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Data from: The ecological implications of rubber-based agroforest: insect conservation and invasion control
负责人:
关键词:
agroforestry;functional diversity;tropical ants;protected areas;structural complexity;rubber plantation;invasion control;Insect conservation
DOI:
doi:10.5061/dryad.r4xgxd28r
摘要:
1. Protected areas are increasingly threatened by biological invasions, especially in Tropical Asia where extensive areas of natural habitats hav
Data from: Comparing forest structure and biodiversity on private and public land: secondary tropical dry forests in Costa Rica
负责人:
McClellan, Moana
关键词:
ecosystem services forest biomass forest conservation forest succession forest management land tenure secondary forests species composition
DOI:
doi:10.5061/dryad.57s62
摘要:
Secondary forests constitute a substantial proportion of tropical forestlands. These forests occur on both public and private lands and different
of Neotropical Velloziaceae (Pandanales)
负责人:
关键词:
outcrops;productivity;drought;Velloziaceae;trade-off;poikilohydry;competitive ability;Pandanales
DOI:
doi:10.5061/dryad.51n8n
摘要:
are re-established. This is a widespread although rare strategy in angiosperms, and most desiccation-tolerant (DT) species are restricted to tropical
Data from: The fate of phosphorus fertilizer in Amazon soya bean fields
负责人:
Riskin, Shelby H.
关键词:
phosphorus fertilizer phosphorus sorption Amazon soya bean agriculture
DOI:
doi:10.5061/dryad.58qt0
摘要:
has led to widespread eutrophication of freshwater ecosystems, the effects in tropical systems are less well understood. We examined the fate
Data from: Trait patterns of epiphytes compared to other plant life forms along a tropical elevation gradient
负责人:
关键词:
Hymenophyllum capillare;Peperomia tetraphylla;Huperzia ophioglossoides;Canthium oligocarpum;Heinsenia diervilleoides;Peperomia fernandopoiana;Isachne mauritiana;Psychotria cyathicalyx;Schefflera volkensii;trees;Achyranthes aspera;Celtis durandii;Syzygium guineense;Parochetus communis;Diaphananthe lorifolia;Festuca obturbans;Asplenium aethiopicum;Myrsine africana;Asplenium smedsii;Pavetta abyssinica;Umbilicus botryoides;Plectranthus alboviolaceus;Asplenium megalura;Strombosia scheffleri;Agauria salicifolia;Psychotria petiginosa;Galiniera saxifraga;Mitragyna rubrostipulata;Stenogrammitis paucipinnata;Huperzia;Selaginella kraussiana;Disperis kilimanjarica;Clausena anisata;Elaphoglossum deckenii;Holocene;Cyperus derreilema;Loxogramme abyssinica;Helichrysum;Asplenium friesiorum;Myrica salicifolia;Culcasia falcifolia;Ilex mitis;Polystachya confusa;Elaphoglossum hybridum;Bulbophyllum stolzii;Pycnostachys meyeri;Helichrysum forskahlii;Casearia battiscombei;Ferns;Hymenophyllum kuhnii;elevation gradient;Asplenium theciferum;Isoglossa laxa;Lasianthus kilimandscharicus;Pittosporum;Bersama abyssinica;Polystachya;Vittaria volkensii;Garcinia tanzaniensis;Agrostis kilimandscharica;Drynaria volkensii;Macaranga kilimandscharica;Lepidotrichilia volkensii;Psychotria fractinervata;Elaphoglossum acrostichoides;Disperis dicerochila;Hymenophyllum splendidum;Elaphoglossum lastii;Pauridiantha paucinervis;Asplenium uhligii;Leptonychia usambarensis;Pleopeltis macrocarpa;Embelia schimperi;Pteris catoptera;Cornus volkensii;Polyscias fulva;Ekebergia capensis;Entandrophragma excelsum;terrestrial herbs;Mimulopsis kilimandscharica;Ficus sur;Blechnum attenuatum;Dryopteris kilemensis;Senecio maranguensis;Olinia rochetiana;Asplenium hypomelas;Piper capense;Xymalos monospora;Geranium kilimandscharicum;Xiphopteris flabelliformis;Asplenium sandersonii;Hagenia abyssinica;Helichrysum odoratissimum;Newtonia buchananii;epiphytes;Dracaena afromontana;Schefflera myriantha;Asplenium loxoscaphoides;Cyathea manniana;Polyscias albersiana;Huperzia dacrydioides;Oleandra distenta;Tabernaemontana stapfiana;Podocarpus latifolius;Pilea usambarensis;Elaphoglossum angulatum;Plectranthus sylvestris;Streptocarpus montanus;Maytenus acuminata;Erica rossii;Cynorkis pleistadenia;Hypericum revolutum;Polystachya simplex;Rapanea melanophloeos;Aningeria adolfi-friedericii;Orchidaceae;Lycopodium clavatum;Garcinia volkensii;Allophylus ferrugineus;Rubus steudneri;Erythrococca polyandra;Aphloia theiformis;Lepisorus excavatus;Plectranthus autranii;Asplenium elliottii;Asplenium stuhlmannii;Polystachya transvaalensis;plant functional traits;Triceratorhynchus viridiflorus;Alchemilla volkensii;Ocotea usambarensis;Peddiea fischeri;Polystachya eurygnatha;Asplenium praegracile;Begonia meyeri-johannis;Dracaena fragrans;Prunus africana;Rawsonia lucida
DOI:
doi:10.5061/dryad.qr2677n
摘要:
conditions is necessary to predict changes in ecosystem functioning especially in subtropical and tropical regions. We investigated the functional
Data from: Biotically driven vegetation mosaics in grazing ecosystems: the battle between bioturbation and biocompaction
负责人:
关键词:
grazing ecosystems;bistable states;water infiltration;soil amelioration;patch conversion;compaction;Bioturbation;abiotic stress;ecosystem engineering;nutrient availability
DOI:
doi:10.5061/dryad.3f2j7
摘要:
Grazing ecosystems ranging from the arctic tundra to tropical savannas are often characterized by small-scale mosaics of herbivore-preferred
Data from: Comparative transcriptome and lipidome analyses reveal molecular chilling responses in chilling-tolerant sorghums
负责人:
Morris, Geoffrey P.
关键词:
abiotic stress climate adaptation cold tolerance molecular breeding Functional Genomics
DOI:
doi:10.5061/dryad.64g86
摘要:
Chilling temperatures (0 to 15°C) are a major constraint for temperate cultivation of tropical-origin crops, including the cereal crop sorghum
Data from: Testing the benefits of conservation set-asides for improved habitat connectivity in tropical agricultural landscapes
负责人:
关键词:
Agriculture;Borneo;landscape colonisation;rainforest;High Conservation Value;Incidence Function Model;fragmentation;sustainable palm oil
DOI:
doi:10.5061/dryad.600vs50
摘要:
1. Habitat connectivity is important for tropical biodiversity conservation. Expansion of commodity crops, such as oil palm, fragments

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