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Multi-stressor impacts on fungal diversity and ecosystem functions in streams: natural vs. anthropogenic stress

机译:多胁迫对河流中真菌多样性和生态系统功能的影响:自然与人为胁迫

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摘要

Biological assemblages are often subjected to multiple stressors emerging from both anthropogenic activities and naturally stressful conditions, and species' responses to simultaneous stressors may differ from those predicted based on the individual effects of each stressor alone. We studied the influence of land-use disturbance (forest drainage) on fungal decomposer assemblages and leaf decomposition rates in naturally harsh (low pH caused by black-shale dominated geology) vs. circumneutral streams. We used pyrosequencing to determine fungal richness and assemblage structure. Decomposition rates did not differ between circumneutral and naturally acidic reference sites. However, the effect of forest drainage on microbial decomposition was more pronounced in the naturally acidic streams than in circumneutral streams. Single-effect responses of fungal assemblages were mainly related to geology. Community similarity was significantly higher in the naturally acidic disturbed sites than in corresponding reference sites, suggesting that land-use disturbance simplifies fungal assemblages in naturally stressful conditions. Naturally acidic streams supported distinct fungal assemblages with many OTUs (operational taxonomic unit) unique to these streams. Our results indicate that fungal assemblages in streams are sensitive to both structural and functional impairment in response to multiple stressors. Anthropogenic degradation of naturally acidic streams may decrease regional fungal diversity and impair ecosystem functions, and these globally occurring environments therefore deserve special attention in conservation planning.
机译:生物集合经常遭受来自人为活动和自然胁迫条件的多重胁迫,并且物种对同时胁迫的反应可能与根据每个胁迫单独的影响所预测的不同。我们研究了土地利用扰动(森林排水)对自然分解环境(由黑页岩为主的地质造成的低pH)与环境中流对真菌分解剂组合和叶片分解速率的影响。我们使用焦磷酸测序来确定真菌的丰富度和组装结构。分解速率在周围和自然酸性参考位点之间没有差异。然而,天然酸性流中的森林排水对微生物分解的影响比周围环境中的流更为明显。真菌组合的单效应响应主要与地质有关。在自然酸性干扰地区,群落相似度明显高于相应的参考地区,这表明土地利用干扰简化了自然胁迫条件下的真菌聚集。天然酸性流通过许多独特的OTU(操作分类单元)支持独特的真菌组合。我们的结果表明,在多种应激源的响应下,溪流中的真菌集合对结构和功能损伤均敏感。天然酸性流的人为降解可能会减少区域真菌的多样性并损害生态系统功能,因此,这些在全球范围内发生的环境在保护规划中应特别注意。

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