首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Responses of Biogeochemical Characteristics and Enzyme Activities in Sediment to Climate Warming under a Simulation Experiment in Geographically Isolated Wetlands of the Hulunbuir Grassland China
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Responses of Biogeochemical Characteristics and Enzyme Activities in Sediment to Climate Warming under a Simulation Experiment in Geographically Isolated Wetlands of the Hulunbuir Grassland China

机译:呼伦贝尔草原地理隔离湿地模拟实验的沉积物生物地球化学特征和酶活性对气候变暖的响应

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摘要

Climate warming generates a tremendous threat to the stability of geographically-isolated wetland (GIW) ecosystems and changes the type of evaporation and atmospheric precipitation in a region. The intrinsic balance of biogeochemical processes and enzyme activity in GIWs may be altered as well. In this paper, we sampled three types of GIWs exhibiting different kinds of flooding periods. With the participation of real-time temperature regulation measures, we assembled a computer-mediated wetland warming micro-system in June 2016 to simulate climate situation of ambient temperature (control group) and two experimental temperature differences (+2.5 °C and +5.0 °C) following a scientific climate change circumstance based on daily and monthly temperature monitoring at a two-minutes scale. Our results demonstrate that the contents of the total organic carbon (TOC), total nitrogen (TN), and total phosphorus (TP) in the warmed showed, roughly, a balance or a slight decrease than the control treatment. Warming obstructed the natural subsidence of sediment, but reinforced the character of the ecological source, and reduced the activity of urease (URE), but promoted the activity of alkaline phosphatase (AKP) and sucrase (SUC). Redundancy analysis showed that sucrase, urease, available phosphorus (AP), and pH were the major correlating factors under warming conditions in our research scope. Total organic carbon, total nitrogen, sucrase, catalase (CAT), and alkaline phosphatase were the principal reference factors to reflect the ambient temperature variations. Nutrient compositions and enzyme activities in GIW ecosystems could be reconstructed under the warming influence.
机译:气候变暖对地理隔离的湿地(GIW)生态系统的稳定性造成了巨大威胁,并改变了该地区的蒸发和大气降水类型。 GIW中生物地球化学过程和酶活性的内在平衡也可能发生改变。在本文中,我们对表现出不同洪水时期的三种类型的GIW进行了采样。在实时温度调节措施的参与下,我们于2016年6月组装了计算机介导的湿地变暖微系统,以模拟环境温度(对照组)和两个实验温差(+2.5°C和+5.0° C)根据以两分钟为单位的每日和每月温度监控,根据科学的气候变化情况。我们的结果表明,与对照相比,加热后的总有机碳(TOC),总氮(TN)和总磷(TP)的含量大致平衡或略有下降。变暖阻碍了沉积物的自然沉降,但增强了生态源的特性,降低了脲酶(URE)的活性,但促进了碱性磷酸酶(AKP)和蔗糖酶(SUC)的活性。冗余分析表明,在我们研究范围内,蔗糖,脲酶,有效磷(AP)和pH是变暖条件下的主要相关因素。总有机碳,总氮,蔗糖,过氧化氢酶(CAT)和碱性磷酸酶是反映环境温度变化的主要参考因素。在变暖的影响下,GIW生态系统中的营养成分和酶活性可以重建。

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