首页> 外文期刊>Journal of Nematology, with Annual of Applied Nematology >MOTUs, Morphology, and Biodiversity Estimation: A Case Study Using Nematodes of the Suborder Criconematina and a Conserved18S DNA Barcode
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MOTUs, Morphology, and Biodiversity Estimation: A Case Study Using Nematodes of the Suborder Criconematina and a Conserved18S DNA Barcode

机译:MOTU,形态和生物多样性的估计:使用亚纲Criconematina线虫和保守的18S DNA条形码的案例研究。

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摘要

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 taxonomicunits (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 (Bahernema inaequale), or a species complex (MOTU 76). Amaximum 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.
机译:DNA条形码越来越多地用于估算线虫等小型隐性生物的生物多样性。通常,基于相似性,将条形码过程中产生的核苷酸序列分为分子操作分类单位(MOTU)。为了更好地理解3'592-bp 18S rDNA条码的分类学分辨率,我们分析了线虫亚目Criconematina中214个标本产生的100个MOTU。先前的研究表明,该条形码的引物组可可靠地扩增Phylum Nematoda中的所有线虫。 Criconematina标本中包括代表12属的25种形态学描述的物种。使用最严格的MOTU成员资格定义,其中单个核苷酸差异足以创建新的MOTU,发现MOTU可以代表物种(例如Discocriconemella Limitanea),单个物种(Bahernema inaequale)的一个亚组。或物种复合物(MOTU 76)。 MOTU数据集的最大似然系统发育分析生成了四个主要进化枝,并通过基于字符的条形码分析对其进行了进一步分析。通过这种基于字符的方法,在25个形态上已识别的物种中,有14个具有至少一个推定的诊断核苷酸。当在使用基于距离的度量标准进行核苷酸序列比较的数据库搜索中遇到歧义结果时,这些诊断核苷酸可能在生物多样性评估中有用。有关本研究中检查的标本的信息和图像可在线获得。

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