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So Closely Related and Yet So Different: Strong Contrasts Between the Evolutionary Histories of Species of the Cardamine pratensis Polyploid Complex in Central Europe

机译:如此密切相关,但如此不同:中欧甘氨酸普拉多斯多倍体复合物种类的进化历史之间的强对比

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摘要

Recurrent polyploid formation and weak reproductive barriers between independent polyploid lineages generate intricate species complexes with high diversity and reticulate evolutionary history. Uncovering the evolutionary processes that formed their present-day cytotypic and genetic structure is a challenging task. We studied the species complex of Cardamine pratensis, composed of diploid endemics in the European Mediterranean and diploid-polyploid lineages more widely distributed across Europe, focusing on the poorly understood variation in Central Europe. To elucidate the evolution of Central European populations we analyzed ploidy level and genome size variation, genetic patterns inferred from microsatellite markers and target enrichment of low-copy nuclear genes (Hyb-Seq), and environmental niche differentiation. We observed almost continuous variation in chromosome numbers and genome size in C. pratensis s.str., which is caused by the co-occurrence of euploid and dysploid cytotypes, along with aneuploids, and is likely accompanied by inter-cytotype mating. We inferred that the polyploid cytotypes of C. pratensis s.str. are both of single and multiple, spatially and temporally recurrent origins. The tetraploid Cardamine majovskyi evolved at least twice in different regions by autopolyploidy from diploid Cardamine matthioli. The extensive genome size and genetic variation of Cardamine rivularis reflects differentiation induced by the geographic isolation of disjunct populations, establishment of triploids of different origins, and hybridization with sympatric C. matthioli. Geographically structured genetic lineages identified in the species under study, which are also ecologically divergent, are interpreted as descendants from different source populations in multiple glacial refugia. The postglacial range expansion was accompanied by substantial genetic admixture between the lineages of C. pratensis s.str., which is reflected by diffuse borders in their contact zones. In conclusion, we identified an interplay of diverse processes that have driven the evolution of the species studied, including allopatric and ecological divergence, hybridization, multiple polyploid origins, and genetic reshuffling caused by Pleistocene climate-induced range dynamics.
机译:独立多倍体谱系之间的复发多倍体形成和弱生殖障碍产生具有高多样性和网状进化历史的复杂物种复合物。揭示形成其当前细胞型和遗传结构的进化过程是一个具有挑战性的任务。我们研究了甲胺素普拉多斯的物种综合体,由欧洲地中海和二倍体 - 多倍体谱系中的二倍体管理组成,更广泛地分布在欧洲,专注于中欧的难以理解的变化。为了阐明中欧群体的演变,我们分析了倍增性水平和基因组大小的变化,从微卫星标志物推断的遗传模式和低拷贝核基因(HYB-SEQ)的靶向,以及环境利基分化。我们观察到染色体数量和基因组大小在C.Pratensis S.STR中的几乎不断变化。,其是由欧共倍体和脱蛋白细胞型的共同发生引起的,并且具有非液倍体,并且很可能伴随细胞型交配。我们推断C.Pratensis S.STR的多倍体细胞型。均为单一和多个,空间和时间和时间复发起源。 Tetraploid Cardamine Majovskyi通过来自二倍体豆科胺Matthioli的Autopolyploidy在不同地区的不同地区演变了两次。 Cardamine Rivularis的广泛基因组大小和遗传变异反映了分离群体的地理分离,不同起源的三倍体的地理分离引起的分化,以及与SyspaTric C. Matthioli的杂交。在研究的物种中确定的地理结构化遗传谱系,这些遗传谱系也是生态发散的,被解释为来自多个冰川避难所的不同源人群的后代。后闪烁的范围扩张伴随着C.Pratensis S.STR的谱系之间的大量遗传混合物。,其在其接触区中的漫反射边框反射。总之,我们确定了各种过程的相互作用,这些过程推动了所研究的物种的演变,包括各种流体和生态发散,杂交,多重多倍体起源,以及由百良生植物诱导的范围动态引起的遗传补充。

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