Pruesapan Kanchana, Telford Ian R H, Bruhl Jeremy J, Draisma Stefano G A, Van Welzen Peter C
National Herbarium of the Netherlands, Leiden University, PO Box 9514, 2300 RA Leiden, The Netherlands.
Ann Bot. 2008 Dec;102(6):1007-18. doi: 10.1093/aob/mcn193. Epub 2008 Oct 14.
A recent molecular phylogenetic study showed that Sauropus is deeply embedded within Phyllanthus together with its allies, Breynia and Glochidion. As relationships within Sauropus are still problematic and the relationship with Breynia has long been doubted, more molecular data are needed to test/corroborate such a broad definition of Phyllanthus. This study aims to clarify the status and delimitation of Sauropus and establish its position within Phyllanthaceae.
Plastid matK and nuclear ribosomal ITS DNA sequence data for Sauropus and its allies were used to construct phylogenetic trees using maximum parsimony and Bayesian methods.
Within Phyllanthus, Sauropus can be split into the mainly south-east Asian Sauropus sensu stricto (s.s.) plus Breynia and the mainly Australian Sauropus (formerly Synostemon). Sauropus s.s. plus Breynia comprise two distinct clades; one is the combination of Sauropus sections Glochidioidei, Sauropus and Schizanthi and the other is the combination of Sauropus sections Cryptogynium and Hemisauropus and the monophyletic genus Breynia.
Molecular data indicate that Synostemon should be reinstated at the same level as Sauropus s.s. and that Sauropus s.s. should be united with Breynia under the latter, older name. The molecular data corroborate only two of the five infrageneric groups of Sauropus recognized on the basis of morphological data.
最近的一项分子系统发育研究表明,守宫木属与其近缘属黑面神属和算盘子属一起,深深嵌套在叶下珠属之中。由于守宫木属内部的关系仍存在问题,且与黑面神属的关系长期以来一直受到质疑,因此需要更多的分子数据来检验/证实叶下珠属如此宽泛的定义。本研究旨在阐明守宫木属的地位和界定,并确定其在大戟科叶下珠亚科中的位置。
利用守宫木属及其近缘属的叶绿体matK基因和核糖体ITS DNA序列数据,采用最大简约法和贝叶斯法构建系统发育树。
在叶下珠属中,守宫木属可分为主要分布于东南亚的狭义守宫木属加上黑面神属,以及主要分布于澳大利亚的守宫木属(原合柱花属)。狭义守宫木属加上黑面神属包括两个不同的分支;一个是守宫木属算盘子叶组、守宫木组和裂萼组的组合,另一个是守宫木属隐果组、半守宫木组以及单系的黑面神属的组合。
分子数据表明,合柱花属应恢复到与狭义守宫木属相同的等级,狭义守宫木属应与黑面神属合并,采用后者较早的名称。分子数据仅证实了基于形态数据所认可的守宫木属五个属下类群中的两个。