Instituto de Ciencias Agrarias, Consejo Superior de Investigaciones Científicas, Serrano 115 dpdo., 28006 Madrid, Spain.
Sci Total Environ. 2013 Mar 1;447:25-31. doi: 10.1016/j.scitotenv.2012.12.077. Epub 2013 Jan 31.
This study seeks to determine the impact of copper-based fungicides on the respiration of vineyard soils. The ISO-17155 is an international standard recommended for monitoring soil quality by the evaluation of the effects of pollutants on soil microbial activity. Respiration curves and derived parameters [i.e., basal respiration (RB), substrate-induced respiration (RS), lag time (tlag), growth rate (μ), time to the peak maximum (tpeakmax), respiratory-activation quotient (QR), and the cumulative O2 consumption (CR)] were determined from 95 vineyard soils that covered a wide range of Cu contents. Statistical analyses showed that most of the variance of the ISO-17155 parameters was due to soil pH and organic C content, but not to the Cu pollution. When the parameters were expressed as a function of soil organic C content, the effect of soil Cu content was found to be significant on RS and tpeakmax but not on RB and CR. The results indicated that threshold values of total (CuT) and exchangeable (CuEX) contents indicative of soil Cu pollution cannot be established. However, adequate management practices resulting in soil organic C contents>2% and pH>5.5 are recommended for preserving vineyard soil quality.
本研究旨在确定铜基杀菌剂对葡萄园土壤呼吸的影响。ISO-17155 是国际标准,建议通过评估污染物对土壤微生物活性的影响来监测土壤质量。从涵盖广泛铜含量范围的 95 个葡萄园土壤中确定了呼吸曲线和衍生参数[即基础呼吸(RB)、底物诱导呼吸(RS)、滞后时间(tlag)、生长率(μ)、达到最大峰值时间(tpeakmax)、呼吸激活商(QR)和累积 O2 消耗(CR)]。统计分析表明,ISO-17155 参数的大部分方差归因于土壤 pH 和有机 C 含量,但与 Cu 污染无关。当将参数表示为土壤有机 C 含量的函数时,发现土壤 Cu 含量对 RS 和 tpeakmax 有显著影响,但对 RB 和 CR 没有影响。结果表明,不能建立总(CuT)和可交换(CuEX)含量指示土壤 Cu 污染的阈值。然而,建议采取适当的管理措施,使土壤有机 C 含量>2%且 pH>5.5,以保持葡萄园土壤质量。