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Data from: Mapping the expansion of coyotes (Canis latrans) across North and Central America
负责人:
关键词:
historical ecology;VertNet;range expansion;FAUNMAP;Canis latrans;museum records;Holocene
DOI:
doi:10.5061/dryad.1qp358p
摘要:
into deciduous forests, west into costal temperate rain forests, and south into tropical rainforests. Forest fragmentation and the extirpation
Data from: Spatial and temporal patterns of frugivorous Hornbill movements in Central Africa and their implications for rain forest conservation
负责人:
关键词:
2009-2011;Bycanistes albotibialis;Seed dispersal;hornbills;satellite tracking;movements;rainforest;Ceratogymna atrata
DOI:
doi:10.5061/dryad.4pf25
摘要:
Tropical forest conservation and restoration require an understanding of the movements and habitat preferences of important seed dispersers
Data from: Potential trajectories of old-growth Neotropical forest functional composition under climate change
负责人:
关键词:
climate change;generalized additive models;Community weighted mean;Functional traits
DOI:
doi:10.5061/dryad.kk914
摘要:
to climate change. However, the trajectories of change expected to occur in tropical forest functional characteristics as a function of future climate variation ar
Data from: The origin of the endemic African grasshopper family Lentulidae (Orthoptera: Acridoidea) and its climate-induced diversification
负责人:
关键词:
Climate-induced diversification;diversification pattern;Eastern Arc Mountains biodiversity hotspot;endemism;molecular phylogeny;speciation;phylogeography
DOI:
doi:10.5061/dryad.c59zw3r4h
摘要:
fragmentations and reconnections of tropical rain forests in parallel with climatic fluctuations. Location: Sub-Saharan Africa. Taxon
-temperate rain forest
负责人:
关键词:
Plant physiological ecology;Dacrydium cupressinum;Knightia excelsa;forest dynamics;Dacrycarpus dacrydioides;Prumnopitys ferruginea;Litsea calicaris;Podocarpus totara;Beilschmiedia tawa;Elaeocarpus dentatus;Prumnopitys taxifolia;Laurelia novae-zelandiae;Holocene
DOI:
doi:10.5061/dryad.rf025
摘要:
st and/or drought. The drivers of the dynamics of New Zealand's podocarp–broadleaved forests therefore differ appreciably from those ascribed to tropical and north
Data from: Does functional trait diversity predict aboveground biomass and productivity of tropical forests? Testing three alternative hypotheses
负责人:
关键词:
green soup hypothesis;biomass ratio;biodiversity;Functional traits;Community weighted mean;Ecosystem processes;present;niche complementarity
DOI:
doi:10.5061/dryad.55203
摘要:
1. Tropical forests are globally important, but it is not clear whether biodiversity enhances carbon storage and sequestration in them. We test
Data from: Six new cryptic species of Xylodonta Becker, 2014 (Notodontidae: Nystaleinae) from Costa Rica
负责人:
关键词:
tropical cloud forest;Museo Nacional de Costa Rica;área de Conservación Guanacaste;DNA Barcoding;Xylodonta billhaberi;Xylodonta markvanputteni;rain forest;Tropical dry forest;Holocene;Xylodonta terrena;cryptic species
DOI:
doi:10.5061/dryad.559m9
摘要:
morphology and life histories. Xylodonta adults and caterpillars, and their foodplants in área de Conservación Guanacaste (ACG) in northwestern Costa Rica, are reviewed. Larvae
Data from: Selective logging intensity in an East African rain forest predicts reductions in ant diversity
负责人:
关键词:
Pheidole concinna;Hypoponera punctatissima;Bothroponera talpa;Tetramorium boltoni;Pheidole njassae;Lioponera nkomoensis;Strumigenys bellatrix;Zasphinctus obamai;Strumigenys rukha;Technomyrmex andrei;Tetramorium snellingi;Pheidole megacephala;Dorylus affinis;multiple stressors;Hypoponera angustata;Crematogaster wellmani;Solenopsis punctaticeps;Carebara perpusilla;Dorylus kohli;Pheidole KE07;Carebara phragmotica;Strumigenys ludovici;Pristomyrmex africanus;Crematogaster concava;Tetramorium zambezium;Bothroponera crassa;Holocene;habitat fragmentation;Phrynoponera gabonensis;Carebara thoracica;Parvaponera KE01;Parvaponera KE02;Plagiolepis decora;Hypoponera jeanneli;Carebara rara;Carebara polita;Pheidole aurivillii;Myrmicaria opaciventris;forest specialists;Strumigenys tetragnatha;Anochetus maynei;Odontomachus assiniensis;Strumigenys lujae;Crematogaster KE08;Kenya;Crematogaster KE03;Parasyscia kenyensis;Tetramorium boehmei;Hypoponera inaudax;disturbance specialists;Dorylus wilverthi;Monomorium hanneli;Pheidole nigeriensis;Strumigenys serrula;Kakamega forest;Tetramorium metactum;Tetramorium KE09;Tetramorium pinnipilum;Axinidris acholli;Mesoponera subiridescens;Technomyrmex KE01;Hypoponera dulcis;Parasyscia KE01;Hypoponera fatiga;Strumigenys tetraphanes;Tetramorium KE13;Pheidole speculifera;Discothyrea mixta;Hypoponera importuna;Camponotus pompeius;Plathythyrea gracillima;Strumigenys minkara;Monomorium KE01;Carebara alluaudi;Strumigenys thuvida;Hypoponera occidentalis;Dorylus nigricans molestus;Camponotus brutus;Paraparatrechina weissi;Tetramorium viticola;Strumigenys concolor;Tetramorium pullulum;Anochetus katonae;Strumigenys geoterra;Tetramorium lucayanum;Paraparatrechina umbranatis;Pheidole KE02;Pheidole KE05;Pheidole dea;Pheidole KE04;Nylanderia silvula;Pheidole KE01;Recent;Calyptomyrmex clavatus;Plectrotena subterranea;Anthropocene;Tetramorium brevispinosum;Leptogenys KE01;Syllophopsis cryptobia;biodiversity;Habitat Degradation;Carebara KE06;Strumigenys cavinasis;Strumigenys hensekta;Carebara silvestrii;Microdaceton tibialis;Calyptomyrmex brunneus;Strumigenys KE06;Mesoponera ambigua;Calyptomyrmex piripilis;Monomorium rotundatum;Monomorium draxocum;Acropyga silvestrii;Calyptomyrmex duhun;Tetramorium KE01;Technomyrmex moerens;Tetramorium KE08
DOI:
doi:10.5061/dryad.8hq75j7
摘要:
of habitat fragmentation and degradation on biodiversity. Most studies of anthropogenic change in the tropics come from Southeast Asia and South America, and impacts

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