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Implication of temporal dynamics of microbial abundance and nutrients to soil fertility under biochar application - Field experiments conducted in a brown soil cultivated with soybean, north China

机译:生物炭施用下微生物丰度与营养成分对土壤肥力的影响 - 中国北方大豆栽培棕壤中的棕色土壤中的土壤肥力

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A short-term experiment was conducted to investigate responses of microbial community composition and nutrients dynamics to biochar-amended brown soil. We examined the effect of biochar on microbial abundance by plate counting method and microbial community composition changes by DGGE, as well as effect on total and available nutrients N, P and K content. Soil pH measurement was also incorporated into our study. The overall results showed that bacterial abundance increased more than actinomycetes, but fungal abundance decreased slightly in biochar amended soil in later sampling times. In terms of microbial community composition, DGGE analysis for bacteria exhibited some specific lanes in biochar treatments. Bacterial community was more sensitive to sampling time, but fungal community was influenced greatly by biochar addition. In our study, total C content increased significantly, as biochar rate and sampling time preceded. Total N increased slightly in later sampling time, and thus C and N ratio increase was obtained. Total P and K changes were not obvious. Extractable N and pH increased. Microbial utilization was assumed to contribute to extractable P and K decrease in later sampling times. Results suggested that biochar incorporation to brown soil might bring potential benefit to soil fertility from N retention in soil. Microbial turnover may feedback P and K to soil as well in the long term. There may also be an implication of beneficial effect on disease alleviation lead by microbial community imbalance.
机译:进行了短期实验,以研究微生物群落组成和营养动力学对生物炭修正的棕色土壤的反应。我们检查了Biochar对通过板数计数方法和微生物群落组成的微生物丰度的影响,通过DGGE改变,以及对总和可用营养素N,P和K含量的影响。土壤pH测量也纳入我们的研究。总体结果表明,细菌丰度比放线菌更多地增加,但在后来的取样时间中,生物炭修正的土壤中的真菌丰度略微下降。就微生物群落组成而言,细菌的DGGE分析在生物炭处理中表现出一些特定的泳道。细菌群体对取样时间更敏感,但生物炭加入的真菌群落受到影响。在我们的研究中,C总C含量显着增加,作为生物炭率和采样时间之前。在后面的取样时间略微增加,因此获得C和N比增加。总P和K变化不明显。可提取的n和pH增加。假设微生物利用有助于提取可提取的P和K在后续取样时间下降。结果表明,生物炭加入棕壤土壤可能会对土壤保留的土壤肥力带来潜在的益处。微生物周转可以在长期内反馈P和K到土壤。在微生物群落不平衡的情况下也可能对疾病减轻铅的有益效果产生暗示。

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