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结合高通量测序和靶向基因座数据推断“腺萼藤属-新节苣苔属”(紫葳科,硬骨凌霄族)的系统发育关系。

Combining high-throughput sequencing and targeted loci data to infer the phylogeny of the "Adenocalymma-Neojobertia" clade (Bignonieae, Bignoniaceae).

机构信息

Laboratorio de Sistemática Vegetal, Departamento de Botânica, Instituto de Biocências, Universidade de São Paulo, São Paulo, Brazil.

出版信息

Mol Phylogenet Evol. 2018 Jun;123:1-15. doi: 10.1016/j.ympev.2018.01.023. Epub 2018 Feb 9.

Abstract

Combining high-throughput sequencing data with amplicon sequences allows the reconstruction of robust phylogenies based on comprehensive sampling of characters and taxa. Here, we combine Next Generation Sequencing (NGS) and Sanger sequencing data to infer the phylogeny of the "Adenocalymma-Neojobertia" clade (Bignonieae, Bignoniaceae), a diverse lineage of Neotropical plants, using Maximum Likelihood and Bayesian approaches. We used NGS to obtain complete or nearly-complete plastomes of members of this clade, leading to a final dataset with 54 individuals, representing 44 members of ingroup and 10 outgroups. In addition, we obtained Sanger sequences of two plastid markers (ndhF and rpl32-trnL) for 44 individuals (43 ingroup and 1 outgroup) and the nuclear PepC for 64 individuals (63 ingroup and 1 outgroup). Our final dataset includes 87 individuals of members of the "Adenocalymma-Neojobertia" clade, representing 66 species (ca. 90% of the diversity), plus 11 outgroups. Plastid and nuclear datasets recovered congruent topologies and were combined. The combined analysis recovered a monophyletic "Adenocalymma-Neojobertia" clade and a paraphyletic Adenocalymma that also contained a monophyletic Neojobertia plus Pleonotoma albiflora. Relationships are strongly supported in all analyses, with most lineages within the "Adenocalymma-Neojobertia" clade receiving maximum posterior probabilities. Ancestral character state reconstructions using Bayesian approaches identified six morphological synapomorphies of clades namely, prophyll type, petiole and petiolule articulation, tendril ramification, inflorescence ramification, calyx shape, and fruit wings. Other characters such as habit, calyx cupular trichomes, corolla color, and corolla shape evolved multiple times. These characters are putatively related with the clade diversification and can be further explored in diversification studies.

摘要

结合高通量测序数据和扩增子序列,可以基于对特征和分类群的全面采样来重建稳健的系统发育。在这里,我们结合下一代测序(NGS)和 Sanger 测序数据,使用最大似然法和贝叶斯方法推断“ Adenocalymma-Neojobertia”进化枝(Bignonieae,Bignoniaceae)的系统发育,这是一个具有多样化新热带植物的进化枝。我们使用 NGS 获得了该进化枝成员的完整或近乎完整的质体基因组,最终数据集包含 54 个个体,代表 44 个内群成员和 10 个外群。此外,我们还获得了 44 个个体(43 个内群和 1 个外群)的两个质体标记(ndhF 和 rpl32-trnL)的 Sanger 序列和 64 个个体(63 个内群和 1 个外群)的核 PepC 序列。我们的最终数据集包含 87 个“ Adenocalymma-Neojobertia”进化枝成员的个体,代表 66 种(约 90%的多样性),外加 11 个外群。质体和核数据集恢复了一致的拓扑结构,并进行了组合。联合分析恢复了一个单系的“ Adenocalymma-Neojobertia”进化枝和一个并系的 Adenocalymma,其中还包含一个单系的 Neojobertia 和 Pleonotoma albiflora。在所有分析中,关系都得到了强烈支持,“ Adenocalymma-Neojobertia”进化枝内的大多数谱系都获得了最大后验概率。使用贝叶斯方法进行的祖先性状重建确定了六个分支的形态 synapomorphies,即原叶类型、叶柄和叶柄节的关节、卷须分枝、花序分枝、花萼形状和果实翅。其他特征,如习性、花萼杯状毛、花冠颜色和花冠形状,多次进化。这些特征与分支多样化有关,可以在多样化研究中进一步探讨。

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