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在芒萁属复合体(蔓藓科)中进行分子物种划分及其对藓类植物中物种复合体 DNA 条形码的影响。

Molecular species delimitation in the Racomitrium canescens complex (Grimmiaceae) and implications for DNA barcoding of species complexes in mosses.

机构信息

Naturalis Biodiversity Center, Section National Herbarium of the Netherlands, Leiden University, Leiden, The Netherlands.

出版信息

PLoS One. 2013;8(1):e53134. doi: 10.1371/journal.pone.0053134. Epub 2013 Jan 14.

Abstract

In bryophytes a morphological species concept is still most commonly employed, but delimitation of closely related species based on morphological characters is often difficult. Here we test morphological species circumscriptions in a species complex of the moss genus Racomitrium, the R. canescens complex, based on variable DNA sequence markers from the plastid (rps4-trnT-trnL region) and nuclear (nrITS) genomes. The extensive morphological variability within the complex has led to different opinions about the number of species and intraspecific taxa to be distinguished. Molecular phylogenetic reconstructions allowed to clearly distinguish all eight currently recognised species of the complex plus a ninth species that was inferred to belong to the complex in earlier molecular analyses. The taxonomic significance of intraspecific sequence variation is discussed. The present molecular data do not support the division of the R. canescens complex into two groups of species (subsections or sections). Most morphological characters, albeit being in part difficult to apply, are reliable for species identification in the R. canescens complex. However, misidentification of collections that were morphologically intermediate between species questioned the suitability of leaf shape as diagnostic character. Four partitions of the molecular markers (rps4-trnT, trnT-trnL, ITS1, ITS2) that could potentially be used for molecular species identification (DNA barcoding) performed almost equally well concerning amplification and sequencing success. Of these, ITS1 provided the highest species discrimination capacity and should be considered as a DNA barcoding marker for mosses, especially in complexes of closely related species. Molecular species identification should be complemented by redefining morphological characters, to develop a set of easy-to-use molecular and non-molecular identification tools for improving biodiversity assessments and ecological research including mosses.

摘要

在苔藓植物中,形态物种概念仍然是最常用的,但基于形态特征来划分密切相关的物种通常是困难的。在这里,我们基于叶绿体(rps4-trnT-trnL 区)和核(nrITS)基因组中的可变 DNA 序列标记,测试了苔藓属 Racomitrium 物种复合体中的形态物种界限,即 R. canescens 复合体。该复合体内部具有广泛的形态变异性,导致对于要区分的物种和种内分类单元的数量存在不同意见。分子系统发育重建能够清楚地区分该复合体中目前公认的 8 个物种,以及在早期分子分析中推断属于该复合体的第 9 个物种。讨论了种内序列变异的分类学意义。目前的分子数据不支持将 R. canescens 复合体分为两个物种群(亚组或组)。尽管部分形态特征难以应用,但大多数形态特征对于 R. canescens 复合体中的物种鉴定仍然是可靠的。然而,对形态介于物种之间的采集物的错误鉴定质疑了叶片形状作为诊断特征的适用性。四个分子标记(rps4-trnT、trnT-trnL、ITS1、ITS2)的分区在扩增和测序成功率方面几乎具有相同的性能,可用于分子物种鉴定(DNA 条形码)。其中,ITS1 提供了最高的物种鉴别能力,应被视为苔藓类植物的 DNA 条形码标记,特别是在密切相关物种的复合体中。分子物种鉴定应辅以重新定义形态特征,开发一套易于使用的分子和非分子鉴定工具,以提高生物多样性评估和包括苔藓在内的生态研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a6b/3544804/94893d49cd50/pone.0053134.g001.jpg

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