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广泛的全基因组系统发育不一致是由于快速辐射演化的东亚蛇葡萄属(葡萄科)中存在不完全谱系分选。

Extensive genome-wide phylogenetic discordance is due to incomplete lineage sorting in the rapidly radiated East Asian genus Nekemias (Vitaceae).

作者信息

He Guan-Hao, Meng Ying, Zhang Meng-Hua, Wang Da, Meng Ran, Zhang Lei, Chu Zhao-Fu, Wen Jun, Nie Ze-Long

机构信息

Hunan Provincial Key Laboratory of Ecological Conservation and Sustainable Utilization of Wulingshan Resources, College of Biology and Environmental Sciences, Jishou University, Jishou, Hunan, 416000, China.

Tiantong National Forest Ecosystem Observation and Research Station, Shanghai Key Lab for Urban Ecological Processes and Eco-Restoration, School of Ecological and Environmental Sciences, East China Normal University, Shanghai 200241, China.

出版信息

Ann Bot. 2025 May 9;135(5):925-934. doi: 10.1093/aob/mcae224.

Abstract

BACKGROUND AND AIMS

Nekemias is a small genus of the grape family, with nine species discontinuously distributed in temperate to subtropical zones of the Northern Hemisphere but mostly in East Asia. Previous phylogenetic studies on Nekemias have mainly been based on a few chloroplast markers, and the phylogenetic framework and systematic relationships are still highly contested.

METHODS

We carried out a systematic framework reconstruction of Nekemias and intra-generic reticulate evolutionary analyses based on extensive single-copy nuclear and chloroplast genomic data obtained by the Hyb-Seq approach, combining genome skimming and target enrichment.

KEY RESULTS

Both nuclear and chloroplast genomic data strongly support the monophyly of Nekemias with its division into two major lineages from East Asia and North America, respectively. There are strong and extensive topological conflicts among nuclear gene trees and between nuclear and chloroplast topologies within the genus, especially within the East Asian clade.

CONCLUSIONS

Rapid radiation through predominant incomplete lineage sorting (ILS) throughout the evolutionary history of the East Asian taxa is supported to explain the relatively high species diversity of Nekemias in East Asia. This study highlights the important role of short periods of rapid evolutionary radiations accompanied by ILS as a mechanism for the complex and fast species diversifications in the grape family as well as potentially in many other plant lineages in East Asia and beyond.

摘要

背景与目的

蛇葡萄属是葡萄科的一个小属,有9个物种间断分布于北半球的温带至亚热带地区,但主要分布在东亚。先前对蛇葡萄属的系统发育研究主要基于少数叶绿体标记,其系统发育框架和系统关系仍存在很大争议。

方法

我们基于通过Hyb-Seq方法获得的大量单拷贝核基因组和叶绿体基因组数据,结合基因组浅层测序和目标富集,对蛇葡萄属进行了系统框架重建和属内网状进化分析。

主要结果

核基因组和叶绿体基因组数据均有力支持蛇葡萄属的单系性,该属分为分别来自东亚和北美的两个主要谱系。该属内,核基因树之间以及核拓扑和叶绿体拓扑之间存在强烈且广泛的拓扑冲突,尤其是在东亚分支内。

结论

支持在东亚类群的整个进化历史中通过主要的不完全谱系分选(ILS)进行快速辐射,以解释蛇葡萄属在东亚相对较高的物种多样性。本研究强调了伴随着ILS的短时间快速进化辐射作为葡萄科以及东亚及其他地区许多其他植物谱系中复杂快速物种多样化机制的重要作用。

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