首页> 外文期刊>Applied Soil Ecology >Organic amendments with reduced chemical fertilizer promote soil microbial development and nutrient availability in a subtropical paddy field: the influence of quantity, type and application time of organic amendments.
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Organic amendments with reduced chemical fertilizer promote soil microbial development and nutrient availability in a subtropical paddy field: the influence of quantity, type and application time of organic amendments.

机译:减少化肥的有机改良剂可促进亚热带稻田土壤微生物的发育和养分的可利用性:有机改良剂的数量,类型和施用时间的影响。

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Understanding the effects of alternative farming on soil quality parameters, such as microbial communities, size, activity and soil nutrient content, is of central importance to concepts of sustainability. Combining organic amendments with chemical fertilizer is a promising approach to develop more sustainable fertilization strategies. We investigated the impacts of quantity, type and application time of organic amendments on temporal dynamics of paddy soil microbial biomass, activity, carbon fractions and nutrient status under a long-term field experiment in a rice-rice cropping system. We established treatments with seven fertilization practices characterized by different quantities and application times of green manure (GM), farmyard manure (FYM) and rice straw (RS) in combination with low amount of chemical fertilizers. We further established one treatment with only recommended amount of chemical fertilizer and an unfertilized control. At all sampling times, organic amendments with low amount of chemical fertilizer enhanced microbial biomass, activity and nutrient availability more than recommended amount of chemical fertilization only and an unfertilized control, with higher quantities of FYM resulting in stronger effects than all other organic amendments. The strongest increase of microbial biomass, activity, carbon and nutrient availability was generally found in the treatment with the most diverse resources and highest amount of organic amendments. Principle component analysis indicated that most soil variables measured were correlated to total soil organic C. Regression analysis indicated that the integrated paddy soil properties were closely related to yearly C input and rice yield. Strong temporal dynamics were demonstrated for all soil variables, indicating that we need multiple time sampling strategies to explore the overall influences of fertilization practices on paddy soil. Our results indicate that the development of effective fertilization practices, especially by manipulating the quantity and type of organic amendments, may improve long-term sustainability of paddy soil ecosystems.
机译:理解替代农业对土壤质量参数(如微生物群落,大小,活性和土壤养分含量)的影响,对于可持续性概念至关重要。将有机改良剂与化肥结合使用是开发更具可持续性的施肥策略的有前途的方法。在水稻-稻作系统的长期田间试验中,我们调查了有机改良剂的数量,类型和施用时间对稻田土壤微生物生物量,活性,碳含量和养分状况的时空动态的影响。我们建立了具有七种施肥措施的处理方法,其特征是绿肥(GM),农家肥(FYM)和稻草(RS)的数量和施用时间不同,并结合了少量的化学肥料。我们进一步建立了一种仅推荐使用化学肥料和未施肥对照的处理方法。在所有采样时间,化学肥料含量较低的有机改良剂比仅推荐的化学肥料量和未施肥的对照提高了微生物生物量,活性和养分利用率,而FYM的含量高于所有其他有机改良剂。通常,在资源最丰富,有机物含量最高的处理中,微生物生物量,活性,碳和养分的可利用性增幅最大。主成分分析表明,测得的大多数土壤变量都与土壤有机碳总量相关。回归分析表明,稻田的综合土壤特性与年碳输入量和水稻产量密切相关。在所有土壤变量中都表现出强烈的时间动态,表明我们需要多种时间采样策略来探索施肥方式对稻田土壤的总体影响。我们的结果表明,开发有效的施肥方法,尤其是通过控制有机改良剂的数量和类型,可能会改善稻田土壤生态系统的长期可持续性。

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