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Data from: Biomass consumption by surface fires across Earth's most fire prone continent
负责人:
关键词:
Fire frequency;net primary productivity;carbon;wildfire;fire regimes;fire severity;tropical savanna;Holocene
DOI:
doi:10.5061/dryad.37ts86v
摘要:
Landscape fire is a key but poorly understood component of the global carbon cycle. Predicting biomass consumption by fire at large spatial scales
Data from: Resource stoichiometry and availability modulate species richness and biomass of tropical litter macro-invertebrates
负责人:
Jochum, Malte
关键词:
ecological stoichiometry consumer-resource interaction elemental ratios model averaging consumer species richness consumer biomass
DOI:
doi:10.5061/dryad.qn119
摘要:
of resource quantity, quality, and other habitat parameters on species richness and biomass of consumer communities is often studied in isolation, although muc
Data from: Stoichiometric constraints modulate the effects of temperature and nutrients on biomass distribution and community stability
负责人:
关键词:
Rosenzweig-MacArthur;Stoichiometry;temperature;consumer;resource
DOI:
doi:10.5061/dryad.msbcc2fv2
摘要:
y influence biomass distribution across trophic levels by modulating consumer assimilation efficiency and resource growth rates along the environment
Data from: Resource stoichiometry and consumers control the biodiversity-productivity relationship in pelagic metacommunities
负责人:
关键词:
Stoichiometry;Metacommunities;plankton;biodiversity;community;species richness
DOI:
doi:10.5061/dryad.8856
摘要:
. Without consumers, resource use efficiency (RUE, realized biomass per unit P) increased with increasing richness and evenness. Consumer presence reduced over
Data from: Mycorrhizal symbioses influence the trophic structure of the Serengeti
负责人:
关键词:
ecosystem function;arbuscular mycorrhizas;trophic structure;Ungulate Grazing;Madingley model;environmental gradients;phosphorus
DOI:
doi:10.5061/dryad.6fv68
摘要:
and maintain nutritional quality, cascading through the biomass of consumers and predators in the ecosystem. Although they account for less than 1% of the total
The Water Footprint in Bioenergy\u2014A Comparison of Four Biomass Sources to Produce Biofuels in Argentina: Energy and Building Sectors
负责人:
Araujo, Paula;;Arena, Alejandro;;Civit, Barbara;;Cuadrelli, Silivia;;Feldman, Susana;;Mele, Fernando;;Piastrellini, Roxana;;Silva Colomer, J
关键词:
Bioenergy Water Footprint
DOI:
doi:10.17632/hd4dd65762
摘要:
where it is produced. For instance, considering the environmental fragility, it is recommended to avoid the production of biomass destined to bioenergy
The Water Footprint in Bioenergy\u2014A Comparison of Four Biomass Sources to Produce Biofuels in Argentina: Energy and Building Sectors
负责人:
Araujo, Paula;;Arena, Alejandro;;Civit, Barbara;;Cuadrelli, Silivia;;Feldman, Susana;;Mele, Fernando;;Piastrellini, Roxana;;Silva Colomer, J
关键词:
Bioenergy Water Footprint
DOI:
doi:10.17632/hd4dd65762.1
摘要:
where it is produced. For instance, considering the environmental fragility, it is recommended to avoid the production of biomass destined to bioenergy
Data from: Eelgrass (Zostera marina) food web structure in different environmental settings
负责人:
关键词:
Diet Analysis;Pomatoschistus minutus;Littorina saxatilis;Gastropoda;Turritella communis;Mya spp.;Oligochaeta;Idotea spp.;Zoarces viviparus;Ericthonius difformis;Platynereis dumerilii;Chaetomorpha;Bivalvia;Syngnathus rostellatus;Mya arenaria;Ulva lactuca;Nereis spp.;Nematoda;C:N ratio;Aurelia aurita;stable isotopes;Ciona intestinalis;Crangon crangon;Polychaeta;infauna;Rissoa sp.;Cerastoderma edule;Ectocarpus;Palaemon adspersus;Polynoidae sp.;Gasterosterus aculeatus;Mysinae spp.;food web structure;Idotea sp.;Pygospio elegans;Ceramium;Hydrobia spp.;Haliclystus auricula;eelgrass;stomach content;Littorina littorea;Palaemon spp.;Chironomidae;Sagartiogeton viduatus;Palaemon elegans;seagrass ecosystems;Carcinus maenas;Erichthonius difformis;Monocorophium insidiosum;Cerestoderma edule;Mytilus edulis;Gobius niger;Pungitius pungitius;Zostera marina;Crustacea;Spinachia spinachia;Polysiphonia;Pholis gunnellus;Belone belone;Macoma balthica;Fish;seagrass;Bittium reticulatum;Pholis gunnelus;Cladophora;Corophium volutator;Nerophis ophidion;Turitella communis;epifauna;Rissoidae;biogeochemistry;Hydrobia;Taurulus bubalis;Syngnathus typhle;Gammarus locusta;Microdeutopus gryllotalpa;Littorina obtusata;Asterias rubens;Gracillaria sp.;Gasterosteus aculeatus
DOI:
doi:10.5061/dryad.4jr00
摘要:
biomass distribution of consumers coupled with a more diverse consumer community. The differences in meadow and food web structure of the two seagrass habitats, sugge
Data from: Experimental N and P additions alter stream macroinvertebrate community composition via taxon‐level responses to shifts in detrital
负责人:
Demi, Lee
关键词:
community structure detritus ecological stoichiometry nitrogen phosphorus stream
DOI:
doi:10.5061/dryad.f8qm2d7
摘要:
responses of shredders to enrichment than other taxa, as shredders dominate primary consumer biomass and experience larger consumer-resource elemental
Data from: Herbivore effect traits and their impact on plant community biomass: an experimental test using grasshoppers
负责人:
关键词:
grasshoppers;Functional traits;Herbivory;Body Size;incisive strength;effect traits;feeding niche;plant insect interactions
DOI:
doi:10.5061/dryad.5q33h
摘要:
(consuming up to 60 % of plant community biomass). Grasshopper impact was positively correlated with their incisive strength while body size or grasshopper

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