Yang Juan, Dong Chun-Bo, Chen Wan-Hao, Liang Jian-Dong, Han Yan-Feng, Liang Zong-Qi
Institute of Fungus Resources,College of Life Science,Guizhou University Guiyang 550025,China.
Department of Microbiology,Guiyang College of Traditional Chinese Medicine Guiyang 550025,China.
Zhongguo Zhong Yao Za Zhi. 2019 Mar;44(6):1126-1134. doi: 10.19540/j.cnki.cjcmm.20181226.005.
Based on high-throughput sequencing and metagenomic technology,the community composition and ecological functions of endophytic fungi in the bark of Eucommia ulmoides from three producing areas,Fengxiang town in Zunyi county of Guizhou province,Lingyang town of Cili county of Hunan province and Mumen town of Wangcang county of Sichuan province,were analyzed. A total of110 865 effective sequences of endophytic fungi were obtained in the study. The corresponding fungal group of OTUs after clustering belonged to 3 phyla( Ascomycota,Basidiomycota,Zygomycota),10 classes,25 orders,41 families,57 genera and 74 species. Among them,the dominant genera of Sichuan Wangcang Bark of E. ulmoides( EWP) was an unclassified genus in the Nectriaceae of the Crimsonaceae,with a relative abundance of 54. 79%; The dominant species of Hunan Cili Bark of E. ulmoides( ECP) was the unclassified genus of Ascomycota,with a relative abundance of 39. 97% and the dominant species of Guizhou Zunyi bark( EZP) was Lophiostoma,and its relative abundance was 47. 07%. The analysis of α diversity indicated that the shannon diversity index of endophytic fungi from different places was as follows: ECP: 1. 340 2>EZP: 1. 380 4 > EWP: 1. 168 3. The simpson diversity index was: EWP( 0. 427 3) >EZP( 0. 332 5) > ECP( 0. 313 6). FUNGuild software platform analysis displayed that endophytic fungi of E. ulmoides bark from three producing areas contained the following 14 functional groups: plant pathogen,animal pathogen and endophyte et al.,the number of functional groups in the 3 samples of E. ulmoides reached up 8 genera and exceeded one half of the total number. Correlation analysis of Canonical correspondence analysis( CCA) between endophytic fungal community diversity and four active compounds of E. ulmoides were analyzed,the results showed that the contents of pinoresinol diglucoside and chlorogenic acid,to a certain extend,had a positive correlation with an unclassified genus of Davidiellaceae,Mortierella,Chaetomium and Pestalotiopsis from the endophytic fungi in EWP sample.
基于高通量测序和宏基因组技术,对来自贵州省遵义县枫香镇、湖南省慈利县零阳镇和四川省旺苍县木门镇三个产地的杜仲树皮内生真菌群落组成及生态功能进行了分析。本研究共获得110865条内生真菌有效序列。聚类后相应的OTU真菌类群隶属于3个门(子囊菌门、担子菌门、接合菌门)、10个纲、25个目、41个科、57个属和74个种。其中,四川旺苍杜仲树皮(EWP)的优势属为绯红科丛赤壳科中一个未分类的属,相对丰度为54.79%;湖南慈利杜仲树皮(ECP)的优势种为子囊菌门中一个未分类的属,相对丰度为39.97%,贵州遵义杜仲树皮(EZP)的优势种为座壳孢属,相对丰度为47.07%。α多样性分析表明,不同产地内生真菌的香农多样性指数如下:ECP:1.3402>EZP:1.3804>EWP:1.1683。辛普森多样性指数为:EWP(0.4273)>EZP(0.3325)>ECP(0.3136)。FUNGuild软件平台分析显示,三个产地杜仲树皮内生真菌包含植物病原菌、动物病原菌和内生菌等14个功能类群,杜仲三个样品中功能类群数量达8个属,超过总数的一半。对内生真菌群落多样性与杜仲四种活性成分进行典范对应分析(CCA)相关性分析,结果表明,松脂醇二葡萄糖苷和绿原酸的含量在一定程度上与EWP样品内生真菌中一个未分类的大卫氏菌属、被孢霉属、毛壳菌属和拟盘多毛孢属呈正相关。