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大葱园艺品种群的起源及葱属(葱属:葱科)的分子系统发育。

Origins of Allium ampeloprasum horticultural groups and a molecular phylogeny of the section Allium (Allium: Alliaceae).

机构信息

Biotechnical Faculty, University of Ljubljana, Agronomy Department, Jamnikarjeva 101, 1000 Ljubljana, Slovenia.

出版信息

Mol Phylogenet Evol. 2010 Feb;54(2):488-97. doi: 10.1016/j.ympev.2009.08.030. Epub 2009 Sep 3.

Abstract

The subgenus Allium section Allium includes economically important species, such as garlic and leek, as well as other polyploid minor crops. Phylogenetic studies within this section, with a focus on horticultural groups within A. ampeloprasum, were performed on 31 accessions of 17 species using the nuclear ribosomal DNA internal transcribed spacer (ITS) region and the chloroplast trnL-F and trnD-T regions. The results confirmed the monophyly of section Allium. Four main clades were identified on all ITS analyses but the relationships among those and the remaining species studied within section Allium remained unresolved. Trees based on cpDNA recovered two major clades and a topology only partly congruent with that of the ITS tree. Intra-individual polymorphism of the ITS region proved useful in tracking putative parent species of polyploid taxa. The allopolyploid origin of great headed garlic (GHG), A. iranicum and A. polyanthum was confirmed. No signs of hybridization in leek or kurrat were detected but possible introgression events were identified in pearl onion and bulbous leek. Although GHG is often used as a garlic substitute, molecular analysis revealed only a distant relationship with garlic. We also clarified the previous incorrect classification of cultivated forms within A. ampeloprasum, by showing that leek, kurrat, pearl onion, and bulbous leek should be considered separately from GHG.

摘要

该亚属包括经济上重要的物种,如大蒜和韭菜,以及其他多倍体小作物。本亚属的系统发育研究,重点是葱属 A. ampeloprasum 内的园艺群体,使用核核糖体 DNA 内转录间隔区(ITS)区域和叶绿体 trnL-F 和 trnD-T 区域对 17 个物种的 31 个品系进行了分析。结果证实了该亚属的单系性。在所有的 ITS 分析中都确定了四个主要的分支,但这些分支与该亚属内其余研究的物种之间的关系仍未解决。基于 cpDNA 的树恢复了两个主要的分支,其拓扑结构与 ITS 树部分一致。ITS 区域的个体内多态性有助于追踪多倍体分类群的假定亲种。大鳞大蒜(GHG)、A. iranicum 和 A. polyanthum 的异源多倍体起源得到了证实。在韭菜或库拉特中未发现杂交的迹象,但在珍珠洋葱和鳞茎韭菜中发现了可能的基因渗入事件。虽然 GHG 常被用作大蒜的替代品,但分子分析仅显示与大蒜的远缘关系。我们还通过显示韭菜、库拉特、珍珠洋葱和鳞茎韭菜应与 GHG 分开考虑,澄清了 A. ampeloprasum 内栽培形式的先前错误分类。

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