亚热带植物科学 ›› 2018, Vol. 47 ›› Issue (04): 363-369.DOI: 10.3969/j.issn.1009-7791.2018.04.011

• 植物生态与资源分类 • 上一篇    下一篇

基于形态性状的葱属粗根组植物系统发育关系

胡春亚,蒋小军,王跃峰,陈旭,黄德青   

  1. (桂林医学院药学院,广西 桂林 541004)
  • 收稿日期:2018-05-29 修回日期:2018-07-05 出版日期:2018-12-30 发布日期:2018-12-30
  • 通讯作者: 黄德青
  • 作者简介:胡春亚,硕士研究生,从事药用植物资源研究。
  • 基金资助:
    广西自然科学基金项目 (2013GXNSFBA019108) ; 桂林医学院博士科研启动费 (04010150011)

Phylogenetic Relationship of Allium sect. Bromatorrhiza Inferred from Morphological Characters

HU Chun-ya, JIANG Xiao-jun, WANG Yue-feng, CHEN Xu, HUANG De-qing   

  1. (College of Pharmacy, Guilin Medical University, Guilin 541004, Guangxi China)
  • Received:2018-05-29 Revised:2018-07-05 Online:2018-12-30 Published:2018-12-30
  • Contact: HUANG De-qing

摘要: 以环地中海地区和北美葱属Allium的Amerallium亚属种类为外类群,基于36个形态学性状对葱属粗根组sect. Bromatorrhiza进行系统发育分析。简约分析获得的分支拓扑结构与分子系统学的研究结果相吻合,粗根组与环地中海地区的Amerallium亚属种类形成姐妹群关系,表明它们具有密切的亲缘关系。粗根组明显分为两支,粗根韭A. fasciculatum (x = 10,2胚珠)与染色体基数为11的种类(单胚珠)形成一支,另一支由染色体基数为7的大花韭A. macranthum与多星韭A. wallichii (2胚珠)组成,从而否定了粗根亚组subsect. Bromatorrhiza(粗根韭+大花韭+多星韭)的成立。综合已有研究结果,本研究认为粗根组内存在4个相对独立的演化支系,即多星韭及其变种、大花韭、粗根韭,以及染色体基数为11的种类(5种1变种),尽管前人建议的单胚珠亚组subsect. Uniovulatum是合理的,但没有必要在物种数量相对较少的粗根组下进一步细分。

关键词: 葱属, 粗根组, 系统发育关系, 形态学性状

Abstract: Allium section Bromatorrhiza is endemic to the Hengduan Mountain Region and neighboring areas. Its taxonomic circumscription and systematic position have been clarified by previous systematic works, but the infra-sectional taxonomic classification and interspecific relationships within the section are as yet unclear. Here, section Bromatorrhiza is cladistically analyzed based on 36 morphological characters using subgenus Amerallium species of circle-Mediterranean Region and North America as outgroups. The topology of the tree obtained is consistent with the results derived from molecular data. Sect. Bromatorrhiza and subg. Amerallium species of circle-Mediterranean Region form a good clade, suggesting more closely relationships between them. Within the section, its species are arranged into two obvious clades. One consists of A. fasciculatum (x = 10, two ovules) and all x = 11 species (one ovule), and the other clade (x = 7, two ovules) includes A. macranthum and A. wallichii. The results suggest that subsection Bromatorrhiza previously presented is artificial and should be cancelled. Combining the existed results, the present study suggests that sect. Bromatorrhiza comprises four independent evolutionary clades, viz. A. wallichii and its variety, A. macranthum, A. fasciculatum and all x = 11 species (including five species and one variety). Although subsection Uniovulatum formerly proposed is reasonable, we argue that a subdivision of section Bromatorrhiza seems unnecessary for such a relatively small number of species.

Key words: Allium, sect. Bromatorrhiza, phylogenetic relationship, morphological characters

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