Borneman J, Hartin R J
Department of Plant Pathology, University of California, Riverside, California 92521, USA.
Appl Environ Microbiol. 2000 Oct;66(10):4356-60. doi: 10.1128/AEM.66.10.4356-4360.2000.
Two PCR primer pairs were designed to amplify rRNA genes (rDNA) from all four major phyla of fungi: Ascomycota, Basidiomycota, Chytridomycota, and Zygomycota. PCRs performed with these primers showed that both pairs amplify DNA from organisms representing the major taxonomic groups of fungi but not from nonfungal sources. To test the ability of the primers to amplify fungal rDNA from environment samples, clone libraries from two avocado grove soils were constructed and analyzed. These soils possess different abilities to inhibit avocado root rot caused by Phythophthora cinnamomi. Analysis of the two rDNA clone libraries revealed differences in the two fungal communities. It also revealed a markedly different depiction of the soil fungal community than that generated by a culture-based analysis, confirming the value of rDNA-based approaches for identifying organisms that may not readily grow on agar media. Additional evidence of the usefulness of the primers was obtained by identifying fungi associated with avocado leaves. In both the soil and leaf analyses, no nonfungal rDNA sequences were identified, illustrating the selectivity of these PCR primers. This work demonstrates the ability of two newly developed PCR primer sets to amplify fungal rDNA from soil and plant tissue, thereby providing unique tools to examine this vast and mostly undescribed community of organisms.
设计了两对PCR引物,用于扩增真菌四大主要门类(子囊菌门、担子菌门、壶菌门和接合菌门)的核糖体RNA基因(rDNA)。用这些引物进行的PCR结果表明,这两对引物都能扩增出代表真菌主要分类群的生物体的DNA,但不能扩增非真菌来源的DNA。为了测试这些引物从环境样本中扩增真菌rDNA的能力,构建并分析了来自两种鳄梨林土壤的克隆文库。这些土壤对由樟疫霉引起的鳄梨根腐病具有不同的抑制能力。对两个rDNA克隆文库的分析揭示了两个真菌群落的差异。同时也揭示了土壤真菌群落与基于培养分析的结果有明显不同,证实了基于rDNA的方法对于识别可能不易在琼脂培养基上生长的生物体的价值。通过鉴定与鳄梨叶相关的真菌,获得了这些引物有用性的更多证据。在土壤和叶片分析中,均未鉴定出非真菌rDNA序列,说明了这些PCR引物的选择性。这项工作证明了两组新开发的PCR引物能够从土壤和植物组织中扩增真菌rDNA,从而为研究这个庞大且大多未被描述的生物群落提供了独特的工具。