首页> 中文期刊> 《森林生态系统:英文版》 >Effects of three coniferous plantation species on plant-soil feedbacks and soil physical and chemical properties in semiarid mountain ecosystems

Effects of three coniferous plantation species on plant-soil feedbacks and soil physical and chemical properties in semiarid mountain ecosystems

         

摘要

Background:Large-scale afforestation can significantly change the ground cover and soil physicochemical properties,especially the soil fertility maintenance and water conservation functions of artificial forests,which are very important in semi-arid mountain ecosystems.However,how different tree species affect soil nutrients and soil physicochemical properties after afforestation,and which is the best plantation species for improving soil fertility and water conservation functions remain largely unknown.Methods:This study investigated the soil nutrient contents of three different plantations(Larix principis-rupprechtii,Picea crassifolia,Pinus tabuliformis),soils and plant-soil feedbacks,as well as the interactions between soil physicochemical properties.Results:The results revealed that the leaves and litter layers strongly influenced soil nutrient availability through biogeochemical processes:P.tabuliformis had higher organic carbon,ratio of organic carbon to total nitrogen(C:N)and organic carbon to total phosphorus(C:P)in the leaves and litter layers than L.principis-rupprechtii or P.crassifolia,suggesting that higher C:N and C:P hindered litter decomposition.As a result,the L.principis-rupprechtii and P.crassifolia plantation forests significantly improved soil nutrients and clay components,compared with the P.tabuliformis plantation forest.Furthermore,the L.principis-rupprechtii and P.crassifolia plantation forests significantly improved the soil capacity,soil total porosity,and capillary porosity,decreased soil bulk density,and enhanced water storage capacity,compared with the P.tabuliformis plantation forest.The results of this study showed that,the strong link between plants and soil was tightly coupled to C:N and C:P,and there was a close correlation between soil particle size distribution and soil physicochemical properties.Conclusions:Therefore,our results recommend planting the L.principis-rupprechtii and P.crassifolia as the preferred tree species to enhance the soil fertility and water conservation functions,especially in semi-arid regions mountain forest ecosystems.

著录项

  • 来源
    《森林生态系统:英文版》 |2021年第1期|P.22-34|共13页
  • 作者单位

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

    State Key Laboratory of Grassland and Agro-Ecosystems School of Life Sciences Lanzhou University 730000 Lanzhou ChinaGansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems 730000 Lanzhou China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 土壤学;
  • 关键词

    Plantation; C:N:P stoichiometry; Plant-soil feedbacks; Soil physicochemical properties; Mountain ecosystems;

    机译:种植园;C:N:P化学计量;植物 - 土壤反馈;土壤理化特性;山区生态系统;
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