Suppr超能文献

质体基因组系统发育学揭示了一个高度多样化的凤梨科谱系在早更新世通过从南美洲远距离扩散而在北美洲和中美洲的早期定殖。

Plastome phylogenomics reveals an early Pliocene North- and Central America colonization by long-distance dispersal from South America of a highly diverse bromeliad lineage.

作者信息

Vera-Paz Sandra I, Granados Mendoza Carolina, Díaz Contreras Díaz Daniel D, Jost Matthias, Salazar Gerardo A, Rossado Andrés J, Montes-Azcué Claudia A, Hernández-Gutiérrez Rebeca, Magallón Susana, Sánchez-González Luis A, Gouda Eric J, Cabrera Lidia I, Ramírez-Morillo Ivón M, Flores-Cruz María, Granados-Aguilar Xochitl, Martínez-García Ana L, Hornung-Leoni Claudia T, Barfuss Michael H J, Wanke Stefan

机构信息

Departamento de Botánica, Instituto de Biología, Universidad Nacional Autónoma de México, Mexico City, Mexico.

Posgrado en Ciencias Biológicas, Universidad Nacional Autónoma de México, Mexico City, Mexico.

出版信息

Front Plant Sci. 2023 Jun 23;14:1205511. doi: 10.3389/fpls.2023.1205511. eCollection 2023.

Abstract

Understanding the spatial and temporal frameworks of species diversification is fundamental in evolutionary biology. Assessing the geographic origin and dispersal history of highly diverse lineages of rapid diversification can be hindered by the lack of appropriately sampled, resolved, and strongly supported phylogenetic contexts. The use of currently available cost-efficient sequencing strategies allows for the generation of a substantial amount of sequence data for dense taxonomic samplings, which together with well-curated geographic information and biogeographic models allow us to formally test the mode and tempo of dispersal events occurring in quick succession. Here, we assess the spatial and temporal frameworks for the origin and dispersal history of the expanded clade K, a highly diverse subgenus (Bromeliaceae, Poales) lineage hypothesized to have undergone a rapid radiation across the Neotropics. We assembled full plastomes from Hyb-Seq data for a dense taxon sampling of the expanded clade K plus a careful selection of outgroup species and used them to estimate a time- calibrated phylogenetic framework. This dated phylogenetic hypothesis was then used to perform biogeographic model tests and ancestral area reconstructions based on a comprehensive compilation of geographic information. The expanded clade K colonized North and Central America, specifically the Mexican transition zone and the Mesoamerican dominion, by long-distance dispersal from South America at least 4.86 Mya, when most of the Mexican highlands were already formed. Several dispersal events occurred subsequently northward to the southern Nearctic region, eastward to the Caribbean, and southward to the Pacific dominion during the last 2.8 Mya, a period characterized by pronounced climate fluctuations, derived from glacial-interglacial climate oscillations, and substantial volcanic activity, mainly in the Trans-Mexican Volcanic Belt. Our taxon sampling design allowed us to calibrate for the first time several nodes, not only within the expanded clade K focal group but also in other Tillandsioideae lineages. We expect that this dated phylogenetic framework will facilitate future macroevolutionary studies and provide reference age estimates to perform secondary calibrations for other Tillandsioideae lineages.

摘要

理解物种多样化的时空框架是进化生物学的基础。对于快速多样化的高度多样化谱系,由于缺乏适当采样、解析且得到有力支持的系统发育背景,评估其地理起源和扩散历史可能会受到阻碍。使用当前可用的经济高效测序策略能够为密集的分类群采样生成大量序列数据,这些数据与精心整理的地理信息和生物地理模型相结合,使我们能够正式检验快速连续发生的扩散事件的模式和节奏。在此,我们评估了扩展分支K的起源和扩散历史的时空框架,扩展分支K是凤梨科、禾本目一个高度多样化的亚属谱系,据推测在新热带地区经历了快速辐射。我们从Hyb-Seq数据中组装了完整的质体基因组,用于对扩展分支K进行密集的分类群采样,并精心挑选了外类群物种,并用它们来估计一个时间校准的系统发育框架。然后,基于这一确定了时间的系统发育假设,利用全面收集的地理信息进行生物地理模型测试和祖先区域重建。扩展分支K至少在486万年前从南美洲通过长途扩散进入北美洲和中美洲,特别是墨西哥过渡带和中美洲地区,当时墨西哥的大部分高地已经形成。在过去的280万年里,发生了几次向北扩散到近北极地区南部、向东扩散到加勒比地区以及向南扩散到太平洋地区的事件,这一时期的特点是气候波动明显,源于冰期-间冰期气候振荡,以及大量的火山活动,主要集中在跨墨西哥火山带。我们的分类群采样设计使我们首次能够校准几个节点,不仅在扩展分支K的重点类群内,而且在其他铁兰亚科谱系中。我们预计,这个确定了时间的系统发育框架将有助于未来的宏观进化研究,并为其他铁兰亚科谱系进行二次校准提供参考年龄估计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e04a/10326849/8c32daa70f0b/fpls-14-1205511-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验