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为什么紫珠如此色彩斑斓?唇形科植物果实颜色的演化、生物地理学及多样化

Why is the beautyberry so colourful? Evolution, biogeography, and diversification of fruit colours in (Lamiaceae).

作者信息

Liu Xing, Cai Hui-Min, Wang Wen-Qiao, Lin Wei, Su Zhi-Wei, Ma Zhong-Hui

机构信息

Department of Agricultural College, State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangxi University, Nanning 530004, Guangxi, PR China.

Institute of Marine Drugs, Guangxi University of Chinese Medicine, Nanning 530004, Guangxi, PR China.

出版信息

Plant Divers. 2022 Oct 18;45(1):6-19. doi: 10.1016/j.pld.2022.10.002. eCollection 2023 Jan.

Abstract

Fruit colour is essential to seed dispersal, speciation, and biological diversity in global ecosystems. The relationship between fruit-colour variation and species diversification has long been of interest in evolutionary biology, but remains poorly understood at the genus level. Here, we used , a typical representative of pantropical angiosperm, to analyse whether fruit colours are correlated with biogeographic distribution, dispersal events, and diversification rate. We estimated a time-calibrated phylogeny for and reconstructed ancestral fruit colour. Utilizing phylogenetic methods, we estimated the major dispersal events across the phylogenetic tree and the most likely fruit colours related to each dispersal event, and tested whether the dispersal frequencies and distances of the four fruit colours between major biogeographical areas were equal. We then tested whether fruit colours are correlated with latitude, elevation, and diversification rate. Biogeographical reconstructions showed that originated in the East Asia and Southeast Asia during the Eocene (∼35.53 Ma) and diverse species diverged mainly in the Miocene and lasted into the Pleistocene. Large-scale dispersal events were significantly associated with violet-fruited lineages. Furthermore, different fruit colours were markedly correlated with different latitudes and elevations (e.g., violet fruits were correlated with higher latitudes and elevations; red fruits and black fruits with lower latitudes; white fruits with higher elevations). Notably, violet fruits were statistically associated with highest diversification rates, driving fruit colour variation among different regions globally. Our results contribute to further understanding why fruit colour is so variable at the genus level of angiosperms in different areas around the world.

摘要

果实颜色对于全球生态系统中的种子传播、物种形成和生物多样性至关重要。果实颜色变异与物种多样化之间的关系长期以来一直是进化生物学关注的焦点,但在属级水平上仍知之甚少。在这里,我们以泛热带被子植物的典型代表[具体植物名称未给出]为研究对象,分析果实颜色是否与生物地理分布、扩散事件和多样化速率相关。我们估计了[具体植物名称未给出]的时间校准系统发育树并重建了祖先果实颜色。利用系统发育方法,我们估计了整个系统发育树中的主要扩散事件以及与每个扩散事件相关的最可能的果实颜色,并测试了主要生物地理区域之间四种果实颜色的扩散频率和距离是否相等。然后,我们测试了果实颜色是否与纬度、海拔和多样化速率相关。生物地理重建表明,[具体植物名称未给出]起源于始新世(约3553万年前)的东亚和东南亚,不同物种主要在中新世分化,并持续到更新世。大规模扩散事件与紫色果实谱系显著相关。此外,不同的果实颜色与不同的纬度和海拔显著相关(例如,紫色果实与较高的纬度和海拔相关;红色果实和黑色果实与较低的纬度相关;白色果实与较高的海拔相关)。值得注意的是,紫色果实在统计上与最高的多样化速率相关,推动了全球不同地区果实颜色的变化。我们的研究结果有助于进一步理解为什么在世界不同地区被子植物的属级水平上果实颜色如此多变。

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