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Species Boundaries and Parapatric Speciation in the Complex of Alpine Shrubs Rosa sericea (Rosaceae) Based on Population Genetics and Ecological Tolerances

机译:基于种群遗传学和生态耐性的高山灌木丛蔷薇科植物的物种边界和亲缘物种形成

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摘要

Discerning species boundaries among closely related taxa is fundamental to studying evolution and biodiversity. However, species boundaries can be difficult to access in plants because ongoing divergence and speciation may leave an evolutionary footprint similar to introgression, which occurs frequently among species and genera. In this study, we sought to determine species boundaries between two closely related alpine shrubs, Rosa sericea and Rosa omeiensis, using population genetics, environmental data and ecological niche modeling, and morphological traits. We analyzed populations of R. sericea and R. omeiensis using genetic markers comprising a fragment of the single-copy nuclear gene, LEAFY, micro-satellites (EST-SSR), and plastid DNA sequences. The DNA sequence data suggested clusters of populations consistent with geography but not with previously proposed species boundaries based on morphology. Nevertheless, we found that the ecological niches of the previously proposed species only partially overlap. Thus, we suspect that these species are in the process of parapatric speciation; that is, differentiating along an ecological gradient, so that they exhibit differing morphology. Morphology has previously been the basis of recognizing the species R. sericea and R. omeiensis, which are the most widely distributed species within a broader R. sericea complex that includes several other narrow endemics. Here, we recognize R. sericea and R. omeiensis as independent species based on morphological and ecological data under the unified species concept, which emphasizes that these data types are of equal value to DNA for determining species boundaries and refining taxonomic treatments. While the DNA data did not delimit species within the R. sericea complex, we expect to develop and utilize new, robust DNA tools for understanding speciation within this group in future studies.
机译:辨别密切相关的分类单元中的物种边界是研究进化和生物多样性的基础。但是,由于植物之间不断发生的分化和物种形成可能会留下与渗入相似的进化足迹,因此在植物中很难接近物种边界,这种渗入在物种和属之间经常发生。在这项研究中,我们试图利用种群遗传学,环境数据和生态位建模以及形态特征来确定两种密切相关的高山灌木,蔷薇蔷薇和峨眉蔷薇之间的物种边界。我们使用包含单拷贝核基因,LEAFY,微卫星(EST-SSR)和质体DNA序列片段的遗传标记分析了R. sericea和R. omeiensis种群。 DNA序列数据表明种群群与地理一致,但与先前提出的基于形态的物种边界不一致。尽管如此,我们发现先前提出的物种的生态位只是部分重叠。因此,我们怀疑这些物种正处于父系物种形成的过程中。也就是说,沿着生态梯度进行区分,从而使它们表现出不同的形态。形态学以前一直是识别R. sericea和R. omeiensis物种的基础,它们是在一个更广泛的R. sericea复合体中分布最广泛的物种,该复合体包括其他几种狭窄的地方特有物种。在这里,我们基于统一物种概念下的形态学和生态学数据,将丝纹罗汉果和omeiensis识别为独立物种,这强调了这些数据类型对于确定物种边界和完善分类学处理具有与DNA相同的价值。尽管DNA数据并没有界定锯齿罗非鱼(R. sericea)复合体内的物种,但我们希望在未来的研究中开发和利用新的,强大的DNA工具来了解该物种内的物种。

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