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首页> 外文期刊>European Journal of Soil Science >Biochar addition rate influences soil microbial abundance and activity in temperate soils.
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Biochar addition rate influences soil microbial abundance and activity in temperate soils.

机译:生物炭的添加速率影响温带土壤中微生物的丰度和活性。

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摘要

Biochar (BC) amendment to soils is a proposed strategy to improve soil fertility and mitigate climate change. However, before this can become a recommended management practice, a better understanding of the impacts of BC on the soil biota is needed. We determined the effect of addition rates (0, 1, 5, 10 and 20% by mass) of a fast-pyrolysis wood-derived BC on the extraction efficiency (EE), abundance and temporal dynamics of phospholipid fatty acids (PLFAs, microbial community biomarkers) in four temperate soils during a 1-year incubation. Additionally, the effects on microbial mineralization/incorporation of BC-C were determined by measuring CO2 efflux and the BC contribution to CO2 and PLFA-C using the natural 13C abundance difference between BC and soils. Biochar addition proportionally increased microbial abundance in all soils and altered the community composition, particularly at the greatest addition rate, towards a more gram-negative bacteria-dominated (relative to fungi and gram-positive) community. Though chemically recalcitrant, the BC served as a substrate for microbial activity, more so at large addition rates and in soil with little organic matter. Microbial utilization of BC-C for growth could only partially explain the observed increase in microbial biomass, suggesting that other, potentially abiotic, mechanisms were involved. The strong decrease in PLFA EE (-77%) in all soils with biochar addition emphasizes the need to measure and correct for EE when using PLFA biomarkers to estimate soil microbial responses to BC additions. Overall, our study provides support for BC use as a soil amendment that potentially stimulates microbial activity and growth.
机译:对土壤的生物碳(BC)修正是提高土壤肥力和缓解气候变化的拟议策略。但是,在此成为推荐的管理实践之前,需要更好地了解BC对土壤生物群系的影响。我们确定了快速热解木材衍生的BC的添加比例(0、1、5、10和20质量%)对磷脂脂肪酸(PLFA,微生物)的提取效率(EE),丰度和时间动态的影响在一年的孵化过程中,在四种温带土壤中添加了生物标志物)。另外,通过使用自然测量CO 2 外排以及BC对CO 2 和PLFA-C的贡献来确定对BC-C的微生物矿化/掺入的影响。 BC与土壤之间> 13 C的丰度差异。生物炭的添加按比例增加了所有土壤中的微生物丰度,并改变了群落组成,尤其是以最大的添加率,朝着以革兰氏阴性菌为主(相对于真菌和革兰氏阳性)为主的群落。尽管在化学上具有顽强性,但BC还是微生物活性的底物,添加量大且在有机物少的土壤中更是如此。微生物利用BC-C促进生长只能部分解释观察到的微生物生物量的增加,这表明还涉及其他潜在的非生物机制。在添加生物炭的所有土壤中,PLFA EE的下降幅度很大(-77%),这强调了在使用PLFA生物标记物估算土壤对BC添加的微生物反应时,需要测量和校正EE。总的来说,我们的研究为BC用作土壤改良剂提供了支持,它可能刺激微生物的活动和生长。

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