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Data from: Geographic and temporal dynamics of a global radiation and diversification in the killer whale
负责人:
关键词:
population genetics;mitogenome;SNPs;Orcinus orca;phylogeography;Pleistocene
DOI:
doi:10.5061/dryad.fm4mk
摘要:
range expansions and contractions in some species. These dynamics have played a major role in geographic radiations, diversification and speciation. We investigate
Data from: Selection and genomic differentiation during ecological speciation: isolating the contributions of host association via a comparati
负责人:
关键词:
herbivorous insects;current;Population Divergence;reproductive isolation;divergent natural selection;Neochlamisus bebbianae;AFLPs;speciation genetics
DOI:
doi:10.5061/dryad.ng09t
摘要:
, and low linkage disequilibrium indicated that these outliers derived from multiple regions of the genome. Outliers were further classified as "host-specific
Water quality data for well, stream, and seep samples from the Harford Teaching and Research Farm (Cortland County, NY): 1974-1994
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关键词:
DOI:
doi:10.5063/aa/gss1.18.1
摘要:
of N. Imports of N were 93 mt indicating a large excess of inputs relative to outputs. For comparison, a nitrogen balance for the adjacent Fall Creek watershed
Data from: Molecular and iridescent feather reflectance data reveal recent genetic diversification and phenotypic differentiation in a cloud forest
负责人:
关键词:
Feather iridescence;Lampornis amethystinus;glacial cycles;Pleistocene
DOI:
doi:10.5061/dryad.88589
摘要:
ons in geographic isolation, and (3) evaluate a set of divergence scenarios and demographic patterns of the hummingbird populations. Analysis of genetic variation revealed
Data from: Phylogeographical patterns of an alpine plant, Rhodiola dumulosa (Crassulaceae), inferred from chloroplast DNA sequences
负责人:
关键词:
glacial refugia;migration Subject area: Population structure and phylogeography;Migration;cpDNA haplotypes;Population structure and phylogeography;phylogeography
DOI:
doi:10.5061/dryad.5v1r5
摘要:
on was significantly large (F ST = 0.8537, P < 0.001), possibly due to the long-term isolation of the natural populations. N ST was significantly larger tha
Data from: Gene flow by larval dispersal in the Antarctic notothenioid fish Gobionotothen gibberifrons
负责人:
关键词:
microsatellites;Notothenioidei;population genetics;drifters;adaptive radiation;isolation-with-migration model;Holocene;Gobionotothen gibberifrons;Pleistocene
DOI:
doi:10.5061/dryad.1351
摘要:
The diversification of the teleost suborder Notothenioidei (Perciformes) in Antarctic waters provides one of the most striking examples of a marine
Data from: Quantifying cryptic function loss during community disassembly
负责人:
关键词:
Agriculture;Ecosystem service;watershed;bivalve;stream;Animal behavior;water purification
DOI:
doi:10.5061/dryad.82b5k7s
摘要:
sity loss, influence community-level water clearance rates of freshwater mussels via behavioral (changes in mass-specific clearance rate) and population (change
Data from: Impact of hydromorphological pressures on the macrophytes bioindicators of the ecological water quality in Mediterranean rivers
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关键词:
Corymbia citriodora;Euphorbia sp;Carthamus caeruleus;Silybum marianum;Tamarix canariensis;Ceratophyllum sp;Verbena sp;Lythrum junceum;Anagallis arvensis;Cynodon dactylon;Scolymus hispanicus;Cirsium echinatum;bioindicators;Cuscuta pentagona;Mentha pulegium;Juncus acutus;Pistacia lentiscus;Scorpiurus sp;Centaurea calcitrapa;Juncus rigidus;Asteriscus aquaticus;Heliotropium supinum;Datura sp;Visnaga daucoides;Solanum dulcamara;Xanthium spinosum;Pulicaria arabica;Eryngium campestre;Piptatherum miliaceum;Chenopodium sp;Hydrological Basin of Sebou (HBS);Eryngium glaciale;Adonis aestivalis;Sonchus maritimus;Marrubium vulgare;Rubus