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云杉属的跨谱系多态性和非二分歧多样化。

Trans-lineage polymorphism and nonbifurcating diversification of the genus Picea.

机构信息

State Key Laboratory of Grassland Agro-Ecosystem, Institute of Innovation Ecology & College of Life Sciences, Lanzhou University, Lanzhou, 730000, China.

Key Laboratory for Bio-resource and Eco-environment of Ministry of Education, College of Life Science, Sichuan University, Chengdu, 610064, China.

出版信息

New Phytol. 2019 Apr;222(1):576-587. doi: 10.1111/nph.15590. Epub 2018 Dec 11.

Abstract

Nonbifurcating divergence caused by introgressive hybridization is continuously reported for groups of closely related species. In this study, we aimed to reconstruct the genome-scale classification of deep lineages of the conifer genus Picea, establish their phylogenetic relationships and test the bifurcating hypothesis between deeply branching lineages based on genomic data. We sequenced the transcriptomes of 35 individuals of 27 taxa covering all main lineages of the genus. Four major lineages, comprising three to 12 taxa each, largely consistent with morphological evidence, were recovered across the coalescent and integrated nuclear phylogeny. However, many of the individual gene trees recovered contradict one another. Moreover, the well-supported coalescent tree inferred here differs from previous studies based on various DNA markers, with respect to topology and inter-lineage relationships. We identified the shared polymorphisms between four major lineages. ABBA-BABA tests confirmed the inter-lineage gene flow and thus violated the bifurcating divergence model. Gene flow occurred more frequently between lineages distributed in the same continent than those disjunct between continents. Our results indicate that introgression and nonbifurcating diversification apply, even between deeply branching lineages of the conifer genus Picea.

摘要

由于渗入杂交而导致的非二分歧分歧不断在密切相关的物种群体中被报道。在本研究中,我们旨在重建松属(Picea)针叶树深系的基因组规模分类,建立它们的系统发育关系,并基于基因组数据检验深分支谱系之间的二分歧假设。我们对涵盖该属所有主要谱系的 27 个分类群的 35 个个体的转录组进行了测序。在系统发育分析中,我们共重建了 4 个主要谱系,每个谱系包含 3 到 12 个分类群,这与形态学证据基本一致。然而,许多单独的基因树彼此矛盾。此外,与基于各种 DNA 标记的先前研究相比,这里推断的支持良好的系统发育树在拓扑和谱系间关系上有所不同。我们鉴定了四个主要谱系之间的共享多态性。ABBA-BABA 检验证实了谱系间的基因流,从而违反了二分歧分化模型。在同一大陆分布的谱系之间的基因流比在大陆间离散分布的谱系之间更频繁。我们的结果表明,松属针叶树的深分支谱系之间存在基因渗入和非二分歧多样化。

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