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Ring-testing and field-validation of a Terrestrial Model Ecosystem (TME) - An instrument for testing potentially harmful substances: Effects of carbendazim on soil microbial parameters

机译:陆地模型生态系统(TME)的环形测试和现场验证-一种测试潜在有害物质的工具:多菌灵对土壤微生物参数的影响

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摘要

The effects of carbendazim on substrate induced respiration ( SIR), dehydrogenase activity (DHA), phosphatase activity and thymidine incorporation by bacteria were evaluated in an experiment with an open intact Terrestrial Model Ecosystem (TME) and in a simultaneous field-validation study. Experiments were performed on four different European soils in Germany, The Netherlands, United Kingdom and Portugal. Data analysis focused on (i) detecting differences between experiments, especially in control values, (ii) checking similarity in data variability at each treatment level between experiments and (iii) analysing the resemblance of response to the model chemical in both experiments. Results obtained showed that control values from TME experiments were similar to those obtained on the respective field site, in most of the comparisons made for SIR, DHA and thymidine incorporation. Phosphatase activity revealed more differences, but values of both experiments had the same order of magnitude. At least part of the variation could be explained from the correlation of the microbial parameters with soil moisture content. Comparisons on data variability also revealed the absence of significant differences between experiments in all parameters in most cases, indicating that TMEs were able to represent the spatial variability found in the field. Effects of carbendazim, when occurring, were observed at treatment levels exceeding the highest recommended application rate of 0.36 kg a. i./ha. Effects on SIR and DHA were observed early in time, but effects on phosphatase activity and thymidine incorporation rate were found 8 or 16 weeks after chemical application. These effects were mild, and rarely a 50% inhibition on any of these parameters was seen at carbendazim dosages up to 87.5 kg a. i./ha. The response to the model chemical in TMEs and field plots was similar in most cases. These results give promising prospects for the use of TMEs as an integrative tool in higher tier levels of different assessment schemes.
机译:在一个开放的完整陆地模型生态系统(TME)进行的实验中,并在同时进行的田间验证研究中,评估了多菌灵对底物诱导的呼吸(SIR),脱氢酶活性(DHA),磷酸酶活性和胸苷掺入的影响。在德国,荷兰,英国和葡萄牙的四种不同的欧洲土壤上进行了实验。数据分析的重点是(i)检测实验之间的差异,尤其是对照值,(ii)检查实验之间每个处理水平的数据变异性的相似性,以及(iii)在两个实验中分析对模型化学物质的反应相似性。获得的结果表明,在对SIR,DHA和胸苷掺入进行的大多数比较中,TME实验获得的控制值与在相应现场获得的控制值相似。磷酸酶活性显示出更多的差异,但是两个实验的值具有相同的数量级。至少部分的变化可以通过微生物参数与土壤含水量的相关性来解释。数据变异性的比较还表明,在大多数情况下,所有参数之间的实验之间没有显着差异,这表明TME能够代表现场发现的空间变异性。当多菌灵发生时,在超过建议的最高施用量0.36 kg a的治疗水平下观察到了多菌灵的作用。我/公顷早期观察到对SIR和DHA的影响,但是在化学施用后8或16周发现对磷酸酶活性和胸苷掺入率的影响。这些作用是温和的,在多菌灵剂量不超过87.5 kg a时,很少见到对这些参数有50%的抑制作用。我/公顷在大多数情况下,TME和现场图中对模型化学物质的响应相似。这些结果为将TME用作不同评估方案的更高层次的集成工具提供了广阔的前景。

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