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Salinity and nutrient contents of tidal water affects soil respiration and carbon sequestration of high and low tidal flats of Jiuduansha wetlands in different ways

机译:潮水的盐分和养分含量以不同的方式影响九段沙湿地高低滩涂的土壤呼吸和固碳

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摘要

Soils were collected from low tidal flats and high tidal flats of Shang shoal located upstream and Xia shoal located downstream with different tidal water qualities, in the Jiuduansha wetland of the Yangtze River estuary. Soil respiration (SR) in situ and soil abiotic and microbial characteristics were studied to clarify the respective differences in the effects of tidal water salinity and nutrient levels on SR and soil carbon sequestration in low and high tidal flats. In low tidal flats, higher total nitrogen (TN) and lower salinity in the tidal water of Shang shoal resulted in higher TN and lower salinity in its soils compared with Xia shoal. These would benefit β-Proteobacteria and Anaerolineae in Shang shoal soil, which might have higher heterotrophic microbial activities and thus soil microbial respiration and SR. In low tidal flats, where soil moisture was high and the major carbon input was active organic carbon from tidal water, increasing TN was a more important factor than salinity and obviously enhanced soil microbial heterotrophic activities, soil microbial respiration and SR. While, in high tidal flats, higher salinity in Xia shoal due to higher salinity in tidal water compared with Shang shoal benefited γ-Proteobacteria which might enhance autotrophic microbial activity, and was detrimental to β-Proteobacteria in Xia shoal soil. These might have led to lower soil microbial respiration and thus SR in Xia shoal compared with Shang shoal. In high tidal flats, where soil moisture was relatively lower and the major carbon input was plant biomass that was difficult to degrade, soil salinity was the major factor restraining microbial activities, soil microbial respiration and SR.
机译:在长江口九段沙湿地,从潮水上游和下游的夏滩低潮滩和高潮滩采集土壤。研究了土壤呼吸(SR)以及土壤非生物和微生物特征,以弄清潮水盐度和养分水平对高低潮滩地SR和土壤固碳的影响之间的分别差异。在低潮滩上,商滩的潮水中总氮(TN)较高,盐度较低,与夏滩相比,其土壤中的总氮(TN)较高,盐度较低。这些将有利于商浅滩土壤中的β-变形杆菌和厌氧菌,它们可能具有更高的异养微生物活性,从而提高土壤微生物的呼吸和SR。在低水分的滩涂中,土壤湿度高,主要的碳输入是来自潮汐水中的活性有机碳,总氮的增加是比盐度更重要的因素,并且明显增强了土壤微生物的异养活性,土壤微生物的呼吸和SR。而在高潮滩上,与商滩相比,潮汐水的盐度较高,因此夏滩的盐度较高,有利于γ-变形杆菌,这可能会增强自养微生物的活性,并且不利于夏滩土壤中的β-变形杆菌。这些可能导致较低的土壤微生物呼吸,因此与商滩相比,夏滩的SR降低。在高潮滩上,土壤水分相对较低,主要的碳输入是难以降解的植物生物量,土壤盐分是限制微生物活动,土壤微生物呼吸和SR的主要因素。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|637-648|共12页
  • 作者单位

    Key Laboratory of Yangtze River Water Environment, Ministry of Education, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China,Collaborative Innovation Center for Regional Environmental Quality, China;

    Key Laboratory of Yangtze River Water Environment, Ministry of Education, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China,Collaborative Innovation Center for Regional Environmental Quality, China;

    Key Laboratory of Yangtze River Water Environment, Ministry of Education, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China,Collaborative Innovation Center for Regional Environmental Quality, China;

    Key Laboratory of Yangtze River Water Environment, Ministry of Education, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China,Collaborative Innovation Center for Regional Environmental Quality, China;

    Ministry of Education, Key Laboratory for Biodiversity Science and Ecological Engineering, School of Life Science, Fudan University, Shanghai 200433, China;

    Department of Science and Environmental Studies, Hong Kong Institute of Education, Hong Kong, China;

    Key Laboratory of Yangtze River Water Environment, Ministry of Education, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China,Collaborative Innovation Center for Regional Environmental Quality, China;

    Shanghai Jiuduansha Wetland Nature Reserve Administration, Shanghai 200135, China;

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

    Soil microbial community; Soil heterotrophic and autotrophic microbial activities; Soil carbon turnover; Sea-level rise; Aggravation of organic pollution and Eutrophi-cation; Yangtze River estuaty;

    机译:土壤微生物群落;土壤异养和自养微生物活动;土壤碳周转;海平面上升;加剧有机污染和富营养化;长江口;

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