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首页> 外文期刊>European Journal of Soil Science >Combined effects of labile and recalcitrant carbon on short-term availability of nitrogen in intensified arable soil.
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Combined effects of labile and recalcitrant carbon on short-term availability of nitrogen in intensified arable soil.

机译:不稳定和顽固碳对强化耕作土壤中氮的短期有效性的综合影响。

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摘要

In sustainable agriculture, returns of organic materials to soil have a major impact on carbon (C) and nitrogen (N) turnover, but their effect on the final availability of N to crops is difficult to quantify, and the nature of the C source is usually neglected in predictive models. We investigated the individual and combined effects of labile sugars and phenolic acids on soil microbial processes related to the N cycle. Gross rates of N transformations were measured by using 15N isotope dilution after the addition to the soil of glucose, phenols and of an extract of the common catch crop Lolium multiflorum. Whatever the nature of the organic C added, a decrease in the availability of the soil ammonium pool was observed. This result was a response to two contrasting mechanisms: (i) a fuelling of microbial growth after the addition of glucose and (ii) a decline in microbial growth and a tendency toward depression of gross N transformations after the addition of phenols. We also observed a suppression of nitrification potential with the addition of Lolium extract and with phenolics added in combination with glucose. These mechanisms may reduce nitrate loss, but may have an adverse short-term effect on N-availability. We conclude that all carbon additions help to retain inorganic N in the short term, but the timing of N release to the following crop depends on the final outcome of the divergent microbial dynamics that may come into play.
机译:在可持续农业中,有机物质返回土壤对碳(C)和氮(N)的转化量有重大影响,但它们对作物最终氮素吸收的影响很难量化,碳源的性质是通常在预测模型中被忽略。我们调查了不稳定糖和酚酸对与氮循环相关的土壤微生物过程的个体和综合影响。在土壤中加入葡萄糖,酚和常见的捕获农作物黑麦草的提取物后,通过 15 N同位素稀释法测量总氮转化率。无论添加的有机碳的性质如何,都观察到土壤铵池的有效性下降。该结果是对两种相反机制的响应:(i)添加葡萄糖后促进微生物生长,(ii)添加酚后微生物生长下降以及总氮转化率趋于下降的趋势。我们还观察到通过添加黑麦草提取物和将酚类与葡萄糖结合来抑制硝化潜力。这些机制可以减少硝酸盐的损失,但可能对N的可用性产生不利的短期影响。我们得出的结论是,所有碳的添加都会在短期内帮助保留无机氮,但是氮向后茬作物释放的时机取决于可能发挥作用的不同微生物动力学的最终结果。

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