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首页> 外文期刊>Data in Brief >Soil enzymatic activity data over eight years at the EFELE site, a long-term field experiment on effects of organic waste products and tillage practices
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Soil enzymatic activity data over eight years at the EFELE site, a long-term field experiment on effects of organic waste products and tillage practices

机译:efele网站八年内的土壤酶活性数据,有机废物和耕作实践的长期现场实验

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Land application of organic waste products (OWPs), catch crops and reduced soil tillage are accepted as sustainable management practices in agriculture. They can optimize resources by supplying nutrients to plants and helping to maintain soil fertility. They also can influence soil functions in agricultural production systems. Soil microorganisms can feed on fresh organic matter by producing extracellular enzymes. Enzyme production responds to resource availability and soil C:N:P ratios, which could limit biogeochemical cycling. Allocating resources to produce nutrient-acquiring enzymes requires a large amount of energy to achieve optimal growth. In this context, studying the use of OWPs is important, as alternatives to long-term use of mineral fertilizers, to understand the dynamics of response and how the OWPs influence production of extracellular enzymes in the soil. Effects of OWPs on soil enzymatic activities have been studied widely, but long-term effects remain poorly understood, and no information is available about differences in dynamics among systems for each biogeochemical cycle. The data described here were collected during two trials from an initial state, and they allow assessment of long-term effects of OWP application, mineral nitrogen fertilization, tillage and vegetation cover on soil enzymatic activities. Data are presented for the activities of five soil enzymes measured from 2012 to 2019: β-glucosidase, phosphatase, urease, arylamidase and arylsulfatase. Five additional enzymes were included in 2019 to supplement the analysis of biogeochemical cycles: alkaline phosphatase, phosphodiesterase, α-glucosidase, β-galactosidase and n-acetyl-glucosaminidase. These activities were measured in two trials at the EFELE study site: PROs (five OWPs applied to a corn-wheat rotation) and TS/MO (four treatments that examine interactions between OWP and type of tillage). These data can be used as a reference for future studies of soil enzymes in France and other regions (e.g. for developing reduced-tillage systems and organic or inorganic amendments, and to assess dynamics of the systems).
机译:土地应用有机废物(OWPS),捕捞作物和减少土壤耕作被接受为农业可持续管理实践。它们可以通过向植物提供营养并有助于维持土壤肥力来优化资源。他们还可以影响农业生产系统中的土壤功能。土壤微生物可以通过产生细胞外酶来对新鲜有机物饲料。酶生产响应资源可用性和土壤C:N:P比率,这可能限制生物地球化学循环。分配资源以产生营养物质获取的酶需要大量的能量来实现最佳的生长。在这种情况下,研究OWPS的使用是重要的,作为长期使用矿物肥料的替代品,了解反应的动态以及贩子如何影响土壤中细胞外酶的产生。贩子对土壤酶活性的影响已被广泛研究,但长期效应仍然明白,并且没有任何信息对于每个生物地球化学循环的系统之间的动态差异。这里描述的数据在初始状态的两次试验期间收集,并且它们允许评估OWP应用,矿物氮肥,耕作和植被覆盖对土壤酶活性的长期影响。提出了从2012-201-2019-2019中测定的五种土壤酶的活性:β-葡糖苷酶,磷酸酶,脲酶,芳基酰胺酶和芳基硫酸酶。 2019年包括五种另外的酶,以补充生物地球化学循环的分析:碱性磷酸酶,磷酸二酯酶,α-葡糖苷酶,β-半乳糖苷酶和N-乙酰基葡糖苷酶。这些活动在efele研究现场的两项试验中测量:优点(施加到玉米旋转的五个猫头鹰)和TS / Mo(四种治疗方法检查OWP与耕作之间的相互作用)。这些数据可以用作法国和其他地区土壤酶的未来研究的参考(例如,用于开发减耕系统和有机或无机修正,并评估系统的动态)。

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