首页> 外文期刊>The New Phytologist >An approach to identify putative hybrids in the 'coalescent stochasticity zone', as exeplified in the Afican plant genus Streptocarpus (Gesneriaceae)
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An approach to identify putative hybrids in the 'coalescent stochasticity zone', as exeplified in the Afican plant genus Streptocarpus (Gesneriaceae)

机译:一种识别“亲缘随机性区”中推定杂种的方法,例如Afican植物链球菌属(Gesneriaceae)

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摘要

The inference of phylogenetic relationships is often complicated by differing evolutionary histories of independently-inherited markers. The causes of the resulting gene tree incongruence can be challenging to identify, often relying on coalescent simulations dependent on unverifiable assumptions. We investigated alternative techniques using the South African ro-sulate species of Streptocarpus as a study group. Two independent gene trees from the nuclear ITS region and from three concatenated plastidregions (trnL-F, rp 120-rps12 and trnC-D) displayed widespread, strongly supported incongruence. We investigated the causes by detecting genetic exchange across morphological borders using morphological optimizations and genetic exchange across speciesboundaries using the genealogical sorting index. Incongruence between gene trees was associated with ancestral shifts in growth form (in four species) but not in pollination syndrome, suggesting introgression limited by reproductive barriers. Genealogical sorting index calculations showed polyphyly of two additional species, while individuals of all others were significantly associated, in one case the association was stronger according to the internal transcribed spacer data than according to the plastid data, which, given the smaller effective population size of the plastid, may also indicate introgression. These approaches offer alternative ways to identify potential hybridization events where incomplete lineage sorting cannot be rejected using simulations.
机译:系统发育关系的推论通常因独立继承的标记的不同进化历史而变得复杂。导致基因树不一致的原因很难确定,通常依赖于基于不可验证假设的合并模拟。我们研究了使用南非猪齿形果链球菌属物种作为研究组的替代技术。来自核ITS区域和三个串联质体区域(trnL-F,rp 120-rps12和trnC-D)的两棵独立基因树显示出广泛的,有力的不一致。我们通过使用形态学优化检测跨形态边界的遗传交换和使用族谱分类指数跨物种边界的遗传交换来调查原因。基因树之间的不一致性与生长形式(在四个物种中)的祖先转移有关,但与授粉综合征无关,这表明受生殖障碍限制的基因渗入。族谱排序指数计算表明,另外两个物种具有多重特征,而所有其他物种的个体之间存在显着关联,在一种情况下,根据内部转录间隔子数据,该关联性强于根据质体数据,该关联性在于给定的有效种群较小。质体也可能表明渗入。这些方法提供了其他方法来识别潜在的杂交事件,在这些事件中,使用模拟不能拒绝不完整的谱系分类。

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