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首页> 外文期刊>Global change biology >Global environmental change effects on plant community composition trajectories depend upon management legacies
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Global environmental change effects on plant community composition trajectories depend upon management legacies

机译:全球环境变化对植物群落构成轨迹的影响取决于管理遗产

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  • 来源
    《Global change biology》 |2018年第4期|共19页
  • 作者单位

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Institute of Ecology and EvolutionFriedrich‐Schiller‐University JenaJena Germany;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Laboratorio de Investigaciones Botánicas (LABIBO) – CONICETUniversidad Nacional de SaltaSalta Argentina;

    Département de BiologieUniversité de SherbrookeSherbrooke QC Canada;

    Southern Swedish Forest Research CentreSwedish University of Agricultural SciencesAlnarp Sweden;

    Department of Vegetation EcologyInstitute of Botany of the Czech Academy of SciencesBrno Czech Republic;

    Unité de recherche “Ecologie et Dynamique des Systèmes Anthropisés” (EDYSAN UMR 7058 CNRS‐UPJV)Amiens Cedex 1 France;

    Vegetation Ecology and Conservation BiologyUniversity of BremenBremen Germany;

    Environment Agency AustriaVienna Austria;

    Department of Ecology and Ecosystem ManagementTechnische Universit?t MünchenFreising Germany;

    Department of EcologyUniversity of RzeszówRzeszów Poland;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

    Department of Biological SciencesMarshall UniversityHuntington WV USA;

    Department of Vegetation EcologyInstitute of Botany of the Czech Academy of SciencesBrno Czech Republic;

    General BotanyUniversity of PotsdamPotsdam Germany;

    Wageningen Environmental Research (Alterra)AA Wageningen the Netherlands;

    Bia?owie?a Geobotanical StationUniversity of WarsawBia?owie?a Poland;

    Department of Plant SciencesUniversity of OxfordOxford UK;

    Department of GIS and Remote SensingInstitute of Botany of the Czech Academy of SciencesPr?honice Czech Republic;

    Unité de recherche “Ecologie et Dynamique des Systèmes Anthropisés” (EDYSAN UMR 7058 CNRS‐UPJV)Amiens Cedex 1 France;

    Department of Wildlife Ecology and ConservationUniversity of FloridaGainesville FL USA;

    Faculty of ForestryTechnical University in ZvolenZvolen Slovakia;

    Botany DepartmentTrinity College DublinDublin 2 Ireland;

    Leibniz Centre for Agricultural Landscape Research (ZALF)Müncheberg Germany;

    Botany DepartmentTrinity College DublinDublin 2 Ireland;

    Department of GIS and Remote SensingInstitute of Botany of the Czech Academy of SciencesPr?honice Czech Republic;

    Department of BotanyUniversity of Wroc?awWroc?aw Poland;

    Department Silviculture and Forest Ecology of the Temperate ZonesGeorg‐August‐University G?ttingenG?ttingen Germany;

    Department of Plant Systematics Ecology and Theoretical BiologyL. E?tv?s UniversityBudapest Hungary;

    Museum of Natural HistoryUniversity of Wroc?awWroclaw Poland;

    Research Institute for Nature and ForestBrussel Belgium;

    Department of Vegetation EcologyInstitute of Botany of the Czech Academy of SciencesBrno Czech Republic;

    Faculty of Biology and Preclinical MedicineUniversity of RegensburgRegensburg Germany;

    Leibniz Centre for Agricultural Landscape Research (ZALF)Müncheberg Germany;

    Forest &

    Nature LabGhent UniversityMelle‐Gontrode Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物候学;
  • 关键词

    biodiversity change; climate change; disturbance regime; forest RE plot; herbaceous layer; management intensity; nitrogen deposition; plant functional traits; time lag; vegetation resurvey;

    机译:生物多样性变化;气候变化;扰动制度;森林再绘制;草本层;管理强度;氮沉积;植物功能性状;时间滞后;植被Resurvey;

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