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EFFECTS OF TEMPERATURE AND COPPER POLLUTION ON SOIL COMMUNITY- EXTREME TEMPERATURE EVENTS CAN LEAD TO COMMUNITY EXTINCTION

机译:温度和铜污染对土壤群落的影响-极端温度事件可能导致群落灭绝

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摘要

Global warming affects ecosystems and species' diversity. The physiology of individual species is highly influenced by changes in temperature. The effects on species communities are less studied; they are virtually unknown when combining effects of pollution and temperature. To assess the effects of temperature and pollution in the soil community, a 2-factorial soil mesocosms multispecies experiment was performed. Three exposure periods (28 d, 61 d, and 84 d) and 4 temperatures (19 ℃, 23 ℃, 26 ℃, and 29 ℃) were tested, resembling the mean annual values for southern Europe countries and extreme events. The soil used was from a field site, clean, or spiked with Cu (100 mg Cu/kg). Results showed clear differences between 29 ℃ treatment and all other temperature treatments, with a decrease in overall abundance of organisms, further potentiated by the increase in exposure time. Folsomia Candida was the most abundant species and Enchytraeus crypticus was the most sensitive to Cu toxicity. Differences in species optimum temperatures were adequately covered: 19 ℃ for Hypoaspis aculeifer or 26 ℃ for E. crypticus. The temperature effects were more pronounced the longer the exposure time. Feeding activity decreased with higher temperature and exposure time, following the decrease in invertebrate abundance, whereas for the same conditions the organic matter turnover increased. Hence, negative impacts on ecosystem services because of temperature increase can be expected by changes on soil function and as consequence of biodiversity loss.
机译:全球变暖影响生态系统和物种多样性。个体物种的生理高度受温度变化的影响。对物种群落的影响研究较少。当结合污染和温度的影响时,它们几乎是未知的。为了评估温度和污染对土壤群落的影响,进行了2因子土壤介观多物种实验。测试了三个暴露期(28 d,61 d和84 d)和四个温度(19℃,23℃,26℃和29℃),类似于南欧国家和极端事件的年均值。所用土壤来自农田,干净或加有Cu(100 mg Cu / kg)。结果表明,在29℃处理与所有其他温度处理之间存在明显差异,随着生物体总体丰度的降低,暴露时间的增加进一步增强了这种效果。念珠菌(Folsomia Candida)是最丰富的菌种,而隐chy(Enchytraeus crypticus)对Cu毒性最敏感。适当地覆盖了物种最佳温度的差异:小球藻为19℃,隐孢子虫为26℃。暴露时间越长,温度影响越明显。随着无脊椎动物数量的减少,摄食活性随着温度和暴露时间的增加而降低,而在相同条件下,有机物的周转量增加。因此,由于土壤功能的变化以及生物多样性丧失的结果,可以预期由于温度升高而对生态系统服务产生的负面影响。

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