from published sequences and reconciliation analysis was applied in the form of cophylogeny mapping using "jungles". This provided an exhaustive account of all possible switches capable of reconciling two associated phylogenies. A continuum of cophylogenetic dynamics was identified, ranging from mostly codivergence (e.g., Exobasidium) to mostly switching, (e.g., Erysiphe). Surprisingly, congruent solutions do not necessarily have fewer switches when using cophylogeny mapping, but a significant negative relationship between congruence and the distance of switches proved to be a useful indicator. According to reconciliation analysis, the contribution of host phylogeny varies widely across plant-fungal symbioses, making host specificity and coadaptation poor indicators of macroevolutionary trends because they are necessary, but not sufficient, conditions.
机译:植物-真菌共生包括许多熟悉的对立和互惠的联系,以及一些共同进化的典型案例。不同进化尺度上的协同进化之间的关系仍然是一个悬而未决的问题。广泛的宿主特异性和有据可查的宿主开关为植物和真菌系统发育比较提供了相互矛盾的指示。这项研究试图通过比较15种植物-真菌共生体的树形拓扑结构来确定植物系统发育在确定真菌系统发育中的作用以及共发散和寄主转换的相对贡献。其次,它试图刻画系统发育一致性和转换之间的关系。从公开的序列中估计树木,并使用“丛林”以同源性作图的形式进行对账分析。这提供了能够调和两个相关系统发育的所有可能开关的详尽说明。鉴定出连续的进化发生动力学,范围从主要是共发散(例如,Exobasidium)到主要是切换(例如,Erysiphe)。出人意料的是,当使用同源系统映射时,全等解不一定有较少的切换,但是全等和切换距离之间的显着负相关被证明是有用的指标。根据和解分析,宿主系统发育的贡献在植物-真菌共生酶之间差异很大,这使得宿主特异性和共适应性不是宏观进化趋势的指标,因为它们是必要条件,但不是充分条件。

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