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Effects of on-farm composted tomato residues on soil biological activity and yields in a tomato cropping system

机译:农场堆肥番茄残留物对番茄种植系统中土壤生物学活性和产量的影响

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摘要

Background: The use of compost may relieve the factors that limit productivity in intensive agricultural systems, such as soil organic matter depletion and soil sickness. Concomitantly, the practice of on-farm composting allows the recycle of cropping green residues into new productive processes.\udResults: We produced four vegetable composts by using tomato biomass residues in an on-farm composting plant.\udThe tomato-based composts were assessed for their chemical, microbiological properties, and their effects on soils and plants were evaluated after their application within a tomato cropping system. Compost characteristics affected plant development and productivity through increased nutrient uptake and biostimulation functions. Soil biological activities, including basal respiration, fluorescein diacetate hydrolysis, β-glucosidase, dehydrogenase, alkaline phosphatase, arylsulphatase, and Biolog community levels of physiological profiles, were differently affected by the on-farm tomato-based composts.\udConclusions: Changes in soil activity and community structure due to compost amendments were related to\udclasses of biomolecules such as polysaccharides and lignin-derived compounds, as revealed by nuclear magnetic resonance (NMR) spectra of compost materials. The nutrient content and fertility potential of composts were positively related to the amount of tomato residues present in the feedstock.
机译:背景:堆肥的使用可以缓解集约型农业系统中限制生产力的因素,例如土壤有机物耗竭和土壤病害。同时,农场堆肥的做法允许将农作物绿色残留物循环利用到新的生产过程中。\ ud结果:我们通过在农场堆肥中使用番茄生物量残余物生产了四种蔬菜堆肥。\ ud对基于番茄的堆肥进行了评估在番茄种植系统中应用后,对其化学,微生物学性质及其对土壤和植物的影响进行了评估。堆肥特性通过增加养分吸收和生物刺激功能影响了植物的发育和生产力。土壤生物学活动,包括基础呼吸,荧光素二乙酸酯水解,β-葡萄糖苷酶,脱氢酶,碱性磷酸酶,芳基硫酸酯酶和生理性类群生物群落水平,受到基于番茄的堆肥的不同影响。\ ud结论:土壤中的变化堆肥材料的核磁共振(NMR)光谱显示,由于堆肥处理而产生的活性和群落结构与生物分子有关,如多糖和木质素衍生的化合物。堆肥的营养成分和肥力潜力与原料中存在的番茄残留量呈正相关。

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