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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Effects of biochar, earthworms, and litter addition on soil microbial activity and abundance in a temperate agricultural soil
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Effects of biochar, earthworms, and litter addition on soil microbial activity and abundance in a temperate agricultural soil

机译:生物炭,蚯蚓和凋落物对水土微生物活性和丰度的影响

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Biochar application to arable soils could be effective for soil C sequestration and mitigation of greenhouse gas (GHG) emissions. Soil microorganisms and fauna are the major contributors to GHG emissions from soil, but their interactions with biochar are poorly understood. We investigated the effects of biochar and its interaction with earthworms on soil microbial activity, abundance, and community composition in an incubation experiment with an arable soil with and without N-rich litter addition. After 37 days of incubation, biochar significantly reduced CO2 (up to 43 %) and N2O (up to 42 %), as well as NH4 (+)-N and NO3 (-)-N concentrations, compared to the control soils. Concurrently, in the treatments with litter, biochar increased microbial biomass and the soil microbial community composition shifted to higher fungal-to-bacterial ratios. Without litter, all microbial groups were positively affected by biochar x earthworm interactions suggesting better living conditions for soil microorganisms in biochar-containing cast aggregates after the earthworm gut passage. However, assimilation of biochar-C by earthworms was negligible, indicating no direct benefit for the earthworms from biochar uptake. Biochar strongly reduced the metabolic quotient qCO(2) and suppressed the degradation of native SOC, resulting in large negative priming effects (up to 68 %). We conclude that the biochar amendment altered microbial activity, abundance, and community composition, inducing a more efficient microbial community with reduced emissions of CO2 and N2O. Earthworms affected soil microorganisms only in the presence of biochar, highlighting the need for further research on the interactions of biochar with soil fauna.
机译:生物炭应用于耕地土壤可能对土壤C封存和减轻温室气体(GHG)排放有效。土壤微生物和动物部是土壤温室气体排放的主要贡献者,但它们与生物炭的互动较差。我们研究了生物炭的影响及其与蚯蚓对土壤微生物活性,丰度和群落组成的影响,在孵化实验中,含有富氮砂土的植物土壤。孵育37天后,与对照土壤相比,生物炭显着减少二氧化碳(高达43%)和N2O(高达42%),以及NH4(+) - N和NO 3( - ) - N浓度。同时,在凋落物的治疗中,生物炭增加的微生物生物量和土壤微生物群落组合物转移到更高的真菌对细菌比率。没有垃圾,所有微生物组受到生物炭X蚯蚓相互作用的正面影响,这表明蚯蚓肠道后含有生物炭铸料中的土壤微生物的更好的生活条件。然而,通过蚯蚓的同化蚯蚓可以忽略不计,表明生物炭吸收的蚯蚓没有直接的好处。生物炭强烈地降低了代谢商QCO(2)并抑制了天然SOC的降解,导致了大的负灌注效应(高达68%)。我们得出结论,生物炭修正案改变了微生物活性,丰度和群落组成,诱导更有效的微生物群体,减少二氧化碳和N2O的排放。蚯蚓仅在生物炭的存在下影响土壤微生物,突出了进一步研究生物炭与土壤的相互作用。

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