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DNA barcoding of oomycetes with cytochrome c oxidase subunit I and internal transcribed spacer

机译:具有细胞色素C氧化酶亚基I和内部转录间隔区的卵菌的DNA条形码

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摘要

Oomycete species occupy many different environments and many ecological niches. The genera Phytophthora and Pythium for example, contain many plant pathogens which cause enormous damage to a wide range of plant species. Proper identification to the species level is a critical first step in any investigation of oomycetes, whether it is research driven or compelled by the need for rapid and accurate diagnostics during a pathogen outbreak. The use of DNA for oomycete species identification is well established, but DNA barcoding with cytochrome c oxidase subunit I (COI) is a relatively new approach that has yet to be assessed over a significant sample of oomycete genera. In this study we have sequenced COI, from 1205 isolates representing 23 genera. A comparison to internal transcribed spacer (ITS) sequences from the same isolates showed that COI identification is a practical option; complementary because it uses the mitochondrial genome instead of nuclear DNA. In some cases COI was more discriminative than ITS at the species level. This is in contrast to the large ribosomal subunit, which showed poor species resolution when sequenced from a subset of the isolates used in this study. The results described in this paper indicate that COI sequencing and the dataset generated are a valuable addition to the currently available oomycete taxonomy resources, and that both COI, the default DNA barcode supported by GenBank, and ITS, the de facto barcode accepted by the oomycete and mycology community, are acceptable and complementary DNA barcodes to be used for identification of oomycetes.
机译:卵菌纲物种占据许多不同的环境和许多生态位。例如,疫霉属(Phytophthora)和腐霉属(Pythium)含有许多植物病原体,这些病原体对广泛的植物种类造成巨大的损害。在卵菌的任何调查中,正确地识别物种水平是关键的第一步,无论是研究驱动还是因病原体暴发期间对快速准确诊断的需求而被迫进行。 DNA在卵菌种鉴定中的应用已经很成熟,但是用细胞色素C氧化酶亚基I(COI)进行DNA条形码编码是一种相对较新的方法,尚未对大量卵菌属样品进行评估。在这项研究中,我们对代表23个属的1205个分离株的COI进行了测序。与来自相同分离株的内部转录间隔区(ITS)序列的比较表明,COI鉴定是一种可行的选择。互补的,因为它使用线粒体基因组而不是核DNA。在某些情况下,COI在物种层面上比ITS更具歧视性。这与较大的核糖体亚基相反,后者从本研究中使用的分离株的子集进行测序时显示出较差的物种分辨率。本文描述的结果表明,COI测序和生成的数据集是对当前可用的卵菌类生物分类资源的宝贵补充,并且GenI支持的默认DNA条码COI和卵石类所接受的事实上的条形码ITS和真菌学界,是可接受的和互补的DNA条码,用于鉴定卵菌。

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