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沙漠灌木恩西利亚属植物中的多样化、分化及杂交现象

Diversification, disparification and hybridization in the desert shrubs Encelia.

作者信息

Singhal Sonal, Roddy Adam B, DiVittorio Christopher, Sanchez-Amaya Ary, Henriquez Claudia L, Brodersen Craig R, Fehlberg Shannon, Zapata Felipe

机构信息

Department of Biology, CSU Dominguez Hills, 1000 E Victoria Street, Carson, CA, 90747, USA.

Institute of Environment, Department of Biological Sciences, Florida International University, Miami, FL, 33133, USA.

出版信息

New Phytol. 2021 May;230(3):1228-1241. doi: 10.1111/nph.17212. Epub 2021 Feb 13.

Abstract

There are multiple hypotheses for the spectacular plant diversity found in deserts. We explore how different factors, including the roles of ecological opportunity and selection, promote diversification and disparification in Encelia, a lineage of woody plants in the deserts of the Americas. Using a nearly complete species-level phylogeny based on double-digest restriction-aided sequencing along with a broad set of phenotypic traits, we estimate divergence times and diversification rates, identify instances of hybridization, quantify trait disparity and assess phenotypic divergence across environmental gradients. We show that Encelia originated and diversified recently (mid-Pleistocene) and rapidly, with rates comparable to notable adaptive radiations in plants. Encelia probably originated in the hot deserts of North America, with subsequent diversification across steep environmental gradients. We uncover multiple instances of gene flow between species. The radiation of Encelia is characterized by fast rates of phenotypic evolution, trait lability and extreme disparity across environments and between species pairs with overlapping geographic ranges. Encelia exemplifies how interspecific gene flow in combination with high trait lability can enable exceptionally fast diversification and disparification across steep environmental gradients.

摘要

对于沙漠中发现的惊人植物多样性存在多种假说。我们探究了不同因素,包括生态机遇和选择的作用,如何促进美洲沙漠木本植物谱系恩西莉亚属(Encelia)的多样化和差异分化。利用基于双酶切限制辅助测序的近乎完整的物种水平系统发育树以及一系列广泛的表型特征,我们估计分化时间和多样化速率,识别杂交实例,量化性状差异并评估环境梯度上的表型分化。我们表明,恩西莉亚属起源并在近期(更新世中期)迅速多样化,其速率与植物中显著的适应性辐射相当。恩西莉亚属可能起源于北美炎热沙漠,随后在陡峭的环境梯度上多样化。我们发现了物种间基因流动的多个实例。恩西莉亚属的辐射特征是表型进化速率快、性状易变性以及在环境之间和地理范围重叠的物种对之间存在极端差异。恩西莉亚属例证了种间基因流动与高性状易变性相结合如何能够在陡峭的环境梯度上实现异常快速的多样化和差异分化。

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