根据核DNA序列推断的檀香及其掺假物的系统发育关系

Anupama Chembath, M. Balasundaran, P. Sujanapal
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引用次数: 5

摘要

东印度檀香(Santalum album),因其产生的香油而受到重视,是当地药物和香水的主要成分。檀香木的稀缺导致了非法砍伐檀香树,以及掺假檀香木和檀香油。本研究首次通过18S和26S rDNA测序,获得了黑檀及其掺假种白檀(Osyris wightiana)、红檀(Erythroxylum monogynum)、黄檀(Buxus sempervirens)、美洲Ximenia americana、lanceolata和Chukrasia tabularis的分子系统发育。在18S和26S rDNA数据集的最大简约(MP)树中,节点获得了中等到高的自举支持。对于18S rDNA数据集,该树的上枝为B. sempervirens和X. Americana,而E. monogynum则分别分支到集群中。下枝上有白桦和白桦,杉木分别与这两个枝相连。在26S rDNA数据集的MP树中,S. album和O. wightiana构成了主要的聚类,X. americana聚类分离,B. sempervirens和O. wightiana为下分支,C. tabularis聚类分离。本文所提供的分子数据为解决这些植物的系统发育关系提供了有用的信息。本研究的结论与克朗奎斯特的开花植物分类系统一致,所有的物种都起源于蔷薇科的单一系统发育树。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phylogenetic Relationships of Santalum album and its Adulterants as Inferred from Nuclear DNA Sequences
The East Indian sandalwood, Santalum album, valued for its fragrant oil yielding heartwood is a major ingre- dient in indigenous medicines and perfumes. Scarcity of sandal has led to illegal felling of sandal trees, and adulteration of sandalwood and oil. This study represents the first molecular phylogeny of S. album and its adulterant species Osyris wightiana, Erythroxylum monogynum, Buxus sempervirens, Ximenia americana, Osyris lanceolata, and Chukrasia tabularis through 18S and 26S rDNA sequencing. In the Maximum Parsimony (MP) tree for 18S and 26S rDNA data sets, moderate to high bootstrap support was obtained for the nodes. For 18S rDNA data sets, the tree had B. sempervirens and X. Americana as the upper branch, with E. monogynum branched separately to the cluster. The lower branch had S. album and O. wightiana with O. lanceolata joining separately to both clades of the tree. In the MP tree for 26S rDNA datasets, S. album and O. wightiana formed the major cluster with X. americana clustering separate and B. sempervirens and O. wightiana as the lower branch with C. tabularis clustering separate to the tree. The molecular data presented here provided useful information for resolving the phylogenetic relationship of these plants. Inferences from this study are in accordance with Cronquist's system of classification of flowering plants where all the species originate from a single phylogenetic tree of Rosidae.
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