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Soil Biochemical Indicators and Biological Fertility in Agricultural Soils: A Case Study from Northern Italy

机译:农业土壤的土壤生化指标与生物生育能力 - 意大利北部的案例研究

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摘要

Industrial farming without considering soil biological features could lead to soil degradation. We aimed to evaluate the biochemical properties (BPs) and biological fertility (BF) of different soils under processing tomato cultivation; estimate the BF through the calculation of a simplified BF index (BFIs); determine if the crop was affected by BP and BF. Three farms were individuated in Modena (MO), Ferrara (MEZ) and Ravenna (RA) provinces, Italy. Soil analysis included total and labile organic C, microbial biomass-C (Cmic) and microbial respiration measurements. The metabolic (qCO2), mineralization (qM) and microbial (qMIC) quotients, and BFIs were calculated. Furthermore, plant nutrient contents were determined. The low Cmic content and qMIC, and high qCO2 found in MEZ soils indicate the occurrence of stressful conditions. The high qMIC and qM, and the low qCO2 demonstrated an efficient organic carbon incorporation as Cmic in MO soils. In RA soils, the low total and labile organic C contents limited the Cmic and microbial respiration. Therefore, as confirmed by the BFIs, while MO showed the healthiest soils, RA soils had an inefficient ecophysiological energy state. However, no effects on plant nutrient contents were observed, likely because of masked by fertigation. Finally, BP monitoring is needed in order to avoid soil degradation and, in turn, crop production decline.
机译:工业养殖不考虑土壤生物学特征可能导致土壤退化。我们旨在评估加工番茄栽培下不同土壤的生化特性(BPS)和生物生物肥(BF);通过计算简化的BF指数(BFI)来估计BF;确定作物是否受BP和BF的影响。三个农场是摩德纳(MO),费拉拉(MEZ)和拉韦纳(RA)省,意大利莫尔马纳州的一个农场。土壤分析包括总和不稳定的有机C,微生物生物量-C(CMIC)和微生物呼吸测量。计算代谢(QCO2),矿化(QM)和微生物(QMIC)配方和BFI。此外,测定植物营养物质。在MEZ土壤中发现的低CMIC含量和QMIC和高QCO2表明存在压力条件的发生。高QMIC和QM,低QCO2在MO土壤中证明了作为CMIC的有效的有机碳掺入。在RA土壤中,低总和不稳定的有机C含量限制了CMIC和微生物呼吸。因此,如BFI所证实,虽然MO显示了最健康的土壤,RA土壤具有低效的生态生理能源状态。然而,没有对植物养分内容物的影响,可能是因为通过辐射掩盖。最后,需要BP监测以避免土壤退化,而且反过来,作物产量下降。

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