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PHYLOGENOMICS AND PLASTOME EVOLUTION OF THE CHLORIDOID GRASSES (CHLORIDOIDEAE: POACEAE)

机译:绿藻类植物的生理学和塑性演化(绿藻科:禾本科)

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摘要

Premise of research. Studies of complete plastomes have proven informative for our understanding of the molecular evolution and phylogenomics of grasses, but subfamily Chloridoideae has not been included in this research. In previous multilocus studies, specific deep branches, as in the large clade corresponding to Cyno-donteae, are not uniformly well supported. Methodology. In this study, a plastome phylogenomic analysis sampled 14 species representing 4 tribes and 10 genera of Chloridoideae. One species was Sanger sequenced, and 14 other species, including out-groups, were sequenced with next-generation sequencing-by-synthesis methods. Plastomes from next-generation sequences were assembled by de novo methods, and the unambiguously aligned coding and noncoding sequences of the entire plastomes were analyzed phylogenetically. Pivotal results. Complete plastomes showed rare genomic changes in Distichlis, Centropodia, and Era-grostis tef that were of potential phylogenomic significance. Phylogenomic analyses showed uniformly strong support for all ingroup relationships except one node in Cynodonteae in which a short internal branch connected long terminal branches. Resolution within this clade was found to be taxon dependent and possibly subject to long-branch attraction artifacts. Conclusions. Our study indicates that the increase in phylogenetic information in sequences of entire plastomes well resolves and strongly supports relationships among tribes and genera of chloridoid grasses. Sampling more species, especially in the Centropodia + Ellisochloa clade and Cynodonteae, will further address relationships in these groups and clarify the evolutionary origins of the subfamily.
机译:研究前提。完整的质体组研究已被证明有助于我们对草类的分子进化和系统发育学的了解,但绿藻亚科并未包括在这项研究中。在以前的多基因座研究中,特定的深分支(如对应于犬齿龙脑的大枝条)并未得到统一的良好支持。方法。在这项研究中,质体系统系统分析分析了14个物种,这些物种代表4个部落和10个属。对一种物种进行了Sanger测序,并对其他14种物种(包括外群)进行了下一代合成测序。通过从头方法组装来自下一代序列的质粒,并系统发育地分析了整个质体组的明确比对的编码和非编码序列。关键的结果。完整的质体组显示出Distichlis,Centropodia和Era-grostis tef中罕见的基因组变化,这些变化具有潜在的植物学意义。系统进化分析显示,对所有群内关系的统一支持,除了犬齿亚目中一个短的内部分支连接长的末端分支的一个节点。发现该进化枝内的分辨率取决于分类群,并可能受到长分支吸引伪影的影响。结论。我们的研究表明,整个塑性组序列中系统发育信息的增加可以很好地解决并强烈支持部落与类胡萝卜草之间的关系。对更多物种进行采样,特别是在Centropodia + Ellisochloa进化枝和犬齿亚科中,将进一步解决这些群体之间的关系,并阐明亚科的进化起源。

著录项

  • 来源
    《International journal of plant sciences》 |2016年第3期|235-246|共12页
  • 作者单位

    Department of Biological Sciences, 1425 West Lincoln Highway, Northern Illinois University, DeKalb, Illinois 60115, USA;

    Rancho Santa Ana Botanic Garden and Claremont Graduate University, 1500 North College Avenue, Claremont, California 91711, USA;

    Rancho Santa Ana Botanic Garden and Claremont Graduate University, 1500 North College Avenue, Claremont, California 91711, USA;

    Department of Biology, Wabash College, PO Box 352, Crawfordsville, Indiana 47933, USA;

    Department of Biological Sciences, 1425 West Lincoln Highway, Northern Illinois University, DeKalb, Illinois 60115, USA;

    Department of Biological Sciences, 1425 West Lincoln Highway, Northern Illinois University, DeKalb, Illinois 60115, USA;

    Ecology, Evolution, and Organismal Biology, 251 Bessey Hall, Iowa State University, Ames, Iowa 50011, USA;

    Department of Biology, Utah State University, 5305 Old Main Hill, Logan, Utah 84322-5305, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chloridoideae; Cynodonteae; phylogenomics; plastid genome; plastome;

    机译:绿藻科;犬齿草;系统基因组学质体基因组质体组;
  • 入库时间 2022-08-18 03:45:32

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