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澳大利亚桉树的叶绿体基因组分析——桉树、Corymbia、银桦属、Allosyncarpia 和 Stockwellia(桃金娘科)。

Chloroplast genome analysis of Australian eucalypts--Eucalyptus, Corymbia, Angophora, Allosyncarpia and Stockwellia (Myrtaceae).

机构信息

School of Botany, The University of Melbourne, Vic. 3010, Australia.

出版信息

Mol Phylogenet Evol. 2013 Dec;69(3):704-16. doi: 10.1016/j.ympev.2013.07.006. Epub 2013 Jul 19.

Abstract

We present a phylogenetic analysis and comparison of structural features of chloroplast genomes for 39 species of the eucalypt group (genera Eucalyptus, Corymbia, Angophora, and outgroups Allosyncarpia and Stockwellia). We use 41 complete chloroplast genome sequences, adding 39 finished-quality chloroplast genomes to two previously published genomes. Maximum parsimony and Bayesian analyses, based on >7000 variable nucleotide positions, produced one fully resolved phylogenetic tree (35 supported nodes, 27 with 100% bootstrap support). Eucalyptus and its sister lineage Angophora+Corymbia show a deep divergence. Within Eucalyptus, three lineages are resolved: the 'eudesmid', 'symphyomyrt' and 'monocalypt' groups. Corymbia is paraphyletic with respect to Angophora. Gene content and order do not vary among eucalypt chloroplasts; length mutations, especially frame shifts, are uncommon in protein-coding genes. Some non-synonymous mutations are highly incongruent with the overall phylogenetic signal, notably in rbcL, and may be adaptive. Application of custom informatics pipelines (GYDLE Inc.) enabled direct chloroplast genome assembly, resolving each genome to finished-quality with no need for PCR gap-filling or contig order resolution. Analysis of whole chloroplast genomes resolved major eucalypt clades and revealed variable regions of the genome that will be useful in lower-level genetic studies (including phylogeography and geneflow).

摘要

我们对 39 种桉树组(桉树属、科伦比娅属、安格霍拉属和外类群 Allosyncarpia 和 Stockwellia)的叶绿体基因组结构特征进行了系统发育分析和比较。我们使用了 41 个完整的叶绿体基因组序列,在两个先前发表的基因组中添加了 39 个完成质量的叶绿体基因组。基于>7000 个可变核苷酸位置的最大简约法和贝叶斯分析,生成了一棵完全解决的系统发育树(35 个支持节点,27 个具有 100%bootstrap 支持)。桉树及其姊妹谱系安格霍拉+Corymbia 表现出深度分歧。在桉树中,有三个谱系得到解决:“eudesmid”、“symphyomyrt”和“monocalypt”群。科伦比娅相对于安格霍拉是并系的。桉树叶绿体的基因内容和顺序没有变化;蛋白质编码基因中的长度突变,特别是移码突变,很少见。一些非同义突变与整体系统发育信号高度不一致,特别是在 rbcL 中,可能是适应性的。应用定制的信息学管道(GYDLE Inc.)可以直接进行叶绿体基因组组装,无需 PCR 缺口填充或连续体顺序分辨率,即可将每个基因组组装到完成质量。对整个叶绿体基因组的分析解决了主要的桉树类群,并揭示了基因组的可变区域,这将对较低水平的遗传研究(包括系统地理学和基因流)有用。

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