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Data from: Trait integration and macroevolutionary patterns in the pollination biology of conifers
负责人:
关键词:
Macroevolution;reproductive strategies;Morphological Evolution;phylogenetics;Gymnosperms
DOI:
doi:10.5061/dryad.71dq2
摘要:
is not well understood. In order to explore this further, we study a specialized pollination mechanism in conifers whose traits are linked through function
Data from: Landscape genetic approaches to guide native plant restoration in the Mojave Desert
负责人:
关键词:
local adaptation;Ephedra nevadensis;Sphaeralcea ambigua;seed provenance strategy;Ecological restoration;AFLP;genome scan;seed transfer zones;Landscape Genetics
DOI:
doi:10.5061/dryad.d48r5
摘要:
ortance: the long-lived, wind-pollinated gymnosperm Ephedra nevadensis, and the short-lived, insect-pollinated angiosperm Sphaeralcea ambigua
Data from: Inferring selection in instances of long?range colonization: the Aleppo pine (Pinus halepensis) in the Mediterranean Basin
负责人:
关键词:
Pinus halepensis;molecular evolution;Ecological Genetics;Adaptation;Gymnosperms
DOI:
doi:10.5061/dryad.pt3b974
摘要:
ilar molecular footprint. In particular, when attempting to identify selection in species that have undergone a recent range expansion, the increase of gene
Data from: Are leaf functional traits “invariant” with plant size, and what is “invariance” anyway?
负责人:
关键词:
Calathea;Hebe;Brachychiton;Olearia;Eugenia;Pickeringia;Hippophae;Arisaema;Gompholobium;Juncus;Cassiope;Baptisia;Arctagrostis;Buxus;Anacardium;Allophylus;Celtis;Chamaedorea;Eurya;Magnolia;Clarisia;Baccharis;Oxytropis;Liquidambar;Erythroxylum;Geum;Crataegus;Oreopanax;metabolic theory of ecology;Juglans;Adenostoma;Calluna;Castilla;Hedysarum;Licania;Myriocarpa;Daphne;Epilobium;Phyllota;Carya;Dirca;Bossiaea;Physocarpus;Acer;Ficus;Geijera;Persea;Manihot;Galax;Hampea;Astronium;Goupia;Fagus;Cecropia;Bactris;metabolic scaling theory;Allocasuarina;Castanea;Eriostemon;Hierochloe;Heliocarpus;Erica;Persoonia;Aspidosperma;Ligustrum;Bellucia;Andromeda;Eriophorum;Alnus;Castanopsis;Cymbopetalum;Hakea;Lonchocarpus;Lepechinia;Cassinia;Lupinus;Carex;Buddleja;Lambertia;Cornus;Camellia;Gynoxys;Clidemia;Chuquiraga;Clethra;Larrea;Eucalyptus;Calamagrostis;Orthion;Antirhea;Dendropanax;Myrica;nitrogen;Corymbia;Lyonia;Artemisia;Dialium;Garcinia;Micrandra;Omphalea;Betula;Inga;Erythronium;plant height;Dryas;Heteromeles;Ilex;Dussia;Amelanchier;Eupatorium;Neolitsea;Picea;Aegiphila;Helianthemum;Arctostaphylos;Larix;Ceanothus;Abies;Gutierrezia;Philotheca;Luzula;Lasiopetalum;Lomatia;Helianthus;Cynometra;Kalmia;Fraxinus;Empetrum;Amphitecna;Loricaria;Maesa;Coccoloba;Lunania;Acalypha;Melaleuca;Cotoneaster;Croton;Eperua;Eriodictyon;Guarea;Mortoniodendron;Boronia;Cleyera;Cupania;Astrotricha;leaf economic spectrum;Beyeria;Eutaxia;Acacia;Atriplex;Euonymus;Casearia;Macrozamia;Corylus;Erythrina;Hibbertia;Mimulus;Myrsine;Nectandra;Laburnum;Dodonaea;Petasites;Brosimum;Guamia;Holodiscus;Bursera;Photinia;phosphorus;Carpinus;Cytisus;Arbutus;Pimelea;Loiseleuria;Capparis;Echinacea;Malus;Leptospermum;Liriodendron;Bistorta;Bertya;Miconia;Banksia;Correa;Faramea;Elaeagnus;Equisetum;Cinnamomum;Diplostephium;Aesculus;Cercocarpus;Grevillea;Illicium;Berberis;Eremophila;plant functional traits;Lotus;Cordia;Juniperus;Bauhinia;Cardamine;Chamaedaphne;Callitris;Caraipa;Lonicera;Luehea;Astrocaryum;leaf area;Hedyosmum
DOI:
doi:10.5061/dryad.r3n45
摘要:
) traits approach invariance within and between herbaceous and woody plant groups; angiosperms and gymnosperms; and within most biome and habitat type

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