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利用当代和历史DNA解析波氏藻属(珊瑚藻目,红藻门)的隐存物种

Resolving cryptic species of Bossiella (Corallinales, Rhodophyta) using contemporary and historical DNA.

作者信息

Hind Katharine R, Miller Kathy Ann, Young Madeline, Jensen Cassandra, Gabrielson Paul W, Martone Patrick T

机构信息

Department of Botany and Biodiversity Research Centre, University of British Columbia, 6270 University Blvd., Vancouver, British Columbia, Canada, V6T 1Z4 Hakai Institute, Pruth Harbour, Calvert Island, British Columbia, Canada V0P 1H0

University Herbarium, Silva Center for Phycological Documentation, 1001 Valley Life Sciences Building #2465, University of California, Berkeley, California 94720 USA.

出版信息

Am J Bot. 2015 Nov;102(11):1912-30. doi: 10.3732/ajb.1500308. Epub 2015 Nov 5.

Abstract

PREMISE OF THE STUDY

Phenotypic plasticity and convergent evolution have long complicated traditional morphological taxonomy. Fortunately, DNA sequences provide an additional basis for comparison, independent of morphology. Most importantly, by obtaining DNA sequences from historical type specimens, we are now able to unequivocally match species names to genetic groups, often with surprising results.

METHODS

We used an integrative taxonomic approach to identify and describe Northeast Pacific pinnately branched species in the red algal coralline genus Bossiella, for which traditional taxonomy recognized only one species, the generitype, Bossiella plumosa. We analyzed DNA sequences from historical type specimens and modern topotype specimens to assign species names and to identify genetic groups that were different and that required new names. Our molecular taxonomic assessment was followed by a detailed morphometric analysis of each species.

KEY RESULTS

Our study of B. plumosa revealed seven pinnately branched Bossiella species. Three species, B. frondescens, B. frondifera, and B. plumosa, were assigned names based on sequences from type specimens. The remaining four species, B. hakaiensis, B. manzae, B. reptans, and B. montereyensis, were described as new to science. In most cases, there was significant overlap of morphological characteristics among species.

CONCLUSIONS

This study underscores the pitfalls of relying upon morpho-anatomy alone to distinguish species and highlights our likely underestimation of species worldwide. Our integrative taxonomic approach can serve as a model for resolving the taxonomy of other plant and algal genera.

摘要

研究前提

表型可塑性和趋同进化长期以来使传统形态分类学变得复杂。幸运的是,DNA序列提供了一个独立于形态学的额外比较基础。最重要的是,通过从历史模式标本中获取DNA序列,我们现在能够明确地将物种名称与基因群组匹配起来,结果往往令人惊讶。

方法

我们采用综合分类学方法来识别和描述东北太平洋红藻珊瑚藻属Bossiella中羽状分支的物种,传统分类学仅识别该属的一个物种,即模式种Bossiella plumosa。我们分析了历史模式标本和现代原产地标本的DNA序列,以确定物种名称,并识别不同的、需要新名称的基因群组。在进行分子分类学评估之后,我们对每个物种进行了详细的形态测量分析。

关键结果

我们对B. plumosa的研究揭示了7个羽状分支的Bossiella物种。根据模式标本的序列,为3个物种B. frondescens、B. frondifera和B. plumosa确定了名称。其余4个物种B. hakaiensis、B. manzae、B. reptans和B. montereyensis被描述为新物种。在大多数情况下,物种之间的形态特征存在显著重叠。

结论

这项研究强调了仅依靠形态解剖学来区分物种的缺陷,并突出了我们可能对全球物种的低估。我们的综合分类学方法可以作为解决其他植物和藻类属分类问题的一个范例。

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