DNA Barcoding of Economically Important Mushrooms:A Case Study on Lethal Amanitas from China

Q. Cai, Liping Tang, Zhu-Liang Yang
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引用次数: 17

Abstract

Some species of the genus Amanita are economically important gourmet mushrooms,while others cause dramatic poisonings or even deaths every year in China and in many other countries.A DNA barcode is a short segment or a combination of short segments of DNA sequences that can distinguish species rapidly and accurately.To establish a standard DNA barcode for poisonous species of Amanita in China,three candidate markers,the large subunit nuclear ribosomal RNA (nLSU),the internal transcribed spacer (ITS),and the translation elongation factor 1-alpha (tef1-α) were tested using the eukaryotic general primers for their feasibility as barcodes to identify seven species of lethal fungi and two species of edible ones which can easily be confused with the lethal ones known from China.In addition,A.phalloides—a European and North American species closely related to one of the seven taxa,A.subjunquillea was also included.PCR amplification and sequencing success rate,intra-and inter-specific variation and rate of species identification were considered as main criteria for evaluation of the candidate DNA barcodes.Although the nLSU had high PCR and sequencing success rates (100% and 100% respectively),occasional overlapping occurred between the intra-and inter-specific variations.The PCR amplification and sequencing success rates of ITS were 100% and 85.7% respectively.ITS showed high sequence variation among species group and low variation within a given species.There was a relatively high PCR amplification and sequencing success rate for tef1-α (85.7% and 100% respectively),and its intra-and inter-specific variation was higher than that of ITS or nLSU.All three candidate markers showed hight species resolution.ITS and tef1-α had a more clearly defined barcode gap than nLSU.Our study showed that the tef1-α and nLSU can be proposed as supplementary barcodes for the genus Amanita,while ITS can be used as a primary barcode marker considering that the ITS region may become a universal barcode marker for the fungal kingdom.
具有重要经济价值的蘑菇的DNA条形码分析——以中国致命毒蘑菇为例
金刚伞属的一些品种是经济上重要的美食蘑菇,而其他品种每年在中国和许多其他国家造成严重中毒甚至死亡。DNA条形码是DNA序列的短片段或短片段的组合,可以快速准确地区分物种。为了建立中国毒蝇毒蝇的标准DNA条形码,利用真核通用引物对大亚基核糖体RNA (nLSU)、内转录间隔物(ITS)和翻译延伸因子1-α (tef1-α) 3个候选标记进行了条形码可行性测试,鉴定了7种致命真菌和2种易与中国已知致命真菌混淆的食用真菌。此外,一个。phalloides -一个欧洲和北美的种,与7个分类群中的一个密切相关。亚junquillea也包括在内。PCR扩增率、测序成功率、种内和种间变异率、物种鉴定率是评价候选DNA条形码的主要标准。尽管nLSU具有很高的PCR和测序成功率(分别为100%和100%),但在种内和种间变异之间偶尔会发生重叠。ITS的PCR扩增成功率为100%,测序成功率为85.7%。ITS在种群间表现出较高的序列变异,在同一种内表现出较低的序列变异。tef1-α具有较高的PCR扩增率和测序成功率(分别为85.7%和100%),且其种内和种间变异均高于its和nLSU。三个候选标记均表现出较高的物种分辨率。ITS和tef1-α具有比nLSU更清晰的条形码间隙。我们的研究表明tef1-α和nLSU可以作为Amanita属的补充条形码,而ITS可以作为主要条形码标记,考虑到ITS区域可能成为真菌界的通用条形码标记。
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