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根结线虫、形态学与生物多样性评估:以环线虫亚目线虫及保守的18S DNA条形码为例的研究

MOTUs, Morphology, and Biodiversity Estimation: A Case Study Using Nematodes of the Suborder Criconematina and a Conserved 18S DNA Barcode.

作者信息

Powers Thomas, Harris Timothy, Higgins Rebecca, Mullin Peter, Sutton Lisa, Powers Kirsten

机构信息

University of Nebraska, Department of Plant Pathology, 406F Plant Sciences Hall, Lincoln, NE 68583, USA.

出版信息

J Nematol. 2011 Mar;43(1):35-48.

Abstract

DNA barcodes are increasingly used to provide an estimate of biodiversity for small, cryptic organisms like nematodes. Nucleotide sequences generated by the barcoding process are often grouped, based on similarity, into molecular operational taxonomic units (MOTUs). In order to get a better understanding of the taxonomic resolution of a 3' 592-bp 18S rDNA barcode, we have analyzed 100 MOTUs generated from 214 specimens in the nematode suborder Criconematina. Previous research has demonstrated that the primer set for this barcode reliably amplifies all nematodes in the Phylum Nematoda. Included among the Criconematina specimens were 25 morphologically described species representing 12 genera. Using the most stringent definition of MOTU membership, where a single nucleotide difference is sufficient for the creation of a new MOTU, it was found that an MOTU can represent a subgroup of a species (e.g. Discocriconemella limitanea), a single species (Bakernema inaequale), or a species complex (MOTU 76). A maximum likelihood phylogenetic analysis of the MOTU dataset generated four major clades that were further analyzed by character-based barcode analysis. Fourteen of the 25 morphologically identified species had at least one putative diagnostic nucleotide identified by this character-based approach. These diagnostic nucleotides could be useful in biodiversity assessments when ambiguous results are encountered in database searches that use a distance-based metric for nucleotide sequence comparisons. Information and images regarding specimens examined during this study are available online.

摘要

DNA条形码越来越多地用于估计线虫等小型隐匿生物的生物多样性。条形码分析过程中产生的核苷酸序列通常根据相似性被分组为分子操作分类单元(MOTUs)。为了更好地理解3' 592-bp 18S rDNA条形码的分类分辨率,我们分析了线虫亚目环线虫纲中214个标本产生的100个MOTUs。先前的研究表明,该条形码的引物组能可靠地扩增线虫门中的所有线虫。环线虫纲标本中包括25个形态学上已描述的物种,分属于12个属。使用最严格的MOTU成员定义,即单个核苷酸差异就足以创建一个新的MOTU,发现一个MOTU可以代表一个物种的一个亚组(如界限盘环线虫)、一个单一物种(不等贝克线虫)或一个物种复合体(MOTU 76)。对MOTU数据集进行的最大似然系统发育分析产生了四个主要分支,并通过基于特征的条形码分析进一步分析。25个形态学鉴定的物种中有14个通过这种基于特征的方法鉴定出了至少一个推定的诊断核苷酸。当在使用基于距离的核苷酸序列比较度量的数据库搜索中遇到模糊结果时,这些诊断核苷酸可用于生物多样性评估。有关本研究中检查的标本的信息和图像可在线获取。

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