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Phylogenetic relationships of wild and cultivated species of Allium section Cepa inferred by nuclear rDNA ITS sequence analysis

机译:核rDNA ITS序列分析推断葱切片的野生和栽培物种的系统发育关系。

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Allium section Cepa consists of 12 species most of which are used by humans as condiment, vegetable or medicinal plants. Common onion (Allium cepa) and bunching onion (A. fistulosum) are cultivated species while all others are locally collected from the wild. Although common onion is the most important crop within Allium, its wild progenitor and origin are still not clear. We analyzed the phylogeny of Allium section Cepa using sequences of the nuclear ribosomal DNA internal transcribed spacer (ITS) region of 36 accessions representing eleven species of section Cepa, together with eight outgroup species with phenetic, cladistic, and model-based algorithms. These analyses confirmed section Cepa to be monophyletic and revealed three species groups within the section. These are (i) A. altaicum/A. fistulosum, (ii) A. farctum/A. roylei/A. asarense/A. cepa/A. vavilovii, and (iii) A. galanthum/A. oschaninii/A. praemixtum/A. pskemense. While the first two groups were statistically well supported for the last group support was low, although it resulted in all phylogenetic analyses conducted. Tree and network-based analyses grouped A. cepa within A. vavilovii, indicating the latter to be progenitor of the common onion. However, also an origin of A. cepa through hybridization of A. vavilovii with A. galanthum or A. fistulosum seems possible. We argue that a subdivision of section Cepa in subsections Cepa and Phyllodolon, although possible from our data, as well as the formal description of alliances do not seem reasonable in a small group of species.
机译:葱属Cepa共有12种,其中大多数被人类用作调味品,蔬菜或药用植物。栽培洋葱是普通洋葱(洋葱)和聚束洋葱(A. fistulosum),而其他所有洋葱都是从野外本地采集的。尽管葱是葱属中最重要的农作物,但其野生祖先和起源仍不清楚。我们分析了36个种质的葱属切片Cepa的系统发育,该序列代表了Cepa切片的11个种的36个种,以及八种带有表型,分类和基于模型的算法的外种。这些分析证实切帕节是单系的,并揭示了该节内的三个物种组。这些是(i)A. altaicum / A。瘘,(ii)羊角菌/ A。 roylei / A。尽快cepa / A。 vavilovii和(iii)A. galanthum / A。 oschaninii / A。 praemixtum / A。 pskemense。虽然前两组在统计学上得到了很好的支持,但最后一组的支持率却很低,尽管这导致进行了所有系统发育分析。基于树和网络的分析将vapelovii中的c。cepa分组,表明后者是普通洋葱的祖先。然而,通过将曲霉曲霉与加兰曲霉或瘘管曲霉杂交也可以形成洋葱曲霉。我们认为,尽管从我们的数据中可以找到Cepa和Phyllodolon子部分中Cepa子部分的细分,以及对同盟的正式描述在一小群物种中似乎并不合理。

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