Mind the gap: analysis of marker-assisted breeding strategies for inbred mouse strains.

scientific article

Mind the gap: analysis of marker-assisted breeding strategies for inbred mouse strains. is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

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P356DOI10.1007/S00335-005-0123-Y
P698PubMed publication ID16596449

P50authorTerry SpeedQ7705033
Thomas C BrodnickiQ42563447
Nicola J. ArmstrongQ80566668
P2860cites workTheoretical and empirical issues for marker-assisted breeding of congenic mouse strainsQ28253396
Genetic dissection of complex traitsQ29618312
Genome-tagged mice (GTM): two sets of genome-wide congenic strainsQ30990569
Genealogies of mouse inbred strainsQ33806120
Analysing complex genetic traits with chromosome substitution strainsQ33853268
Discovering the role of the major histocompatibility complex in the immune responseQ33932662
A linkage map of mouse chromosome 12: localization of Igh and effects of sex and interference on recombination.Q33954907
Using markers in gene introgression breeding programsQ33960239
Chiasma interference as a function of genetic distanceQ33960583
Marker-assisted introgression in backcross breeding programsQ33969193
Genotype Selection to Rapidly Breed Congenic StrainsQ33970280
Early Generation Analysis of Lengths of Heterozygous Chromosome Segments around a Locus Held Heterozygous with Backcrossing or Selfing.Q33977353
Effect of the genetic background on the phenotype of mouse mutationsQ34077419
Complex trait analysis in the mouse: The strengths, the limitations and the promise yet to comeQ34090825
Mice that are congenic for the char2 locus are susceptible to malaria.Q34127883
Congenic strains developed for alcohol- and drug-related phenotypesQ34134356
Modifier genes in mice and humansQ34188131
Mice with targeted gene disruptions or gene insertions for diabetes research: problems, pitfalls, and potential solutionsQ34577495
The length of the intact donor chromosome segment around a target gene in marker-assisted backcrossingQ34612141
Crossover interference in the mouse.Q34614613
Progress in high throughput SNP genotyping methodsQ34670684
Complex genetic control of susceptibility to malaria in miceQ34679667
Using mouse models to dissect the genetics of obesityQ34750310
Genetics of autoimmune diseases in humans and in animal modelsQ34987317
Alcohol and genetics: new modelsQ35011825
Congenic mice: cutting tools for complex immune disordersQ35092551
Where the crossovers are: recombination distributions in mammals.Q35778662
B lymphocytes are essential for the initiation of T cell-mediated autoimmune diabetes: analysis of a new "speed congenic" stock of NOD.Ig mu null miceQ36367653
Type-I interferon receptor deficiency reduces lupus-like disease in NZB miceQ36370602
Studies of consomic mice bearing the Y chromosome of the BXSB mouseQ41382497
Speed congenics: a classic technique in the fast lane (relatively speaking).Q41632964
Size of donor chromosome segments around introgressed loci and reduction of linkage drag in marker-assisted backcross programs.Q41896200
Marker-assisted introgression of quantitative trait lociQ41904106
The Sgp3 locus on mouse chromosome 13 regulates nephritogenic gp70 autoantigen expression and predisposes to autoimmunity.Q42450359
Congenic mapping of the diabetogenic locus Idd4 to a 5.2-cM region of chromosome 11 in NOD mice: identification of two potential candidate sublociQ43786589
ICA69(null) nonobese diabetic mice develop diabetes, but resist disease acceleration by cyclophosphamide.Q43829949
Diabetes protection and restoration of thymocyte apoptosis in NOD Idd6 congenic strainsQ44493394
Incorporating crossover interference into pedigree analysis using the chi 2 modelQ46642021
Marker-assisted congenic screening (MACS): a database tool for the efficient production and characterization of congenic linesQ47765759
Strategies to optimize marker-assisted introgression of multiple unlinked QTL.Q49068231
Genetic dissection of complex traits with chromosome substitution strains of mice.Q51005457
Functional dissection of lupus susceptibility loci on the New Zealand black mouse chromosome 1: evidence for independent genetic loci affecting T and B cell activation.Q52006346
Further mapping of the Idd5.1 locus for autoimmune diabetes in NOD miceQ56904782
Speed congenics: accelerated genome recovery using genetic markersQ57242672
A susceptibility allele from a non-diabetes-prone mouse strain accelerates diabetes in NOD congenic miceQ58233301
Congenic mapping of the insulin-dependent diabetes (Idd) gene, Idd10, localizes two genes mediating the Idd10 effect and eliminates the candidate Fcgr1Q60787779
Genetic Control of NKT Cell Numbers Maps to Major Diabetes and Lupus LociQ62230369
Localization of Idd11 using NOD congenic mouse strains: elimination of Slc9a1 as a candidate gene.Q64891039
Mapping of genetic modifiers of thymic lymphoma development in p53-knockout miceQ73015325
A marker assisted selection protocol (MASP) to generate C57BL/6J or 129S6/SvEvTac speed congenic or consomic strainsQ73266380
Development of congenics for hypnotic sensitivity to ethanol by QTL-marker-assisted counter selectionQ77765806
Methods for the study of histocompatibility genesQ79518294
P433issue4
P1104number of pages15
P304page(s)273-287
P577publication date2006-04-04
P1433published inMammalian GenomeQ1348949
P1476titleMind the gap: analysis of marker-assisted breeding strategies for inbred mouse strains
P478volume17

Reverse relations

cites work (P2860)
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Q36031610Quantitative trait locus analysis for hemostasis and thrombosis
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