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Sixteen years of simulated summer and winter warming have contrasting effects on soil mite communities in a sub-Arctic peat bog

机译:二十年代模拟夏季和冬季变暖对亚北极泥炭沼泽的土壤螨群体对比效果

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Northern peatlands are very sensitive to changes in climate. Impacts of increased temperatures on hydrology, vegetation structure and soil carbon are already well documented from northern peatlands. In contrast, effects of global warming on soil mites, and seasonal effects in particular, have received less attention, even though soil mites are an important component in ecosystems as they contribute to nutrient dynamics and decomposition. We investigated the impacts of long-term (16years) experimental seasonal climate manipulations (summer warming, winter warming with snow accumulation, and year-round warming) on oribatid (Oribatida) and mesostigmatid (Mesostigmata) mite communities in a peat bog underlain by discontinuous permafrost, in Abisko, Northern Sweden. We found that (1) Year-round warming treatment had neither impact on life-history trait compositions nor on total abundances of oribatid mites, possibly because of opposite effects of summer and winter warming; (2) Small-bodied oribatid mites, in particular those belonging to genera Suctobelba, increased in abundance under the summer warming treatment; (3) The species richness of oribatid mites was negative affected by year-round warming; (4) Mesostigmatid mites, which were not identified to species level, were found to decrease in abundance under year-round warming. Because different mite taxa with different body sizes and diets play distinct roles in carbon and nutrient dynamics, the observed changes in mite communities may impact ecosystem functions in northern peatlands.
机译:北部泥炭地对气候变化非常敏感。提高温度对水文,植被结构和土壤碳的影响已经从北部泥炭群中充分了。相比之下,全球变暖对土壤螨虫和季节性影响的影响,特别是由于土壤螨是生态系统的重要组成部分,因为它们有助于养分动态和分解。我们调查了长期(16年)实验季节性气候操纵(夏季变暖,冬季变暖,随着雪积累的冬季变暖)的影响(oribatida)和Mesostigmatid(Mesostigmata)螨虫在泥炭沼泽下,不连续地Pumafrost,在瑞典北部的阿比斯科。我们发现(1)全年的变暖治疗既没有影响人生历史特质组合,也没有对仇眼螨的总丰富,可能是因为夏季和冬季变暖的相反; (2)小型敌人的螨虫,特别是那些属于属Suctobelba的螨虫,在夏季变暖处理下的丰富程度增加; (3)对甘露虫螨的物种受到全年变暖的负面影响; (4)未鉴定到物种水平的Mesostigmatid螨虫,在全年的变暖下会降低丰富。由于具有不同身体尺寸和饮食的不同螨类群,所以在碳和营养动态中发挥着不同的作用,所以观察到的螨虫社区的变化可能会影响北部泥炭地区的生态系统功能。

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