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Assessment of Cu applications in two contrasting soils—effects on soil microbial activity and the fungal community structure

机译:评估两种相反土壤中铜的施用-对土壤微生物活性和真菌群落结构的影响

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摘要

Copper (Cu)-based fungicides have been used in viticulture to prevent downy mildew since the end of the 19th century, and are still used today to reduce fungal diseases. Consequently, Cu has built up in many vineyard soils, and it is still unclear how this affects soil functioning. The present study aimed to assess the short and medium-term effects of Cu contamination on the soil fungal community. Two contrasting agricultural soils, an acidic sandy loam and an alkaline silt loam, were used for an eco-toxicological greenhouse pot experiment. The soils were spiked with a Cu-based fungicide in seven concentrations (0–5000 mg Cu kg−1 soil) and alfalfa was grown in the pots for 3 months. Sampling was conducted at the beginning and at the end of the study period to test Cu toxicity effects on total microbial biomass, basal respiration and enzyme activities. Fungal abundance was analysed by ergosterol at both samplings, and for the second sampling, fungal community structure was evaluated via ITS amplicon sequences. Soil microbial biomass C as well as microbial respiration rate decreased with increasing Cu concentrations, with EC50 ranging from 76 to 187 mg EDTA-extractable Cu kg−1 soil. Oxidative enzymes showed a trend of increasing activity at the first sampling, but a decline in peroxidase activity was observed for the second sampling. We found remarkable Cu-induced changes in fungal community abundance (EC50 ranging from 9.2 to 94 mg EDTA-extractable Cu kg−1 soil) and composition, but not in diversity. A large number of diverse fungi were able to thrive under elevated Cu concentrations, though within the order of Hypocreales several species declined. A remarkable Cu-induced change in the community composition was found, which depended on the soil properties and, hence, on Cu availability.
机译:自19世纪末以来,基于铜(Cu)的杀菌剂已用于葡萄栽培中,以预防霜霉病,并且至今仍用于减少真菌病。因此,铜在许多葡萄园土壤中积累,目前尚不清楚这如何影响土壤功能。本研究旨在评估铜污染对土壤真菌群落的短期和中期影响。生态毒理学温室盆栽试验使用了两种截然不同的农业土壤,即酸性沙壤土和碱性粉壤土。在土壤中掺入7种浓度的铜基杀菌剂(0-5000 mg Cu kg -1 土壤),紫花苜蓿在盆中生长3个月。在研究期的开始和结束时进行采样,以测试铜对总微生物量,基础呼吸和酶活性的毒性作用。在两次采样中都通过麦角固醇分析了真菌的丰度,对于第二次采样,通过ITS扩增子序列评估了真菌的群落结构。土壤微生物量碳和微生物呼吸速率随铜浓度的增加而降低,EDTA可提取的Cu kg -1 土壤的EC50为76〜187 mg。氧化酶在第一次采样中显示出活性增加的趋势,但是在第二次采样中观察到过氧化物酶活性下降。我们发现了铜诱导的真菌群落丰度的显着变化(EC50范围从9.2到94mg EDTA可萃取的Cu kg -1 土壤)和组成变化,但多样性却没有变化。大量不同的真菌能够在高浓度的铜下生长,尽管在菌丝数量级以内的物种有所减少。发现了铜引起的群落组成的显着变化,这取决于土壤的性质,并因此取决于铜的有效性。

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