ulmifolius;Carduus pycnocephalus;Crataegus azarolus;Lythrum acutangulum;Lavandula multifida;Trifolium dubium;Bituminaria bituminosa;Turgenia latifolia;Rumex crispus;Aster squamatus;Scirpus sp;Populus nigra;Potentilla reptans;Fraxinus excelsior;Trifolium sp;Ranunculus bulbosus;Glebionis coronaria;Epilobium hirsutum;Sonchus asper;Mentha rotundifolia;Tamarix aphylla;Stachyurus salicifolius;Crataegus sp;Cyperus longus;Lolium multiflorum;Nerium oleander;Pennisetum setaceum;Scrophularia auriculata;Cynoglossum creticum;Arundo donax;Onopordum sp;Verbascum blattaria;Juniperus sp;Xanthium strumarium;Berula erecta;Trachelium caeruleum;Stachys ocymastrum;Tamarix boveana;Carlina vulgaris;Potamogeton nodosus;Ricinus communis;Elodea sp;Verbena officinalis;Cichorium intybus;Vitex agnus-castus;Tamarix africana;Anacyclus clavatus;Bromus tectorum;Ononis spinosa;Checklist;Heterotheca subaxillaris;Dittrichia viscosa;Erigeron canadensis;Phragmites australis;Persicaria maculosa;Peganum harmala;Samolus valerandi;Catananche caerulea;Pallenis spinosa;Reseda luteola;Ludwigia palustris;Ziziphus lotus;Mantisalca sp;Crataegus monogyna;Ammi majus;Festuca arundinacea;Cladanthus arabicus;Cynodon sp;Plantago coronopus;Potamogeton sp;Filago pyramidata;Portulaca oleracea;Onopordum macracanthum;Carduus tenuiflorus;Porophyllum ruderale;Polypogon viridis;Hibiscus syriacus;Mentha longifolia;Teucrium spinosum;Echium plantagineum;Ecological Water Quality;Plantago lagopus;Erigeron sp;Lolium rigidum;Veronica beccabunga;Paronychia argentea;Geranium dissectum;Polygonum aviculare;Cyperus rotundus;Vachellia karroo;Paspalum sp;Scolymus maculatus;Trifolium fragiferum;Rumex palustris;Isatis tinctoria;Adiantum capillus-veneris;Polypogon monspeliensis;Potamogeton pectinatus;Polycarpon tetraphyllum;Lemna gibba;Calendula officinalis;Zannichellia palustris;Verbascum sinuatum;Convolvulus arvensis;Sonchus sp;Alopecurus pratensis;Malva sp;Trifolium stellatum;Rapistrum rugosum;Lolium sp;Plantago major;Euphorbia cossoniana;Thymelaea virgata;Ficus carica;Chenopodium album;Malva parviflora;Anacyclus homogamos;Tamarix gallica;Verbascum sp;Vachellia gummifera;Apium repens;Equisetum ramosissimum;Helosciadium repens;Raphanus raphanistrum;Amaranthus retroflexus;Eryngium sp;Panicum repens;Helosciadium nodiflorum;Hordeum marinum;Asclepias curassavica;Glyceria notata;macrophytes;Morus sp;Pulicaria sp;Chara sp;Aegilops geniculata;Lemna sp;Persicaria lapathifolia;Mentha suaveolens;Foeniculum vulgare;Solanum lycopersicum;Heliotropium europaeum;Centaurium pulchellum;Pistia stratiotes;Papaver rhoeas;Typha angustifolia;Erodium cicutarium;Quercus sp;Celtis australis;Hygrohypnum luridum;Sonchus aquatilis;Campanula sp;Datura stramonium;Herniaria cinerea;Rumex conglomeratus;Polygonum sp;Torilis nodosa;Verbascum thapsus;Campanula mairei;Hypericum pubescens;aquatic plants;Rumex sp;Amaranthus sp;Mentha aquatica;Agrostis stolonifera;Bunium alpinum;Hieracium racemosum;Hirschfeldia incana;Antirrhinum sp;Dittrichia graveolens;Trifolium campestre;Chrozophora tinctoria;Lepidium draba;Paspalum vaginatum;Anchusa azurea;Erigeron bonariensis;Nasturtium officinale;Glinus lotoides;Centaurea aspera
DOI:
doi:10.5061/dryad.q727ff4
摘要:
One of the important tools to evaluate the ecological quality of surface water is the Macrophytes indices based on the bioindication capacity
Data from: Seasonality promotes grassland diversity: interactions with mowing, fertilization and removal of dominant species
负责人:
关键词:
water use efficiency;grassland management;diversity-productivity relationship;Functional traits;biodiversity decline;Specific leaf area;plant resource-use strategy;seasonal dynamics
DOI:
doi:10.5061/dryad.hm6nr2c
摘要:
, and increased water use (?13C) and nutrient acquisition (?15N) efficiency in resource-retentive subordinates, best predicted their temporal niche separation

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