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Data from: A set of plastid loci for use in multiplex fragment length genotyping for intraspecific variation in Pinus (Pinaceae)
负责人:
关键词:
Pinus resinosa;Pinus torreyana torreyana;Pinus taeda;Pinus albicaulis;discriminant analysis of principal components;Pinus cembroides;Pinus johannis;Pinus elliottii;Pinus heldreichii;Pinus rigida;Pinus massoniana;Pinus rzedowskii;Pinus ponderosa benthamiana;microsatellites;Pinus pseudostrobus var. apulcensis;Pinus bungeana;Pinus morrisonicola;Pinus chihuahuana;Pinus longaeva;Pinus Edulis;Pinus canariensis;Pinus leiophylla;Pinus attenuata;Pinus pinea;Pinus hartwegii subsp. donnell-smithii;Pinus montezumae;Pinus devoniana;Pinus lawsonii;Pinus pinaster;Pinus ponderosa var. benthamiana;Pinus douglasiana;Pinus yecorensis;plastid;Pinus arizonica;Pinus amamiana;Pinus pumila;Pinus kesiya;Pinus hartwegii;Pinus gerardiana;Pinus monticola;Pinus culminicola;Pinus muricata;Pinus sibirica;Pinus virginiana;Pinus oaxacana;Intraspecific Taxonomy;Pinus echinata;Pinus wallichiana;Pinus monophylla;Pinus serotina;Pinus densata;Pinus remota;Pinus caribea;Pinus squamata;Pinus dabeshanensis;Pinus strobus;Pinus pungens;Pinus taiwanensis;Pinus yunnanensis;Pinus clausa;Pinus koraiensis;Pinus pseudostrobus;Pinus nigra;Pinus densiflora;Pinus thunbergii;Pinus strobiformis;Pinus radiata;Pinus banksiana;Pinus dalatensis;Pinus jeffreyi;Pinus mugo;Pinus ponderosa scopulorum;Pinus palustris;Pinus ponderosa;Pinus glabra;Pinus ponderosa ponderosa;Pinus torreyana insularis;Pinus engelmannii;Pinus roxburghii;Pinus parviflora;Pinus tropicalis;Pinus cubensis;Pinus coulteri;Pinus lumholtzii;Pinus nelsonii;Pinus Krempfii;Pinus sabiniana;Pinus occidentalis;Pinus ponderos var. scopulorum;Pinus hwangshanensis;Pinus peuce;Pinus flexilis;Pinus contorta;Pinus sylvestris;Pinus ayacahuite;Pinus patula;Pinus pinceana;Pinus gregii;Pinus maximartinezii;Pinus quadrifolia;Pinus chiapensis;Pinus armandii;Pinus wangii;Pinus aristata;Pinus halepensis;Pinus cooperi;Pinus lambertiana;Pinus donnell smithii;Pinus pringlei;Pinus merkusii;Pinus brutia;Pinus discolor;Pinus latteri;Pinus fragilissima
DOI:
doi:10.5061/dryad.5nc25
摘要:
originally published for P. contorta and P. thunbergii. This allows selection of loci for single-tube PCR multiplexed genotyping in any subsection of the genus
in recently diverged pine species
负责人:
关键词:
Pinus ayacahuite;niche divergence;Pinus flexilis;phylogenetics;Pinus strobiformis;Holocene;speciation;Pleistocene
DOI:
doi:10.5061/dryad.3ng7p
摘要:
genetic markers with environmental information to clarify species boundaries and relationships of the species complex of Pinus flexilis, Pinus ayacahuite, and Pinus
Data from: The role of hybridization during ecological divergence of southwestern white pine (Pinus strobiformis) and limber pine (P. flexilis)
负责人:
关键词:
Pinus flexilis;conifers;ecological speciation;hybrid zone;population genomics;extrinsic barriers;Pinus strobiformis;introgression
DOI:
doi:10.5061/dryad.f6r55
摘要:
of species boundaries between Pinus strobiformis and P. flexilis. Utilizing ecological niche modeling, demographic modeling, and genomic cline analyses, we illustrated
Data from: Declines in low-elevation subalpine tree populations outpace growth in high-elevation populations with warming
负责人:
关键词:
demographic model;Picea engelmannii Parry ex. Engelm;treeline;time lag;Holocene\/Anthropocene;Pinus flexilis James;subalpine forest;range shift;conifer;climate change
DOI:
doi:10.5061/dryad.q1f65
摘要:
ecially in the presence of increased moisture – and rapid establishment above treeline, and, ultimately, expansion into the alpine. 4. Synthesis. Assuming 21st century warming
Data from: Tracing the footprints of a moving hybrid zone under a demographic history of speciation with gene flow
