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Taxa-specific changes in soil microbial community composition induced by pyrogenic carbon amendments

机译:热生碳改良剂引起的土壤微生物群落组成的分类群特异性变化

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The effects of pyrogenic carbon on the microbial diversity of forest soils were examined by comparing two soil types, fire-impacted and non-impacted, that were incubated with laboratory-generated biochars. Molecular and culture-dependent analyses of the biochar-treated forest soils revealed shifts in the relative abundance and diversity of key taxa upon the addition of biochars, which were dependent on biochar and soil type. Specifically, there was an overall loss of microbial diversity in all soils treated with oak and grass-derived biochar as detected by automated ribosomal intergenic spacer analysis. Although the overall diversity decreased upon biochar amendments, there were increases in specific taxa during biochar-amended incubation. DNA sequencing of these taxa revealed an increase in the relative abundance of bacteria within the phyla Actinobacteria and Gemmatimonadetes in biochar-treated soils. Together, these results reveal a pronounced impact of pyrogenic carbon on soil microbial community composition and an enrichment of key taxa within the parent soil microbial community.
机译:通过比较两种土壤类型(火生和非生生的土壤)与实验室生成的生物炭一起培养,研究了热解碳对森林土壤微生物多样性的影响。分子和文化相关的生物炭处理过的森林土壤分析表明,添加生物炭后,主要分类单元的相对丰度和多样性发生了变化,这取决于生物炭和土壤类型。具体而言,通过自动核糖体基因间间隔区分析检测到,在所有用橡木和草衍生生物炭处理过的土壤中,微生物多样性总体丧失。尽管生物炭改良后总体多样性下降,但在生物炭改良的孵化过程中,特定分类群有所增加。这些类群的DNA测序表明,生物炭处理过的土壤中,放线菌属和芽孢杆菌属中细菌的相对丰度增加。总之,这些结果揭示了热解碳对土壤微生物群落组成的显着影响以及母体土壤微生物群落中关键类群的富集。

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