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Ecological stoichiometry of carbon, nitrogen, and phosphorus in estuarine wetland soils: influences of vegetation coverage, plant communities, geomorphology, and seawalls

机译:河口湿地土壤中碳,氮和磷的生态化学计量:植被覆盖,植物群落,地貌和海堤的影响

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Purpose Little is known about carbon, nitrogen, and phosphorus stoichiometrical characteristics and influencing factors in estuary wetland soils. The purpose of this work is to study ecological stoichiometric characteristics of carbon, nitrogen, and phosphorus (R_(CN),R_(CP),andR_(NP)) in estuarine wetland soils of Shuangtaizi, northeast China and the potential affecting factors like vegetation coverage, plant communities, geomorphology, and seawall. Materials and methods During 2008-2010, soil samples in estuarine wetland were collected for soil organic carbon, total nitrogen and phosphorus, and other elements determination. Mole ratios of (R_(CN),R_(CP),andR_(NP) were calculated. Results and discussion As a whole, (R_(CN) was in the range of 8.26~52.97 (mean, 16.15), R_(CP) was in the range of 23.21~862.53 (mean, 90.66), and R_(NP) was in the 0.93~29.52 (mean, 5.07). (R_(CN),R_(CP),andR_(NP) distribution were all with high spatial heterogeneities and significantly affected by vegetation coverage, plant communities, geomorphology, and seawalls. During the typical plant succession sequence of the halophytes-the mesophyte-the hydrophyte in estuarine wetland, P might be the primary limiting elements for nutrients stoichiometrical characteristics. (R_(CN),R_(CP),andR_(NP) in soils of low-lying areas were all higher than that in highlands. Plant coverage and communities formation would help to reduce restriction from nitrogen, but to increase restrictions from phosphorus meanwhile. Conclusions C, N, and P ecological stoichiometry had high complexities.R_(CN) in estuarine wetland soils were generally high, whereas R_(CP) and R_(NP) were comparatively low, indicating that ecosystems in the estuary were limited by nutrients such as N and P, with the latter being the primary factor. Vegetation covers, plant communities, geomorphology, and seawall all affected nutrient stoichiometry in soils.
机译:目的对河口湿地土壤中的碳,氮和磷的化学计量特性及其影响因素知之甚少。这项工作的目的是研究中国东北双台子河口湿地土壤中碳,氮和磷(R_(CN),R_(CP)和R_(NP))的生态化学计量特征及其潜在的影响因素,如植被覆盖范围,植物群落,地貌和海堤。材料和方法在2008-2010年期间,收集河口湿地的土壤样品,以测定土壤中的有机碳,总氮和磷以及其他元素。计算和计算了(R_(CN),R_(CP)和R_(NP)的摩尔比。总体而言,(R_(CN)在8.26〜52.97(平均值,16.15),R_(CP )的范围为23.21〜862.53(平均值为90.66),R_(NP)的范围为0.93〜29.52(平均值为5.07)。(R_(CN),R_(CP)和R_(NP)分布均在河口湿地盐生植物(中生植物)和水生植物的典型植物演替序列中,P可能是养分化学计量特征的主要限制元素。低洼地区土壤中的(R_(CN),R_(CP)和R_(NP)均高于高地。植物覆盖和群落形成有助于减少对氮的限制,但同时增加对磷的限制结论C,N和P生态学计量复杂度高,河口湿地土壤中的R_(CN)普遍较高,其中由于R_(CP)和R_(NP)相对较低,表明河口的生态系统受到诸如N和P等养分的限制,后者是主要因素。植被,植物群落,地貌和海堤都会影响土壤中的营养化学计量。

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  • 来源
    《Journal of soil & sediments》 |2013年第6期|1043-1051|共9页
  • 作者单位

    Key Laboratory of Wetland Ecology and Environment, Institute of Northeast Geography and Agroecology, Chinese Academy of Sciences, 130012, Changchun, Jilin Province, People's Republic of China;

    Key Laboratory of Wetland Ecology and Environment, Institute of Northeast Geography and Agroecology, Chinese Academy of Sciences, 130012, Changchun, Jilin Province, People's Republic of China;

    Key Laboratory of Wetland Ecology and Environment, Institute of Northeast Geography and Agroecology, Chinese Academy of Sciences, 130012, Changchun, Jilin Province, People's Republic of China;

    Key Laboratory of Wetland Ecology and Environment, Institute of Northeast Geography and Agroecology, Chinese Academy of Sciences, 130012, Changchun, Jilin Province, People's Republic of China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    C; Ecological stoichiometry; Estuarine wetland; N; P;

    机译:C;生态化学计量;河口湿地;N;P;

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