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首页> 外文期刊>Molecular phylogenetics and evolution >Diversification rates and chromosome evolution in the most diverse angiosperm genus of the temperate zone (Carex, Cyperaceae)
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Diversification rates and chromosome evolution in the most diverse angiosperm genus of the temperate zone (Carex, Cyperaceae)

机译:温带地区(Carex,莎草科)最被子植物的多样性和染色体进化

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摘要

The sedge family (Cyperaceae: Poales; ca. 5600 spp.) is a hyperdiverse cosmopolitan group with centres of species diversity in Africa, Australia, eastern Asia, North America, and the Neotropics. Carex, with ca. 40% of the species in the family, is one of the most species-rich angiosperm genera and the most diverse in temperate regions of the Northern Hemisphere, making it atypical among plants in that it inverts the latitudinal gradient of species richness. Moreover, Carex exhibits high rates of chromosome rearrangement via fission, fusion, and translocation, which distinguishes it from the rest of the Cyperaceae. Here, we use a phylogenetic framework to examine how the onset of contemporary temperate climates and the processes of chromosome evolution have influenced the diversification dynamics of Carex. We provide estimates of diversification rates and map chromosome transitions across the evolutionary history of the main four clades of Carex. We demonstrate that Carex underwent a shift in diversification rates sometime between the Late Eocene and the Oligocene, during a global cooling period, which fits with a transition in diploid chromosome number. We suggest that adaptive radiation to novel temperate climates, aided by a shift in the mode of chromosome evolution, may explain the large-scale radiation of Carex and its latitudinal pattern of species richness.
机译:莎草科(莎草科:Poales;约5600 spp。)是一个多物种的国际化大都市群,在非洲,澳大利亚,东亚,北美和新热带地区具有物种多样性中心。卡雷克斯,约。该家族中40%的物种是北半球温带地区物种最丰富的被子植物之一,种类最多,在植物中是非典型的,因为它颠倒了物种丰富度的纬度梯度。此外,Carex通过裂变,融合和易位表现出很高的染色体重排率,这使其与莎草科的其余部分区分开来。在这里,我们使用系统发育框架来研究当代温带气候的发生和染色体进化过程如何影响Carex的多样化动态。我们提供了Carex四个主要进化枝的进化史中的多样化率估计和染色体染色体转变图。我们证明,在全球变冷时期,Carex经历了始新世和渐新世之间某个时间的多样化率变化,这与二倍体染色体数目的过渡相吻合。我们建议适应性辐射到新的温带气候,辅之以染色体进化模式的转变,可以解释苔藓的大规模辐射及其物种丰富度的纬度分布模式。

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