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Past climate changes facilitated homoploid speciation in three mountain spiny fescues (Festuca, Poaceae)

机译:过去的气候变化促进了三个山多山刺的异形物种(Festuca,Poaceae)

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Apart from the overwhelming cases of allopolyploidization, the impact of speciation through homoploid hybridization is becoming more relevant than previously thought. Much less is known, however, about the impact of climate changes as a driven factor of speciation. To investigate these issues, we selected Festuca picoeuropeana, an hypothetical natural hybrid between the diploid species F. eskia and F. gautieri that occurs in two different mountain ranges (Cantabrian Mountains and Pyrenees) separated by more than 400?km. To unravel the outcomes of this mode of speciation and the impact of climate during speciation we used a multidisciplinary approach combining genome size and chromosome counts, data from an extensive nuclear genotypic analysis, plastid sequences and ecological niche models (ENM). Our results show that the same homoploid hybrid was originated independently in the two mountain ranges, being currently isolated from both parents and producing viable seeds. Parental species had the opportunity to contact as early as 21000 years ago although niche divergence occurs nowadays as result of a climate-driven shift. A high degree of niche divergence was observed between the hybrid and its parents and no recent introgression or backcrossed hybrids were detected, supporting the current presence of reproductive isolation barriers between these species.
机译:除了全多元化的压倒性案例之外,通过同性恋杂交的形态的影响与以前的思想变得更加相关。然而,关于气候变化的影响,作为物种的驱动因子,较少的是已知的。为了调查这些问题,我们选择了Festuca Picoeuropeana,这是一个假设的自然杂交在两倍于伊斯基亚和F. Gautieri之间发生的两种不同的山脉(Cantabrian山脉和比利牛斯特)分开超过400 km。为了解开这种形态模式的结果和气候在形态期间的影响,我们使用了组合基因组大小和染色体计数的多学科方法,来自广泛的核基因型分析,塑性序列和生态利基模型(eNM)的数据。我们的研究结果表明,同样的同性恋杂交物在两座山脉中独立起源,目前从父母均隔离并产生可行的种子。父母种类有机会在21000年前接触,尽管现在随着气候驱动的转变而发生的利基发散。在杂种及其父母之间观察到高度的疾病分歧,并且未检测到最近的血频或回复杂种,支持这些物种之间的生殖隔离屏障的当前存在。

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