负责人:
关键词:
conservation genetics;hybrid zone;range dynamics;forestry;hybridization;cline analyses;Population Genetics - Empirical
DOI:
doi:10.5061/dryad.qp59ck8
摘要:
spatio-temporal changes in the central location of a hybrid zone between two recently diverged species of pines: Pinus strobiformis and P. flexilis. By comparing geographic
Data from: Morphological and moisture availability controls of the leaf area-to-sapwood area ratio: analysis of measurements on Australian trees
负责人:
关键词:
Eucalyptus regnans;Pultenea flexilis;Hakea teretifolia;Eremophila longifolia;Calamus australis;Lomatia silaifolia;Boronia pinnata;Eucalyptus sclerophylla;Alstonia muelleriana;Eucalyptus socialis;Pimelea microcephala;sapwood area;Leptospermum rupestre;Aegiceras corniculatum;tree morphology;Acacia colletioides;Cryptocarya mackinnoniana;Eucalyptus crebra;Calamus caryotoides;Banksia littoralis;Eremophila glabra;Eucalyptus intertexta;Persoonia linearis;Ceratopelatum sucirubrum;Richea scoparium;Eucalyptus haemostoma;Olearia pimelioides;Acacia mearnsii;Bertya cunninghamii;Acacia myrtifolia;Eucalyptus polybractea;Eucalyptus delegatensis;Geijera parviflora;Philotheca difformis;Leucopogon esquamatus;Angophora costata;Holocene;climatic moisture;Avicennia marina;Isopogon anemonifolius;Persoonia levis;Eucalyptus occidentalis;Leucopogon microphyllus;Argyrodendron trifoliolatum;Eucalyptus miniata and Eucalyptus tetrodonta;Castanospora alphandii;Doryphora aromatica;Dillwynia retorta;Corymbia gummifera;Eucalyptus miniata;Acacia floribunda;Nothofagus cunninghamii;Pultenaea stipularis;Acacia suaveolens;Angophora hispida;Syncarpia glomulifera;Callitris glaucophylla;Eucalyptus tetrodonta;Diselma archeri;Alphitonia whitei;Eucalyptus sieberi;Brachychiton australis;Hakea tephrosperma;Melaleuca uncinata;Astrotricha floccosa;pipe model;Phyllanthus hirtellus;Doryphora sassafras;Leptospermum trinervium;plant hydraulics;Beyeria opaca;Glochidion ferdinandi;Acacia wilhelmiana;Tasmannia lanceolata;Santalum acuminatum;Brachychiton populneus;Epacris pulchella;Eucalyptus loxophleba;Acacia doratoxylon;Argyrodedron trifoliolatum;Eucalyptus nitens;Banksia integrifolia;Eriostemon australasius;Pinus radiata;Cassinia laevis;Eucalyptus maculata;Flindersia brayleyana;Micrantheum ericoides;Acacia dealbata;Dodonaea viscosa;Angophora bakeri;Banksia attenuata;Grevillea speciosa;Corymbia opaca;Gompholobium glabratum;Syzygium johnsonii;Eremophila deserti;Eucalyptus marginata;Angophora hispida; Banksia oblongifolia;Podocarpus lawrencei;Dodonaea viscosa spathulata;Senna artemisioides;Lasiopetalum ferrugineum;Persoonia pinifolia;Eucalyptus camaldulensis;Pultenaea elliptica;Banksia spinulosa;Acacia havilandii;Eutaxia microphylla;Austromyrtus bidwillii;Eucalyptus populnea;Gillbeea adenopetala;Eucalyptus victrix;Persoonia lanceolata;Eucalyptus capitellata;Phyllota phylicoides;Baeckea brevifolia;Eucalyptus gomphocelia;Leptospermum squarrosum;Eucalyptus dumosa;Acacia aneura;Banksia menziesii;Eucalyptus globulus;Eucalyptus coccifera;Ceratopetalum apetalum;Synoum glandulosum;Cissus hypoglauca;Eucalyptus kochii;Epacris microphylla;Olearia decurrens;Boronia ledifolia;Hibbertia bracteata;Phyllocladus aspleniifolius;Petrophile pulchella;Olearia oswaldii;Banksia ilicifolia;Cardwellia sublimis;Lambertia formosa;Hakea dactyloides;Cochlospermum gillivraei;Eucalyptus largiflorens;Alphitonia excelsa;Banksia oblongifolia;Eucalyptus grandis;Pomaderris aspera;Bossiaea obcordata;Atherosperma moschatum;leaf area;Acacia havilandiorum
DOI:
doi:10.5061/dryad.m7m4r
摘要:
1. The leaf area-to-sapwood area ratio (LA:SA) is a key plant trait that links photosynthesis to transpiration. The pipe model theory states tha

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