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The utility of mtDNA and rDNA for barcoding and phylogeny of plant-parasitic nematodes from Longidoridae (Nematoda Enoplea)

机译:mtDNA和rDNA在Longidoridae(NematodaEnoplea)的植物寄生线虫的条形码和系统发育中的用途

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摘要

The traditional identification of plant-parasitic nematode species by morphology and morphometric studies is very difficult because of high morphological variability that can lead to considerable overlap of many characteristics and their ambiguous interpretation. For this reason, it is essential to implement approaches to ensure accurate species identification. DNA barcoding aids in identification and advances species discovery. This study sought to unravel the use of the mitochondrial marker cytochrome c oxidase subunit 1 (coxI) as barcode for Longidoridae species identification, and as a phylogenetic marker. The results showed that mitochondrial and ribosomal markers could be used as barcoding markers, except for some species from the Xiphinema americanum group. The ITS1 region showed a promising role in barcoding for species identification because of the clear molecular variability among species. Some species presented important molecular variability in coxI. The analysis of the newly provided sequences and the sequences deposited in GenBank showed plausible misidentifications, and the use of voucher species and topotype specimens is a priority for this group of nematodes. The use of coxI and D2 and D3 expansion segments of the 28S rRNA gene did not clarify the phylogeny at the genus level.
机译:通过形态学和形态计量学研究对植物寄生线虫种类进行传统鉴定非常困难,因为形态变异性高,这可能导致许多特征的大量重叠及其模棱两可的解释。因此,必须采取措施确保准确的物种识别。 DNA条形码有助于识别并促进物种发现。这项研究试图揭示线粒体标记细胞色素C氧化酶亚基1(coxI)的用途,作为条形码用于识别龙眼科物种,并作为系统发生标记。结果表明,除了美国Xhiphinema组的某些物种外,线粒体和核糖体标记都可以用作条形码标记。 ITS1区在物种识别的条形码中显示出有希望的作用,因为物种之间存在明显的分子变异性。一些物种在coxI中表现出重要的分子变异性。对新提供的序列和GenBank中存储的序列的分析显示出可能的错误识别,使用凭证种类和拓扑标本是这组线虫的优先事项。 28S rRNA基因的coxI和D2和D3扩展区段的使用并不能在属水平上阐明系统发育。

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