Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 1/2015, Volume 112, Issue 2, pp. 442 - 447
Understanding variation in resource specialization is important for progress on issues that include coevolution, community assembly, ecosystem processes, and...
Host range | Specialization | Pareto distribution | Niche width | Latitudinal gradient | DIVERSIFICATION | HOST SPECIALIZATION | MULTIDISCIPLINARY SCIENCES | niche width | PARETO DISTRIBUTIONS | RADIATION | host range | PLANT DIVERSITY | ARTHROPODS | EVOLUTION | SPECIES RICHNESS | BUTTERFLIES | specialization | latitudinal gradient | LEPIDOPTERA | Animals | Diet | Lepidoptera - classification | Herbivory - physiology | Insecta - classification | Models, Biological | Ecosystem | Lepidoptera - physiology | Host Specificity | Insecta - physiology | Phylogeny | Biodiversity | Animal feeding behavior | Zoological research | Herbivores | Research | Insects | Food and nutrition | Biological Sciences
Host range | Specialization | Pareto distribution | Niche width | Latitudinal gradient | DIVERSIFICATION | HOST SPECIALIZATION | MULTIDISCIPLINARY SCIENCES | niche width | PARETO DISTRIBUTIONS | RADIATION | host range | PLANT DIVERSITY | ARTHROPODS | EVOLUTION | SPECIES RICHNESS | BUTTERFLIES | specialization | latitudinal gradient | LEPIDOPTERA | Animals | Diet | Lepidoptera - classification | Herbivory - physiology | Insecta - classification | Models, Biological | Ecosystem | Lepidoptera - physiology | Host Specificity | Insecta - physiology | Phylogeny | Biodiversity | Animal feeding behavior | Zoological research | Herbivores | Research | Insects | Food and nutrition | Biological Sciences
Journal Article
Ecography, ISSN 0906-7590, 10/2009, Volume 32, Issue 5, pp. 765 - 777
Spatial fingerprints of climate change on tree species distribution are usually detected at latitudinal or altitudinal extremes (arctic or alpine tree line),...
Trees | Climate change | Forest ecology | Forest stands | Vegetation | Mountain forests | Timberlines | Climate models | Species | Seedlings | RECRUITMENT | PLANT-COMMUNITIES | LOGISTIC-REGRESSION | CLIMATE-CHANGE | LIFE-STAGE | SWISS ALPS | ECOLOGY | PINUS-SYLVESTRIS | FACILITATION | BIODIVERSITY CONSERVATION | NICHE SHIFTS | VEGETATION | Life Sciences | Human health and pathology
Trees | Climate change | Forest ecology | Forest stands | Vegetation | Mountain forests | Timberlines | Climate models | Species | Seedlings | RECRUITMENT | PLANT-COMMUNITIES | LOGISTIC-REGRESSION | CLIMATE-CHANGE | LIFE-STAGE | SWISS ALPS | ECOLOGY | PINUS-SYLVESTRIS | FACILITATION | BIODIVERSITY CONSERVATION | NICHE SHIFTS | VEGETATION | Life Sciences | Human health and pathology
Journal Article
Nature, ISSN 0028-0836, 05/2017, Volume 546, Issue 7656, pp. 48 - 55
Global patterns of biodiversity are influenced by spatial and environmental variations in the rate at which new species form. We relate variations in...
SPECIES-DIVERSITY | GENETIC DIVERSITY | LATITUDINAL GRADIENTS | RICHNESS | DIVERSIFICATION RATES | MULTIDISCIPLINARY SCIENCES | MOLECULAR EVOLUTION | PATTERNS | SCALE | DIVERGENCE | EXTINCTION RATES | Geography | Animals | Genetic Speciation | Population Density | Animal Migration | Human Activities | Extinction, Biological | Biodiversity | Islands | Altitude | Biological research | Origin of species | Research | Biological diversity | Biology, Experimental | Trees | Habitats | Spatial discrimination | Spatial analysis | Genetic diversity | Ecology | Species diversity | Evolutionary biology | Evolution | New species | Species richness | Speciation
SPECIES-DIVERSITY | GENETIC DIVERSITY | LATITUDINAL GRADIENTS | RICHNESS | DIVERSIFICATION RATES | MULTIDISCIPLINARY SCIENCES | MOLECULAR EVOLUTION | PATTERNS | SCALE | DIVERGENCE | EXTINCTION RATES | Geography | Animals | Genetic Speciation | Population Density | Animal Migration | Human Activities | Extinction, Biological | Biodiversity | Islands | Altitude | Biological research | Origin of species | Research | Biological diversity | Biology, Experimental | Trees | Habitats | Spatial discrimination | Spatial analysis | Genetic diversity | Ecology | Species diversity | Evolutionary biology | Evolution | New species | Species richness | Speciation
Journal Article
Ecological Monographs, ISSN 0012-9615, 8/2009, Volume 79, Issue 3, pp. 343 - 377
The distribution of the diversity and abundance of life on Earth is thought to be shaped by the patterns of plant growth (net primary production, NPP) in the...
