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泽泻目植物的质体系统发育基因组学与分子进化

Plastid phylogenomics and molecular evolution of Alismatales.

作者信息

Ross T Gregory, Barrett Craig F, Soto Gomez Marybel, Lam Vivienne K Y, Henriquez Claudia L, Les Donald H, Davis Jerrold I, Cuenca Argelia, Petersen Gitte, Seberg Ole, Thadeo Marcela, Givnish Thomas J, Conran John, Stevenson Dennis W, Graham Sean W

机构信息

Department of Botany, 6270 University Boulevard, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.

UBC Botanical Garden & Centre for Plant Research, 6804 Marine Drive SW, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.

出版信息

Cladistics. 2016 Apr;32(2):160-178. doi: 10.1111/cla.12133. Epub 2015 Nov 23.

Abstract

Past phylogenetic studies of the monocot order Alismatales left several higher-order relationships unresolved. We addressed these uncertainties using a nearly complete genus-level sampling of whole plastid genomes (gene sets representing 83 protein-coding and ribosomal genes) from members of the core alismatid families, Tofieldiaceae and additional taxa (Araceae and other angiosperms). Parsimony and likelihood analyses inferred generally highly congruent phylogenetic relationships within the order, and several alternative likelihood partitioning schemes had little impact on patterns of clade support. All families with multiple genera were resolved as monophyletic, and we inferred strong bootstrap support for most inter- and intrafamilial relationships. The precise placement of Tofieldiaceae in the order was not well supported. Although most analyses inferred Tofieldiaceae to be the sister-group of the rest of the order, one likelihood analysis indicated a contrasting Araceae-sister arrangement. Acorus (Acorales) was not supported as a member of the order. We also investigated the molecular evolution of plastid NADH dehydrogenase, a large enzymatic complex that may play a role in photooxidative stress responses. Ancestral-state reconstructions support four convergent losses of a functional NADH dehydrogenase complex in Alismatales, including a single loss in Tofieldiaceae.

摘要

过去对单子叶植物泽泻目进行的系统发育研究留下了几个高阶关系未得到解决。我们使用来自核心泽泻科、岩菖蒲科成员以及其他分类群(天南星科和其他被子植物)的全质体基因组(代表83个蛋白质编码和核糖体基因的基因集)近乎完整的属级样本,解决了这些不确定性。简约分析和似然分析推断该目内的系统发育关系总体上高度一致,并且几种替代的似然划分方案对分支支持模式影响不大。所有包含多个属的科都被解析为单系,并且我们推断出对大多数科间和科内关系有很强的自展支持。岩菖蒲科在该目中的精确位置支持不足。尽管大多数分析推断岩菖蒲科是该目其他部分的姐妹群,但一项似然分析表明是天南星科姐妹群的相反排列。菖蒲属(菖蒲目)不被支持作为该目的成员。我们还研究了质体NADH脱氢酶的分子进化,这是一种大型酶复合物,可能在光氧化应激反应中起作用。祖先状态重建支持泽泻目中功能性NADH脱氢酶复合物的四次趋同丧失,包括岩菖蒲科中的一次丧失。

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