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Data from: Changes in plant, soil and microbes in a typical steppe from simulated grazing: explaining potential change in soil carbon
负责人:
关键词:
Soil parameters;Stipa krylovii;Plant parameters;Cleistogenes squarrosa;Soil microbes' parameters;Leymus chinensis;Potentilla acaulis;Agropyron cristatum;PCA and RDA analysis data sheet;Artemisia frigida
DOI:
doi:10.5061/dryad.q428q
摘要:
. An interaction between defoliation and trampling on microbial growth was observed in our study: trampling increased the abundance of total bacteria, fungi, and AMF
Data from: Rapid responses of soil microorganisms improve plant fitness in novel environments
负责人:
Lau, Jennifer A.
关键词:
plant-microbe interaction climate change contemporary evolution species interaction
DOI:
doi:10.5061/dryad.qc537
摘要:
iencing novel environmental conditions. Here, we examine plant adaptation to drought stress in a multigeneration experiment that manipulated abovegroundbelowground feedbac
Data from: Using root traits to understand temporal changes in biodiversity effects in grassland mixtures.
负责人:
关键词:
biodiversity effects;ecosystem functioning;functional trait approach
DOI:
doi:10.5061/dryad.63p7r97
摘要:
of biodiversity. Positive CE indicates that other positive interactions did occur, but we did not find evidence that belowground resource partiti
Data from: Land use in mountain grasslands alters drought response and recovery of carbon allocation and plant-microbial interactions
负责人:
关键词:
carbohydrates;PLFA;stress tolerance;13C pulse labelling;belowground carbon allocation;land abandonment;nitrogen uptake;NLFA;resilience;resistance
DOI:
doi:10.5061/dryad.3s57p
摘要:
. 6. Synthesis. Our results suggest that resistance and resilience (i.e. recovery) of plant C dynamics and plant-microbial interactions are negatively relate
Data from: Process-based simulation of prairie growth
负责人:
Zilverberg, Cody
关键词:
APEX root:shoot ratio biomass simulation water stress interspecific competition
DOI:
doi:10.5061/dryad.h3fj0
摘要:
on and the environment, but process-based models that simulate animal-plant-soil interaction and ecosystem services in grazing lands are rare. In the U.S.A., APEX
Data from: Plant functional groups regulate soil respiration responses to nitrogen addition and mowing over a decade
负责人:
关键词:
soil pH;precipitation regime;Land-use change;plant community structure;soil CO2 flux;grassland
DOI:
doi:10.5061/dryad.tb850
摘要:
rs. The interaction of N addition with mowing had little effect on soil respiration. However, the significant effects of both N addition and mowing appeared
Data from: The mechanisms affecting seedling establishment in restored savanna understories are seasonally dependent
负责人:
关键词:
Scleria ciliata;Commelina erecta;Parthenocissus quinquefolia;Gymnopogon ambiguus;Pinus taeda;root competition;Aristida purpurascens var. tenuispica;Liatris virgata;Erigeron strigosus;Packera anonyma;Tephrosia virginiana;Hypericum gentianoides;Vaccinium arboreum;establishment limitation;Prunus umbellata;Sericocarpus tortifolius;Paspalum setaceum;Tragia urticifolia;Rubus argutus;Saccharum alopecuroides;plant life stage;Dichanthelium commutatum;Rhynchosia reniformis;Desmodium obtusum;Andropogon sp.;Rubus cuneifolius;Cornus florida;Stipulicida setacea;Lespedeza repens;Desmodium paniculatum var. paniculatum;Rhus copallinum;Land-use legacies;Potentilla canadensis;Quercus coccinea;Gelsemium sempervirens;Gamochaeta purpurea;Aristida tuberculosa;Cyperus plukenetii;Lactuca graminifolia;Dichanthelium sp.;Dioscorea villosa;Desmodium ciliare;Pityopsis graminifolia;Tragia urens;Silphium compositum;Lespedeza virginica;Callicarpa americana;Vernonia angustifolia;Carya tomentosa;Centrosema virginianum;Asclepias amplexicaulis;Viola sororia;Croton glandulosus;Desmodium strictum;Quercus velutina;Vitis rotundifolia;land-use history;Cyperus retrorsus;Smilax smallii;Helianthemum canadense;Eragrostis spectabilis;Carya;Elephantopus tomentosus;Gaylussacia dumosa;Aristolochia serpentaria;Pseudognaphalium obtusifolium;Lechea mucronata;Quercus laevis;Desmodium lineatum;Lonicera sempervirens;Desmodium marilandicum;Croptilon divaricatum;Chamaecrista fasciculata;Coreopsis major;Crataegus sp.;Ionactis linariifolia;Quercus laurifolia;belowground competition;Quercus margarettiae;Calystegia sp.;Cyperus filiculmis;Lespedeza hirta;Wahlenbergia marginata;Chimaphila maculata;Crocanthemum rosmarinifolium;Linaria canadensis;Liquidambar styraciflua;Tephrosia florida;Stylosanthes biflora;canopy thinning;Smilax glauca;Solidago odora;Clitoria mariana;Pinus palustris;Rubus flagellaris;Bonamia patens;Pteridium aquilinum;Helianthus divaricatus;Eupatorium compositifolium;Lespedeza cuneata;Vitis aestivalis;Viola sp.;Diospyros virginiana;Sassafras albidum;Sericocarpus asteroides;Polypremum procumbens;Euphorbia ipecacuanhae;Quercus incana;Piptochaetium avenaceum;Ilex vomitoria;Hieracium gronovii;Morella cerifera;Paspalum boscianum;Rhexia mariana;Robinia pseudoacacia;Styrax grandifolius;Quercus falcata;Solidago nemoralis;Euphorbia pubentissima;Aristida lanosa;Acalypha gracilens;Desmodium canescens;Carex;Vaccinium stamineum;Erechtites hieraciifolius;Conyza canadensis;Celtis tenuifolia;Chrysopsis gossypina;Symphyotrichum concolor;Toxicodendron pubescens;Campsis radicans;Liatris sp.;Acer rubrum;Solanum ptychanthum;Carya pallida;Eupatorium rotundifolium;Longleaf pine savanna;Eupatorium album;Liatris elegans;Galium sp. (pilosum\/hispidulum);Smilax bona-nox;Aristida condensata;Quercus stellata;Anthropocene;Quercus marilandica;Bulbostylis ciliatifolia;Dyschoriste oblongifolia;Dichanthelium sp.3;Ilex opaca;Prunus serotina;Digitaria cognata;Danthonia sericea;Galium pilosum;dispersal limitation;Chamaecrista nictitans subsp. nictitans;Eupatorium glaucescens;Quercus nigra;Penstemon australis;Ipomoea pandurata;Nyssa sylvatica;Eupatorium capillifolium;Hypericum hypericoides
DOI:
doi:10.5061/dryad.6450hv3
摘要:
le in limiting plant establishment. Yet, belowground competition is generally studied less than aboveground, especially in the context of land-use history

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