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大型非洲兰花属兜兰属的分子系统发育研究。

A molecular phylogeny for the large African orchid genus Disa.

作者信息

Bytebier Benny, Bellstedt Dirk U, Linder H Peter

机构信息

Biochemistry Department, Stellenbosch University, Private Bag X1, 7602 Stellenbosch, South Africa.

出版信息

Mol Phylogenet Evol. 2007 Apr;43(1):75-90. doi: 10.1016/j.ympev.2006.08.014. Epub 2006 Aug 24.

Abstract

Phylogenetic relationships were inferred for the African subtribe Disinae (Orchidoideae, Orchidaceae), which include the large genus Disa and the small genus Schizodium. One nuclear (ITS) gene region and two plastid (trnLF and matK) gene regions were sequenced for 136 ingroup, representing 70% of all known Disinae species, as well as for 7 outgroup taxa. The combined data matrix contained 4094 characters and was analysed using parsimony and Bayesian inference. Our results show that the generic status of Schizodium can no longer be supported, as it is deeply embedded within the genus Disa. Furthermore, the currently recognised subgenera do not reflect the phylogenetic relationships and should be rejected. Several of the currently recognised sections are monophyletic, others contain misplaced elements, while some are polyphyletic. Morphological divergence, rather than convergence, has hampered previous attempts at a phylogenetic classification of the Disinae. On the basis of our molecular phylogenetic hypothesis, we propose a monotypic subtribe Disinae and a subdivision of the genus Disa into 18 sections.

摘要

我们推断了非洲亚族迪西族(兰科,杓兰亚科)的系统发育关系,该亚族包括大属迪莎属和小属裂柱兰属。对136个类群(占所有已知迪西族物种的70%)以及7个外类群分类单元的一个核基因区域(ITS)和两个质体基因区域(trnLF和matK)进行了测序。合并后的数据矩阵包含4094个字符,并使用简约法和贝叶斯推断进行分析。我们的结果表明,裂柱兰属的属级地位不再能得到支持,因为它深深嵌套在迪莎属之中。此外,目前认可的亚属并不能反映系统发育关系,应该被摒弃。目前认可的几个组是单系的,其他组包含位置不当的类群,还有一些是多系的。形态上的趋异而非趋同,阻碍了之前对迪西族进行系统发育分类的尝试。基于我们的分子系统发育假说,我们提出一个单型亚族迪西族,并将迪莎属细分为18个组。

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