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Effects of climate change on a subtropical montane peatland over the last two centuries: Evidence from diatom records

机译:在过去的两个世纪中,气候变化对亚热带山泥泥泥的影响:来自硅藻记录的证据

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摘要

Climate variability can induce rapid changes in peatland ecosystems, affecting both carbon cycling and vegetation succession. Diatoms are an important group of ubiquitous and diverse algae in peatlands. Until now, the responses of diatom communities to climate variability have rarely been explored in peatlands, especially in subtropical regions. In this study, monitoring and paleolimnological datasets were combined to decipher environmental changes of a subtropical montane peatland (central China) over the last two centuries. Seasonal monitoring data revealed that diatom communities were closely correlated with precipitation, depth to the water table, conductivity, nitrate and temperature. Sedimentary records revealed that temporal changes in diatom assemblages and geochemical elements displayed similar trends in two peat cores after the 1950s. The first gradient in diatom composition represented a shift from Pinnularia species to taxa preferring less-acidic habitats, which was closely linked to climate warming and the enrichment of inorganic elements (e.g. sodium and calcium) since the early 20th century. Meanwhile, changes in diatom communities were further related to precipitation variability, atmospheric deposition and local hydrogeomophic setting. Taken together, the succession of diatom communities was closely linked to climate-regulated availability of nutrients and moisture in this subtropical peatland over the last two centuries. In order to achieve sustainable management of these scarce peatlands, further biological monitoring and paleoecological studies are needed to improve our knowledge of peatland ecosystem evolution in response to future climate change.
机译:气候变异性可以引起泥炭地生态系统的快速变化,影响碳循环和植被连续。硅藻是泥炭地普遍普遍多样化的藻类。到目前为止,硅藻对气候变异性的答案很少在泥炭地区探讨,特别是在亚热带地区。在本研究中,将监测和古胃癌数据集组合以在过去的两个世纪中解读亚热带蒙太金泥(中国中部)的环境变化。季节性监测数据显示,硅藻群与沉淀,深度与水位,电导率,硝酸盐和温度密切相关。沉积记录揭示了硅藻组合物和地球化学元素的时间变化在20世纪50年代之后的两个泥炭核中显示了类似的趋势。硅藻组合物中的第一梯度代表了从Pinnularia物种到兴趣较少酸性栖息地的偏移,这与20世纪初以来的气候变暖和富集无机元素(例如钠和钙)密切相关。同时,硅藻组合的变化进一步与沉淀可变性,大气沉积和局部水加工晶状体设置有关。在一起,硅藻群落的继承与在过去的两年内这一亚热带泥炭地的气候监管可用性和水分的可用性密切相关。为了实现这些稀缺的泥潭的可持续管理,需要进一步的生物监测和古生态研究来提高我们对未来气候变化的泥炭地生态系统演变的知识。

著录项

  • 来源
    《The holocene》 |2021年第7期|1112-1123|共12页
  • 作者单位

    Hubei Key Laboratory of Critical Zone Evolution School of Geography and Information Engineering China University of Geosciences;

    School of Geography University of Nottingham;

    State Key Laboratory of Lake Science and Environment Nanjing Institute of Geography and Limnology Chinese Academy of Sciences;

    Hubei Key Laboratory of Critical Zone Evolution School of Geography and Information Engineering China University of Geosciences;

    School of Natural and Environmental Sciences Newcastle University;

    Hubei Key Laboratory of Critical Zone Evolution School of Geography and Information Engineering China University of Geosciences|Shennongjia National Park Administration;

    School of Geography University of Nottingham;

    Hubei Key Laboratory of Critical Zone Evolution School of Geography and Information Engineering China University of Geosciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    central China; climate warming; diatom; late-Holocene; paleoecology; subtropical peatland;

    机译:中国中部;气候变暖;硅藻;晚全新世;古生态;亚热带泥炭地;

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