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Data from: How well do molecular and pedigree relatedness correspond, in populations with variable mating systems, and types and quantities
负责人:
关键词:
identity by descent (IBD);intrinsic population characteristics;relatedness;pedigree reconstruction;relatedness category assignment
DOI:
doi:10.5061/dryad.sr61r
摘要:
rs. We investigated the effects of the number of genetic markers; marker type (microsatellite, single nucleotide polymorphism SNP, or both); mi
Data from: Reliability assessment of null allele detection: inconsistencies between and within different methods
负责人:
关键词:
Rodentia;genotypes;root vole;genotyping errors;microsatellite loci;Microtus oeconomus;Heterozygosity;bottleneck;simulated genotypes;tundra vole;Arvicolidae;null alleles;natural populations
DOI:
doi:10.5061/dryad.4p41m
摘要:
Microsatellite loci are widely used in population genetic studies, but the presence of null alleles may lead to biased results. Here, we assessed
Data from: Incongruence between mtDNA and nuclear data in the freshwater mussel genus Cyprogenia (Bivalvia: Unionidae) and its impact
负责人:
关键词:
population genetics;conservation;unionid;Cyprogenia aberti;Cyprogenia stegaria;mito-nuclear discordance
DOI:
doi:10.5061/dryad.n4r2t
摘要:
d for systematic revision. We generated a novel dataset consisting of 10 microsatellite loci and combined it with sequence data from the mitochondrial ND1 gene for 223
Data from: Broad-scale genetic patterns of New Zealand abalone, Haliotis iris, across a distribution spanning 13° latitude and major oceanic
负责人:
关键词:
microsatellite;abalone;P?ua;population genetic structure;Haliotis iris;Holocene
DOI:
doi:10.5061/dryad.575p1
摘要:
, cultural and recreational species by genotyping nine microsatellite loci in 485 p?ua from 27 locations distributed across mainland New Zealand
Data from: A rapid and cost-effective quantitative microsatellite genotyping protocol to estimate intraspecific competition in pro
负责人:
关键词:
Oxyrrhis marina
DOI:
doi:10.5061/dryad.dc7s2
摘要:
ng experiments. Here we present a molecular method, quantitative microsatellite genotyping, to accurately quantify strain specific frequencies fro
Data from: Comparative evaluation of potential indicators and temporal sampling protocols for monitoring genetic erosion
负责人:
关键词:
conservation genetics;Simulation;Theoretical Population Genetics;Holocene;Conservation Biology;population dynamics
DOI:
doi:10.5061/dryad.2m397
摘要:
er and arrangement of temporal samples had small effect. Sampling 50 individuals at as few as two time points with 20 microsatellites performed well (good power
Data from: No clear effect of admixture between two European invading outbreaks of Diabrotica virgifera virgifera in natura
负责人:
关键词:
sample locations;phenotypic data;microsattelite data
DOI:
doi:10.5061/dryad.758d0
摘要:
m this contact zone and genotyped them using 13 microsatellite markers. Three types of information were obtained from the collected individuals: (i) their survival
Data from: Genetic diversity and population structure of the tsetse fly Glossina fuscipes fuscipes (Diptera: Glossinidae) in Northern Uganda
负责人:
Saarman, Norah P.
关键词:
population structure
DOI:
doi:10.5061/dryad.20b01
摘要:
diseases as well for the animal African Trypanosomiasis (AAT), or Nagana. We used highly polymorphic microsatellite loci and a mi
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:
samples. Discussion: The protocol allows efficient genotyping of many samples. The ptSSR loci are too variable for Pinus phylogenies but are use

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