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High-throughput sequencing-based analysis of endogenetic fungal communities inhabiting the Chinese Cordyceps reveals unexpectedly high fungal diversity

机译:基于高通量测序的内源性真菌社区栖息地含有肠霉素的群体揭示出意外的高真菌多样性

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Chinese Cordyceps, known in Chinese as "DongChong XiaCao", is a parasitic complex of a fungus (Ophiocordyceps sinensis) and a caterpillar. The current study explored the endogenetic fungal communities inhabiting Chinese Cordyceps. Samples were collected from five different geographical regions of Qinghai and Tibet, and the nuclear ribosomal internal transcribed spacer-1 sequences from each sample were obtained using Illumina high-throughput sequencing. The results showed that Ascomycota was the dominant fungal phylum in Chinese Cordyceps and its soil microhabitat from different sampling regions. Among the Ascomycota, 65 genera were identified, and the abundant operational taxonomic units showed the strongest sequence similarity to Ophiocordyceps, Verticillium, Pseudallescheria, Candida and Ilyonectria Not surprisingly, the genus Ophiocordyceps was the largest among the fungal communities identified in the fruiting bodies and external mycelial cortices of Chinese Cordyceps. In addition, fungal communities in the soil microhabitats were clustered separately from the external mycelial cortices and fruiting bodies of Chinese Cordyceps from different sampling regions. There was no significant structural difference in the fungal communities between the fruiting bodies and external mycelial cortices of Chinese Cordyceps. This study revealed an unexpectedly high diversity of fungal communities inhabiting the Chinese Cordyceps and its microhabitats.
机译:中国冬虫夏草,以汉语为“东昌Xiacao”,是一种真菌(Ophiocordyceps Sinensis)和毛虫的寄生络合物。目前的研究探讨了栖息于中国冬虫夏草的内源性真菌社区。从青海和西藏的五种不同地理区域收集样品,使用Illumina高通量测序获得来自每个样品的核核糖体内部转录的间隔序列。结果表明,Ascomycota是来自不同采样区的中国冬虫夏草及其土壤微征的显性真菌场。在ascomycota中,鉴定了65个属,并且丰富的运作分类单位与蛋白酶,戊糖尿,假症,念珠菌和伊利诺克岛的最强的序列相似性毫不奇怪,因此奥皮奥佐氏菌属本身是在果实和外部鉴定的真菌社区中最大的中国冬虫夏草的菌丝皮质。此外,土壤微生物中的真菌社区与来自不同抽样区的中国冬虫夏草的外部菌丝皮质和结果体分开聚集。水果体与中国冬虫夏草的外部菌丝皮质之间没有显着的结构差异。该研究揭示了居住于中国冬虫夏草及其微藻的真菌社区意外高多样性。

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