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Metagenomics analysis of the effects of long-term stand age on beneficial soil bacterial community structure under Chinese ancient mulberry farming practice

机译:长期立场年龄对中国古代桑树养殖实践中有益土壤细菌群落作用的影响分析

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The ecological distribution and activities of soil microbes can reflect the influence of environmental factors on microbes and changes in soil fertility. Understanding the community structure of the soil microbes is of great importance to maintaining soil health in ancient mulberry plantation ecosystems. In this study, the population structure of soil microorganisms in different ages of mulberry plantations was analyzed using high-throughput sequencing technology. A total of 1616, 1568, 1379 and 1477 operational taxonomic units were acquired from samples of 3Y (3-year-old), 35Y (35-year-old), 200Y (200-year-old) and 600Y (600-year-old) soils, respectively. The results exhibited that the highest community diversity was found in 35Y soil, followed by 200Y soil, and showed that the stand age strongly influenced the community structure of soil bacteria. A total of 23 phyla were detected in 12 samples, and the genus of bacteria that predominated the different stand ages mainly included;Phenylobacterium,Cohnella,Lactococcus,Sphingomonas,Bacillus, andMicrobispora. The relative abundance ofPhenylobacteriumaccounts for 22.6-53.5% of the total abundance. This study showed that the richness and diversity of the soil bacteria decreased as the stand age increased in ancient mulberry plantations.
机译:土壤微生物的生态分布和活性可以反映环境因素对微生物的影响和土壤肥力的变化。了解土壤微生物的群落结构对古桑园生态系统的土壤健康具有重要意义。本研究采用高通量测序技术,分析了桑园不同树龄土壤微生物种群结构。分别从3Y(3年生)、35Y(35年生)、200Y(200年生)和600Y(600年生)土壤样品中获得了1616个、1568个、1379个和1477个操作分类单元。结果表明,35年生土壤的群落多样性最高,其次是200年生土壤,林龄对土壤细菌群落结构影响较大。在12个样品中共检测到23个门,占不同林龄优势的细菌属主要包括:;苯杆菌、科氏菌、乳球菌、鞘氨醇单胞菌、芽孢杆菌和微生物菌群。结核杆菌的相对丰度占总丰度的22.6-53.5%。研究表明,随着林龄的增加,古桑园土壤细菌的丰富度和多样性降低。

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