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Soil Acidobacterial community composition changes sensitively with wetland degradation in northeastern of China

酸杆菌 环境科学 湿地 土壤碳 生态系统 土壤系列 土壤pH值 多样性指数 土壤生物多样性 土工试验 土壤生态学 土壤有机质 土壤水分 农学 生态学 土壤科学 土壤分类 生物 物种丰富度 遗传学 16S核糖体RNA 细菌 蛋白质细菌
作者
Xin Sui,Beat Frey,Libin Yang,Yingnan Liu,Rongtao Zhang,Hongwei Ni,Mai-He Li
出处
期刊:Frontiers in Microbiology [Frontiers Media]
卷期号:13
标识
DOI:10.3389/fmicb.2022.1052161
摘要

Acidobacteria are a major component of the soil bacteria and are conducted for many soil functions, and the soil Acidobacterial structure and diversity are affected by climate changes and human activities. However, soil Acidobacterial structure and diversity in wetland ecosystems are still limited recognized. The current study aimed to study the Acidobacterial community and diversity in relation to soil environmental factors along a typical degradation series from primitive wetland to forest in a representative fresh wetland in northeastern China. In this research, we assessed the soil Acidobacterial community composition, using Illumina MiSeq sequencing along a typical degradation series from primitive wetland to forest in a representative fresh wetland in northeastern China. The soil physico chemical properties changed significantly among the eight degrade stages (p < 0.05). The α diversity index (Shannon and Chao1 index) of soil Acidobacteria changed significantly between different degradation stages (p < 0.05). Principal Coordinates Analysis (PCoA) revealed that the soil acidobacteiral communities obviously separated into wetland group and forest group. The most abundant subgroups of Acidobacteria accounted for 31% (Gp1), 5% (Gp2), 12% (Gp3), 2% (Gp4), 5% (Gp6), and 2% (Gp7) in soils within eight successional series. The compositions of soil Acidobacteria in wetland stages were significantly affected by soil moisture content, soil total nitrogen and available nitrogen contents, while those in forest stages were significantly driven by soil pH, soil organic carbon, total nitrogen, available phosphorus and soil moisture content. Our results indicated that the soil Acidobacterial community was mainly structured by soil physico chemical parameters, and wetland degradation towards forests will greatly influence the soil Acidobacterial structure and thus the wetland functions.
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