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Data from: Genetic diversity, population structure and sex-biased dispersal in three co-evolving species
负责人:
关键词:
Leptothorax acervorum;ants;population genetics;Leptothorax muscorum;population structure;Coevolution;Harpagoxenus sublaevis;Host-parasite interaction;sex-biased dispersal;phylogeography
DOI:
doi:10.5061/dryad.8309
摘要:
and population structure of three closely related European ant species: the social parasite Harpagoxenus sublaevis and its two host species Leptothorax acervorum and Leptothorax
Data from: Queen-worker ratio affects reproductive skew in a socially polymorphic ant
负责人:
关键词:
Leptothorax reproductive skew dominance reproductive potential polygyny
DOI:
doi:10.5061/dryad.4kn32
摘要:
and environmental changes. Most models predict a decrease of skew when benefits of staying in the group are reduced. In the ant Leptothorax acervorum, queens in colonies from
Data from: Enriching the ant tree of life: enhanced UCE bait set for genome-scale phylogenetics of ants and other Hymenoptera
负责人:
关键词:
Wasmannia auropunctata;Formica podzolica;Harpegnathos saltator;Myrcidris epicharis;Acromyrmex echinatior;Aneuretus simoni;Crematogaster nigropilosa;Bombus impatiens;Cephalotes atratus;Prionopelta amabilis;molecular systematics;Aculeata;Gnamptogenys minuta;Dolichoderus lamellosus;Pepsis grossa;Tetheamyrma sp;Patagonomyrmex angustus;Fulakora orizabana;Hypoponera nitidula;Diacamma rugosum;Eurhopalothrix gravis;Adelomyrmex marginodus;Vollenhovia emeryi;Protanilla sp;Neogene;Adelomyrmex dentivagans;Acanthognathus ocellatus;Gnamptogenys simulans;Ponera coarctata;Hylomyrma dentiloba;Solenopsis invicta;Camponotus floridanus;Linepithema humile;Pogonomyrmex occidentalis;Neoponera unidentata;Stegomyrmex manni;Stenamma alas;Next-generation sequencing;ultraconserved elements;Odontomachus meinerti;Acanthoponera minor;Tatuidris tatusia;targeted enrichment;Adelomyrmex longinoi;Mayaponera constricta;Nothomyrmecia macrops;Pheidole fimbriata;Cataulacus egenus;Pogonomyrmex barbatus;Temnothorax nevadensis;Paleogene;Pseudoponera stigma;Cyphomyrmex rimosus;Tapinoma sessile;Leptomyrmex erythrocephalus;Tetraponera aethiops;Megachile rotundata;Aphaenogaster phalangium;Apis mellifera;Lasius sitiens;Basiceros manni;Myrmecia fulvipes;Formicidae;Apomyrma sp;Pachycondyla harpax;Sceliphron caementarium;Ooceraea biroi;Solenopsis bicolor;Perissomyrmex snyderi;Brachycistis timberlakei;Eciton burchellii;Rogeria belti;Lasioglossum albipes;Leptothorax muscorum;Dinoponera longipes;Myrmica incompleta;Hymenoptera;Manica hunteri;Proceratium mancum;Lasius niger;Rhopalothrix isthmica;Platythyrea punctata;Tetraponera allaborans;Philidris sp;Mischocyttarus flavitarsis;Simopelta andersoni;Gauromyrmex bengakalisi;Veromessor lobognathus;Nesomyrmex pleuriticus;Octostruma amrishi;Myrmecia varians;Goniomma blanci;phylogenomics;Myrmelachista joycei;Parvaponera darwinii;Atta cephalotes;Aphaenogaster occidentalis;Tetraponera nodosa;Discothyrea horni complex;Monomorium pharaonis;Paraponera clavata;Pristomyrmex bicolor;Evolution;Cretaceous;Cryptopone butteli;Ectatomma gibbum;Pseudomyrmex spinicola;Cardiocondyla obscurior;Syscia augustae;Myrmicocrypta sp;Pseudomyrmex gracilis;Apterostigma dentigerum
DOI:
doi:10.5061/dryad.89n87
摘要:
data sets. 3. The updated bait design (hym-v2) contained a total of 2,590-targeted UCE loci for Hymenoptera, significantly increasing the number of loci

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