首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Effects of abiotic components induced by biochar on microbial communities.
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Effects of abiotic components induced by biochar on microbial communities.

机译:生物炭诱导的非生物成分对微生物群落的影响。

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摘要

Soil microorganisms play an important role on ecosystems and are influenced by a variety of abiotic and biotic variables. The influence of biochar on the microbial community has been reported, but its mechanism modifying soil microbial distribution is less understood. In this paper, biochar was physically separated from soil, and the abiotic characteristics generally recognised influencing soil microbial communities were examined. The microbial community structure was assessed via denaturing gradient gel electrophoresis (DGGE). The influence of abiotic components including available N, Olsen P and extractable K, pH and C/N induced by biochar on soil microbial communities was compared by canonical correspondence analysis (CCA). Results indicated that biochar fostered more fungi and stimulated bacteria growth in the adjacent soil. Biochar particles at three sampling times exhibited the similar microbial community composition, although it was also impacted by temporal factors. Phylogenetic distributions of the operational taxonomic units (OTUs) could be divided into the following eight groups: Bacillaceae, Gemmatinomadetes, Sphingomanas, Acidobacteria, Proteobacteria, Chloroflexaceae, Actibacteria (similarity >95%) and unknown (similarity <85%). CCA revealed the great contribution of C/N, Olsen P and extractable K to fungi growth, and C/N and Olsen P to actinomycete abundance. The presence of biochar not only induced increase of available nutrients but also increased microbial biomass and diversity, which indicated beneficial effects on soil microorganisms and soil fertility.
机译:土壤微生物在生态系统中起着重要作用,并受到各种非生物和生物变量的影响。已经报道了生物炭对微生物群落的影响,但是其改变土壤微生物分布的机理尚不清楚。在本文中,将生物炭从土壤中物理分离出来,并研究了公认的影响土壤微生物群落的非生物特征。通过变性梯度凝胶电泳(DGGE)评估微生物群落结构。通过规范对应分析(CCA)比较了生物炭引起的非生物成分(包括有效氮,奥尔森磷和可提取的钾,pH和C / N)对土壤微生物群落的影响。结果表明,生物炭在附近的土壤中培育了更多的真菌并刺激了细菌的生长。在三个采样时间,生物炭颗粒表现出相似的微生物群落组成,尽管它也受到时间因素的影响。可操作分类单位(OTU)的系统发生分布可分为以下八类:杆菌科,芽孢杆菌科,鞘氨醇单胞菌,嗜酸菌,变形杆菌,绿屈菜科,放线菌(相似度> 95%)和未知细菌(相似度<85%)。 CCA揭示了C / N,Olsen P和可提取的K对真菌生长的巨大贡献,以及C / N和Olsen P对放线菌的丰富度的巨大贡献。生物炭的存在不仅引起可用养分的增加,而且还增加了微生物的生物量和多样性,这表明对土壤微生物和土壤肥力具有有益作用。

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