Productivity | Trees | Concepts and Synthesis: Emphasizing New Ideas to Stimulate Research in Ecology | Marine ecology | Body size | Forest ecology | Tropical soils | Tropical forests | Plants | Tropical rain forests | Forest soils | biomass | forest | terrestrial | gradients | latitude | secondary production | species diversity | marine | net primary production | NPP | Species diversity | Marine | Net primary production | Secondary production | Forest | Terrestrial | Gradients | Latitude | Biomass | LIFE-HISTORY TRAITS | CLUTCH-SIZE | BODY-SIZE VARIATION | SPACE-TIME CLIMATE | TREE SPECIES RICHNESS | WHITE-TAILED DEER | AMERICAN BLACK BEARS | AFRICAN RAIN FORESTS | AIR-SAMPLING-NETWORK | ECOLOGY | LATITUDINAL DIVERSITY GRADIENT | Natural resources | United States | Research | Rain forests | Ecological research | Methods | Biological diversity
Productivity | Trees | Concepts and Synthesis: Emphasizing New Ideas to Stimulate Research in Ecology | Marine ecology | Body size | Forest ecology | Tropical soils | Tropical forests | Plants | Tropical rain forests | Forest soils | biomass | forest | terrestrial | gradients | latitude | secondary production | species diversity | marine | net primary production | NPP | Species diversity | Marine | Net primary production | Secondary production | Forest | Terrestrial | Gradients | Latitude | Biomass | LIFE-HISTORY TRAITS | CLUTCH-SIZE | BODY-SIZE VARIATION | SPACE-TIME CLIMATE | TREE SPECIES RICHNESS | WHITE-TAILED DEER | AMERICAN BLACK BEARS | AFRICAN RAIN FORESTS | AIR-SAMPLING-NETWORK | ECOLOGY | LATITUDINAL DIVERSITY GRADIENT | Natural resources | United States | Research | Rain forests | Ecological research | Methods | Biological diversity
Journal Article
Journal of Ecology, ISSN 0022-0477, 07/2018, Volume 106, Issue 4, pp. 1660 - 1672
Patterns that maintain and generate biodiversity of macro‐organisms in the Neotropics are widely discussed in the scientific literature, yet the spatial...
Andes | lakes | Amazon | spatial ecology | latitudinal diversity | streams | BENTHIC DIATOMS | NATIONAL-PARK | BIOGEOGRAPHY | ALPINE STREAMS | PATTERNS | PLANT SCIENCES | DISPERSAL | CLOUD FOREST | ECOLOGY | LATITUDINAL DIVERSITY GRADIENT | Analysis | Biological diversity | Freshwaters | Communities | Biota | Organisms | Biodiversity | Microorganisms | Plankton | Dispersal | Tropical environment | Eigenvectors | Configurations | Diatoms | Species | Framework | Species richness | Assembly | Streams | Distribution patterns | Community composition | Composition | Landscape | Statistical analysis | Algae | Lowlands | Ecology | Variance analysis | Dispersion | Inland waters | Environmental conditions | Correlation analysis | Distribution | Lakes | Tropical environments | Gradients | Niches
Andes | lakes | Amazon | spatial ecology | latitudinal diversity | streams | BENTHIC DIATOMS | NATIONAL-PARK | BIOGEOGRAPHY | ALPINE STREAMS | PATTERNS | PLANT SCIENCES | DISPERSAL | CLOUD FOREST | ECOLOGY | LATITUDINAL DIVERSITY GRADIENT | Analysis | Biological diversity | Freshwaters | Communities | Biota | Organisms | Biodiversity | Microorganisms | Plankton | Dispersal | Tropical environment | Eigenvectors | Configurations | Diatoms | Species | Framework | Species richness | Assembly | Streams | Distribution patterns | Community composition | Composition | Landscape | Statistical analysis | Algae | Lowlands | Ecology | Variance analysis | Dispersion | Inland waters | Environmental conditions | Correlation analysis | Distribution | Lakes | Tropical environments | Gradients | Niches
Journal Article
Annals of Botany, ISSN 0305-7364, 11/2012, Volume 110, Issue 6, pp. 1205 - 1219
• Background and Aims Knowledge of those traits that vary with latitude should be helpful in predicting how they may evolve locally under climate change. In...
