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pite widespread hybridization and parthenogenesis
负责人:
关键词:
hybrid speciation;New species;Microcoryphia;incomplete lineage sorting;Archaeognatha;new synonyms;Machilis;hybrid swarm;mitochondrial introgression;gene tree discordance
DOI:
doi:10.5061/dryad.tf7qr
摘要:
affinity to hybridization, combined with parallel switches to parthenogenesis and repeated postglacial colonization events may have boosted endemicity
Data from: Extreme genetic diversity in asexual grass thrips populations
负责人:
关键词:
microsatellites;genetic diversity;Aptinothrips rufus;Parthenogenesis;gamete duplication;Asexuality;haplo-diploid;mitochondrial;nuclear;Thysanoptera;Thrips
DOI:
doi:10.5061/dryad.h8017
摘要:
populations are characterized by extremely high levels of genetic diversity, both in comparison with their sexual relatives and in comparison with other asexual
Data from: Habitat heterogeneity favors asexual reproduction in natural populations of grassthrips
负责人:
关键词:
Parthenogenesis;Evolution of Sex;Tangled Bank;Asexuality;Aptinothrips;Holocene;Thysanoptera
DOI:
doi:10.5061/dryad.h2m12
摘要:
s of sexual thrips decreased with increasing habitat heterogeneity, with sexual thrips apparently only persisting in certain types of hostplant communities
Data from: Adaptive molecular evolution of a defence gene in sexual but not functionally asexual evening primroses
负责人:
关键词:
molecular variation;permanent translocation heterozygote;Parthenogenesis;Gayophytum;Coevolution;Oenothera;genetic system;Onagraceae;gene expression
DOI:
doi:10.5061/dryad.sk94j
摘要:
molecular evolution and altered gene expression of a class I chitinase, a gene implicated in defence against pathogens, than functionally asexual evening primrose
Data from: Neutral and selection-driven decay of sexual traits in asexual stick insects
负责人:
关键词:
Timema;Parthenogenesis;trait decay;vestigialization
DOI:
doi:10.5061/dryad.sj6p8
摘要:
only regressing via drift, which may require millions of years to generate phenotypic effects. By contrast, we found parallel decay of sexual traits in females
Data from: A quantitative study of worker reproduction in queenright colonies of the Cape honey bee Apis mellifera capensis
负责人:
关键词:
arrhenotoky;kin-selection;Apis mellifera capensis;Inclusive fitness;thelytoky
DOI:
doi:10.5061/dryad.1241
摘要:
diploid female offspring via thelytokous parthenogenesis and thus produce clones of themselves. As a result, worker reproduction and tolerance towards
Data from: Self-fertilization and the role of males in populations of tadpole shrimp (Branchiopoda: Notostraca: Triops)
负责人:
关键词:
microsatellites;progeny array;Parthenogenesis;Triops newberryi;Branchiopoda;androdioecy;hermaphrodite;simulations
DOI:
doi:10.5061/dryad.0735s
摘要:
e genotyped using seven T. newberryi specific microsatellite markers to determine the relatedness between parent and offspring. Overall microsatellite diversi
Data from: Daphnia females adjust sex allocation in response to current sex ratio and density
负责人:
关键词:
population density;sex allocation;Daphnia magna;sex ratio adjustment;cyclical parthenogen
DOI:
doi:10.5061/dryad.sb269
摘要:
Cyclical parthenogenesis presents an interesting challenge for the study of sex allocation, as individuals’ allocation decisions involve bot
Data from: The effect of Wolbachia on the lifetime reproductive success of its insect host in the field
负责人:
关键词:
Host-parasite interaction;Life History Evolution;insects;Wolbachia;Spartina;Anagrus sophiae;Prokelesia
DOI:
doi:10.5061/dryad.3t30n
摘要:
that induces parthenogenesis, but its effects on the fitness of its Anagrus host are unknown. We developed a method to estimate the realized
Data from: Loss of sexual recombination and segregation is associated with increased diversification in evening primroses
负责人:
关键词:
Oenothera flava;Oenothera brandegeei;Oenothera rosea;Oenothera gaura;Clarkia virgata;Oenothera catharinensis;Oenothera mexicana;Camissoniopsis cheiranthifolia;Mating Systems;Oenothera montevidensis;Oenothera riparia;Gayophytum d. parviflorum;Oenothera heterophylla;Oenothera perennis;Clarkia rostrata;Clarkia dudleyana;Clarkia rhomboidea;Xylonagra arborea;Oenothera versicolor;Oenothera oakesiana;Oenothera xylocarpa;Chylismia eastwoodiae;Eremothera gouldii;Oenothera serrulata;Chylismia multijuga;Oenothera nuttallii;Oenothera arizonica;Clarkia stellata;Clarkia mosquinii;Taraxia ovata;Oenothera longituba;Oenothera simulans;Oenothera harringtonii;Oenothera indecora;Oenothera stricta stricta;Oenothera longissima;Clarkia amoena;Camissonia lacustris;Oenothera cordata;Sex;Eulobus californicus;Clarkia gracilis;Onagraceae;Oenothera tafiensis;Oenothera psammophila;Clarkia biloba;Oenothera