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Large-Scale Characterization of the Soil Microbiome in Ancient Tea Plantations Using High-Throughput 16S rRNA and Internal Transcribed Spacer Amplicon Sequencing

内转录区 生物 高度(三角形) 扩增子测序 微生物群 16S核糖体RNA 群落结构 酸杆菌 微生物种群生物学 土壤微生物学 丰度(生态学) 相对物种丰度 植物 土壤水分 生态学 核糖体RNA 放线菌门 细菌 基因 数学 生物信息学 遗传学 生物化学 几何学
作者
Ling Kui,Guisheng Xiang,Ya Wang,Zijun Wang,Guorong Li,Dawei Li,Jing Yan,Shuang Ye,Chunping Wang,Ling Yang,Shiyu Zhang,Shuangyan Zhang,Ling Zhou,Heng Gui,Jianchu Xu,Wei Chen,Jun Zhang,Ting-Yuan Huang,Aasim Majeed,Jun Sheng
出处
期刊:Frontiers in Microbiology [Frontiers Media SA]
卷期号:12: 745225-745225 被引量:28
标识
DOI:10.3389/fmicb.2021.745225
摘要

There is a special interaction between the environment, soil microorganisms, and tea plants, which constitute the ecosystem of tea plantations. Influenced by environmental factors and human management, the changes in soil microbial community affected the growth, quality, and yield of tea plants. However, little is known about the composition and structure of soil bacterial and fungal communities in 100-year-old tea plantations and the mechanisms by which they are affected. In this regard, we characterized the microbiome of tea plantation soils by considering the bacterial and fungal communities in 448 soil samples from 101 ancient tea plantations in eight counties of Lincang city, which is one of the tea domestication centers in the world. 16S and Internal Transcribed Spacer (ITS) rRNA high-throughput amplicon sequencing techniques were applied in this study. The results showed that the abundance, diversity, and composition of the bacterial and fungal communities have different sensitivity with varying pH, altitude, and latitude. pH and altitude affect soil microbial communities, and bacterial communities are more sensitive than fungi in terms of abundance and diversity to pH. The highest α-diversity of bacterial communities is shown in the pH 4.50–5.00 and 2,200-m group, and fungi peaked in the pH 5.00–5.50 and 900-m group. Because of environmental and geographical factors, all microbes are similarly changing, and further correlations showed that the composition and structure of bacterial communities are more sensitive than fungal communities, which were affected by latitude and altitude. In conclusion, the interference of anthropogenic activities plays a more important role in governing fungal community selection than environmental or geographical factors, whereas for the bacterial community, it is more selective to environment adaptation than to adaptation to human activities.
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