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Gasification biochar has limited effects on functional and structural diversity of soil microbial communities in a temperate agroecosystem

机译:气化生物炭对温带农业生态系统中土壤微生物群落功能和结构多样性的影响有限

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Biochar may enhance soil fertility and carbon (C) sequestration but there is still a lack of comprehensive understanding of its effects on soil microbial communities and functioning. This study tested the differential effects of two doses (6-8 and 0.8-1.4 t ha(-1) for High and Low doses, respectively) of wheat straw gasification biochar (GBC) and fresh straw incorporated as soil amendments into an agricultural field in Denmark. Soils were analysed three months after the amendments for pH, total organic matter, microbial biomass (ATP), ten enzymatic activities, catabolic potential by substrate-induced respiration (MicroResp (TM)), soil toxicity test (BioTox (TM)) and bacterial community structure (Illumina 16S rRNA gene sequencing). No significant effect of biochar treatment was observed regarding ATP content, catabolic community profiles and soil toxicity. The higher dose of GBC increased phenol oxidase activity and soil pH, and decreased the cellulase activity. No major effect of high dose GBC was observed on the soil community diversity, and only minor effect on the community composition, with an increase in the relative abundance of a single OTU associated with Acidobacteria_Gp16. Addition of low dose of GBC caused an increase in the relative abundance of the rare members in the microbial communities thus increasing the diversity of soil microorganisms. A comparable effect was observed with the addition of fresh straw. Overall, our results indicated that GBC as soil amendment had a limited effect on the functional and structural diversity of soil microbial communities in a Danish temperate agroecosystem. (C) 2016 Elsevier Ltd. All rights reserved.
机译:生物炭可能会增强土壤肥力和固碳(C),但仍缺乏对其对土壤微生物群落和功能的影响的全面了解。这项研究测试了两种剂量(高剂量和低剂量分别为6-8和0.8-1.4 t ha(-1))小麦秸秆气化生物炭(GBC)和作为土壤改良剂掺入农业领域的新鲜秸秆的差异在丹麦。修改pH值,总有机质,微生物生物量(ATP),十种酶活性,底物诱导的呼吸作用(MicroResp(TM)),土壤毒性测试(BioTox(TM))和细菌的修正后三个月对土壤进行分析社区结构(Illumina 16S rRNA基因测序)。在ATP含量,分解代谢群落分布和土壤毒性方面,未观察到生物炭处理的显着效果。较高剂量的GBC可增加酚氧化酶活性和土壤pH值,并降低纤维素酶活性。没有观察到高剂量GBC对土壤群落多样性的主要影响,而对群落组成的影响很小,而与酸性细菌_Gp16相关的单个OTU的相对丰度却增加了。低剂量GBC的添加导致微生物群落中稀有成员的相对丰度增加,从而增加了土壤微生物的多样性。添加新鲜稻草可观察到类似的效果。总体而言,我们的结果表明,GBC作为土壤改良剂对丹麦温带农业生态系统中土壤微生物群落的功能和结构多样性影响有限。 (C)2016 Elsevier Ltd.保留所有权利。

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