siambonensis;Oenothera laciniata;Gayophytum eriospermum;Clarkia xantiana;Oenothera nana;Oenothera scabra;Oenothera parviflora;Oenothera biennis;Eremothera chamaenerioides;Oenothera brachycarpa;Oenothera pilosella;Clarkia rubicunda;Oenothera ravenii ssp chilensis;Chylismia claviformis;Oenothera anomala;Oenagraceae;Oenothera pallida;Chylismia arenaria;Oenothera xenogaura;Camissoniopsis confusa;Chylismia exilis;Oenothera paradonia;Oenothera coronopifolia;Oenothera triangulata;Clarkia epilobioides;Gayophytum micranthum;Oenothera havardii;Oenothera cavernae;Oenothera fruticosa;Oenothera villosa;Oenothera stubbei;Oenothera kunthiana;Clarkia unguiculata;Oenothera longiflora;Oenothera deltoides;Clarkia purpurea;Gayophytum racemosum;Oenothera magellanica;Camissoniopsis intermedia;Oenothera argillicola;Oenothera lindeimeri;Oenothera verrucosa;Clarkia tembloriensis;Oenothera mendocinensis;Chylismiella pterosperma;Oenothera hartwegii;Camissoniopsis proavita;speciation;Clarkia similis;Gayophytum diffusum diffusum;Oenothera berlandieri;Oenothera platanorum;Oenothera glaucifolia;Tetrapteron palmeri;Oenothera nutans;Oenothera breedlovei;Gayophytum ramosissimum;Gayophytum decipiens;Oenothera acutissima;Clarkia springvillensis;Oenothera rhombipetala;Clarkia lassenensis;Chylismia cardiophylla;Camissoniospsis pallida;Oenothera elongata;Oenothera affinis;Camissoniopsis bistorta;Oenothera jamesii;Oenothera featherstonei;Oenothera tarijensis;Oenothera tamrae;Oenothera texensis;Gayophytum humile;Oenothera santarii;Oenothera patriciae;Oenothera wigginsii;Clarkia heterandra;Clarkia borealis;Oenothera acaulis;Oenothera pubescens;Oenothera californica;Oenothera epilobiifolia;Tetrapteron graciliflorum;Chylismia parryi;Camissoniopsis lewisii;Gayophytum heterozygum;Gayophytum oligospermum;Taraxia tanacetifolia;Oenothera punae;Oenothera pennellii;Oenothera falfurriae;Oenothera mckelveyae;Oenothera mollissima;Oenothera drummondii;Clarkia breweri;Oenothera coloradensis;Oenothera lasiocarpa;Oenothera deserticola;Holmgrenia andina;Camissonia pusilla;Oenothera organensis;Oenothera curtiflora;Oenothera filipes;Clarkia imbricata;Oenothera macrosceles;Clarkia speciosa;Oenothera seifrizii;Camissoniopsis hardhamiae;Oenothera orizabae;Clarkia lewisii;Eulobus crassifolius;Camissonia campestris;Oenothera bahia-blancae;Clarkia mildrediae;Oenothera stuchii;Camissoniopsis micrantha;Oenothera demareei;Clarkia franciscana;Camissonia integrifolia;Oenothera villaricae;Oenothera centauriifolia;Chylismia atwoodii;Oenothera macrocarpa;Oenothera speciosa;Eremothera refracta;Camissoniopsis quadalupensis;Chylismia confertiflora;Chylismia scapoidea;Clarkia modesta;Eremothera nevadensis;Oenothera grandis;Oenothera primiveris;Oenothera caespitosa;Oenothera clelandii;Oenothera tubifera;Oenothera toumeyi;Clarkia australis;Oenothera hexandra;Oenothera tetraptera;Oenothera picensis ssp picensis;Chylismia heterochroma;Oenothera cinerea;Oenothera neomexicana;Oenothera canescens;Oenothera;Oenothera luciae-julianiae;Chylismia specicola;Oenothera triloba;Oenothera engelmannii;Oenothera sufrutescens;Oenothera pedunculifolia;Clarkia williamsonii;Holmgrenia hilgardii;Eulobus angelorum;Oenothera wolfii;Clarkia jolonensis;Oenothera dissecta;Oenothera multicaulis;Oenothera humifusa;Camissonia parvula;Eremothera boothii;Oenothera coryi;Chylismia megalantha;Camissonia pubens;Oenothera sinuosa;Oenothera recurva;Clarkia pulchella;Clarkia davyi;Camissonia benitensis;Oenothera muelleri;Clarkia bottae;Oenothera maysillesii;Chylismia brevipes;Clarkia tenella;Oenothera glazioviana;Camissonia dentata;Camissonia strigulosa;Chylismia walkeri;Oenothera spachiana;Clarkia concinna;Oenothera sandiana;Taraxia breviflora;Camissoniopsis robusta;Oenothera nocturna;Clarkia prostata;Oenothera suffulta;Camissonia sierrae;Camissoniopsis luciae;Oenothera odorata;Oenothera peruana;Clarkia arcuata;Oenothera boquillensis;Oenothera albicaulis;Oenothera grandiflora;Eremothera minor;Chylismia munzii;Clarkia exilis;Taraxia subacaulis;Oenothera howardii;Oenothera arida;Oenothera rivadaviae;Clarkia delicata;Camissoniopsis ignota;Parthenogenesis;Clarkia lingulata;Oenothera coquimbensis;Oenothera linifolia;Oenothera calcicola;Camissoniopsis hirtella;Camissonia kernensis;Oenothera arequipensis;Oenothera lavandulifolia;Eremothera pygmaea;Camissonia contorta;Oenothera elata;Eulobus sceptrostigma;Oenothera tubicula;Clarkia cylindrica;Oenothera grisea;Oenothera curtisii;Oenothera filiformis;Clarkia affinis
DOI:
doi:10.5061/dryad.dm690
摘要:
and Extinction) phylogenetic comparative method, which employs maximum likelihood and Bayesian techniques. We infer that net diversification rates (speciation

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