Dormancy | Beets | Seed dormancy | Climate change | Ecological genetics | Marine ecology | Autumn | Germination | Drought | Phenotypic traits | germination phenology | seasons | seed dormancy | life history | climatic factors | latitudinal gradient | trait distribution | Beta vulgaris ssp. maritima | ecological factors | climate change | RAPID CLIMATE-CHANGE | ARABIDOPSIS-THALIANA | VULGARIS SSP MARITIMA | GERMINATION | PLANT SCIENCES | DESERT ANNUALS | Beta vulgaris ssp | WILD BEET | maritima | NATURAL-SELECTION | ADAPTATION | LIFE-HISTORY | SUGAR-BEET | Geography | Climate | Temperature | Plant Dormancy - physiology | Seeds - genetics | Acclimatization | Ecology | Beta vulgaris - genetics | Seeds - physiology | Time Factors | Beta vulgaris - physiology | Seasons | France | Cluster Analysis | Life Sciences | Populations and Evolution | Genetics | Original
Dormancy | Beets | Seed dormancy | Climate change | Ecological genetics | Marine ecology | Autumn | Germination | Drought | Phenotypic traits | germination phenology | seasons | seed dormancy | life history | climatic factors | latitudinal gradient | trait distribution | Beta vulgaris ssp. maritima | ecological factors | climate change | RAPID CLIMATE-CHANGE | ARABIDOPSIS-THALIANA | VULGARIS SSP MARITIMA | GERMINATION | PLANT SCIENCES | DESERT ANNUALS | Beta vulgaris ssp | WILD BEET | maritima | NATURAL-SELECTION | ADAPTATION | LIFE-HISTORY | SUGAR-BEET | Geography | Climate | Temperature | Plant Dormancy - physiology | Seeds - genetics | Acclimatization | Ecology | Beta vulgaris - genetics | Seeds - physiology | Time Factors | Beta vulgaris - physiology | Seasons | France | Cluster Analysis | Life Sciences | Populations and Evolution | Genetics | Original
Journal Article
Geographical distribution and Alti-latitudinal dispersion of some genera and species of the tribe Triatomini Jeannel, 1919 (Hemiptera, Reduviidae, Triatominae), 12/1998
Geographical Distribution and Alti-latitudinal Dispersion of Some Genera and Species of the tribe Triatomini Jeannel, 1919 (Hemiptera, Reduviidae, Triatominae)...
geographical distribution - alti-latitudinal dispersion - Triatomini - Chagas' disease
geographical distribution - alti-latitudinal dispersion - Triatomini - Chagas' disease
Journal
Journal of Biogeography, ISSN 0305-0270, 10/2019, Volume 46, Issue 10, pp. 2323 - 2335
Aim The aim of the study was to assess the diversity of algal symbionts of the family Symbiodiniaceae associated with the coral genus Porites in the Red Sea,...
ITS2 | SymPortal | Scleractinia | symbiosis | next‐generation sequencing | Latitudinal gradient | Corals | Reefs | Coral reefs | Dinoflagellates | Communities | Algae | Markers | Symbionts | Geographical locations | Microorganisms | Morphology | Genotypes | Distribution patterns | Environmental gradient | Community composition
ITS2 | SymPortal | Scleractinia | symbiosis | next‐generation sequencing | Latitudinal gradient | Corals | Reefs | Coral reefs | Dinoflagellates | Communities | Algae | Markers | Symbionts | Geographical locations | Microorganisms | Morphology | Genotypes | Distribution patterns | Environmental gradient | Community composition
Journal Article
Soil Biology and Biochemistry, ISSN 0038-0717, 03/2014, Volume 70, pp. 113 - 122
Black soils (Mollisols) are one of the most important soil resources for maintaining food security of China and are mainly distributed in northeast China. To...
Soil pH | Latitudinal diversity gradient | Mollisols | Bacterial diversity | Soil microbial biomass | Soil carbon content | PHYLOGENETIC DIVERSITY | BIODIVERSITY | MANAGEMENT | GRADIENT | DISPERSAL | SOIL SCIENCE | MICROBIAL BIOGEOGRAPHY | FUNGAL COMMUNITIES | LAND-USE | BETA-DIVERSITY | Soil acidity | Soils | Carbon content | Food supply | Analysis | Soil microbiology
Soil pH | Latitudinal diversity gradient | Mollisols | Bacterial diversity | Soil microbial biomass | Soil carbon content | PHYLOGENETIC DIVERSITY | BIODIVERSITY | MANAGEMENT | GRADIENT | DISPERSAL | SOIL SCIENCE | MICROBIAL BIOGEOGRAPHY | FUNGAL COMMUNITIES | LAND-USE | BETA-DIVERSITY | Soil acidity | Soils | Carbon content | Food supply | Analysis | Soil microbiology
Journal Article