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http://www.daimi.au.dk/%7Emailund/SNPFile/
Software library and API for manipulating large SNP datasets with associated meta-data, such as marker names, marker locations, individuals'' phenotypes, etc. in an I/O efficient binary file format. In its core, SNPFile assumes very little about the metadata associated with markers and individuals, but leaves this up to application program protocols. (entry from Genetic Analysis Software)
Proper citation: SNPFILE (RRID:SCR_009402) Copy
http://www.plexdb.org/index.php
PLEXdb (Plant Expression Database) is a unified gene expression resource for plants and plant pathogens. PLEXdb is a genotype to phenotype, hypothesis building information warehouse, leveraging highly parallel expression data with seamless portals to related genetic, physical, and pathway data. The integrated tools of PLEXdb allow investigators to use commonalities in plant biology for a comparative approach to functional genomics through use of large-scale expression profiling data sets.
Proper citation: PLEXdb - Plant Expression Database (RRID:SCR_006963) Copy
http://rarediseases.info.nih.gov/GARD/Default.aspx
Genetic and Rare Diseases Information Center (GARD) is a collaborative effort of two agencies of the National Institutes of Health, The Office of Rare Diseases Research (ORDR) and the National Human Genome Research Institute (NHGRI) to help people find useful information about genetic conditions and rare diseases. GARD provides timely access to experienced information specialists who can furnish current and accurate information about genetic and rare diseases. So far, GARD has responded to 27,635 inquiries on about 7,147 rare and genetic diseases. Requests come not only from patients and their families, but also from physicians, nurses and other health-care professionals. GARD also has proved useful to genetic counselors, occupational and physical therapists, social workers, and teachers who work with people with a genetic or rare disease. Even scientists who are studying a genetic or rare disease and who need information for their research have contacted GARD, as have people who are taking part in a clinical study. Community leaders looking to help people find resources for those with genetic or rare diseases and advocacy groups who want up-to-date disease information for their members have contacted GARD. And members of the media who are writing stories about genetic or rare diseases have found the information GARD has on hand useful, accurate and complete. GARD has information on: :- What is known about a genetic or rare disease. :- What research studies are being conducted. :- What genetic testing and genetic services are available. :- Which advocacy groups to contact for a specific genetic or rare disease. :- What has been written recently about a genetic or rare disease in medical journals. GARD information specialists get their information from: :- NIH resources. :- Medical textbooks. :- Journal articles. :- Web sites. :- Advocacy groups, and their literature and services. :- Medical databases.
Proper citation: Genetic and Rare Diseases Information Center (RRID:SCR_008695) Copy
http://www.roslin.ed.ac.uk/alan-archibald/porcine-genome-sequencing-project/
Map of identifyied genes controlling traits of economic and welfare significance in the pig. The project objectives were to produce a genetic map with markers spaced at approximately 20 centiMorgan intervals over at least 90% of the pig genome; to produce a physical map with at least one distal and one proximal landmark locus mapped on each porcine chromosome arm and also genetically mapped; to develop a flow karyotype for the pig based on FACS sorted chromosomes; to develop PCR based techniques to enable rapid genotyping for polymorphic markers; to evaluate synteny conservation between pigs, man, mice and cattle; to develop and evaluate the statistical techniques required to analyze data from QTL mapping experiments and to plan and initiate the mapping of QTLs in the pig; to map loci affecting traits of economic and biological significance in the pig; and to develop the molecular tools to allow the future identification and cloning of mapped loci. Animal breeders currently assume that economically important traits such as growth, carcass composition and reproductive performance are controlled by an infinite number of genes each of infinitessimal effect. Although this model is known to be unrealistic, it has successfully underpinned the genetic improvement of livestock, including pigs, over recent decades. A map of the pig genome would allow the development of more realistic models of the genetic control of economic traits and the ultimately the identification of the major trait genes. This would allow the development of more efficient marker assisted selection which may be of particular value for traits such as disease resistance and meat quality.
Proper citation: Pig Genome Mapping (RRID:SCR_012884) Copy
Research forum portal to address brain status by acquiring comprehensive, multimodal data from healthy humans across the lifespan to characterize brain status, assess its change over time, and associate composite descriptors of brain status. Specifically, the measurements are acquired noninvasively by existing neuroimaging technologies (structural MRI, functional MRI, magnetic resonance spectroscopy, diffusion MRI, and magnetoencephalography); in addition, genetic, cognitive, language, and lifestyle data are acquired. Goals: * Derive the Brain Health Index- An integrative assessment of brain status derived from multimodal measurements of brain structure, function, and chemistry. * Continue acquiring data to construct the first-ever databank on brain, cognitive, language and genetic measurements for healthy people across the lifespan. * Provide a novel and unique dataset by which to: characterize brain status, assess its change over time, and associate it with genetic makeup, cognitive function, and language abilities. * Forecast future brain health and disease based on current measurements and guide physicians towards new interventions and evaluate interventions as they develop. * Extend to siblings and other family members to further assess the genetic influences and inheritability.
Proper citation: HBP: Healthy Brain Project (RRID:SCR_013137) Copy
https://atgu.mgh.harvard.edu/plinkseq/
An open-source C/C++ library for working with human genetic variation data. The specific focus is to provide a platform for analytic tool development for variation data from large-scale resequencing projects, particularly whole-exome and whole-genome studies. However, the library could in principle be applied to other types of genetic studies, including whole-genome association studies of common SNPs. (entry from Genetic Analysis Software)
Proper citation: PLINK/SEQ (RRID:SCR_013193) Copy
A custom genome browser which provides detailed answers to questions on the haplotype diversity and phylogenetic origin of the genetic variation underlying any genomic region of most laboratory strains of mice (both classical and wild-derived). Users can select a region of the genome and a set of laboratory strains and/or wild caught mice. The region is selected by specifying the start (e.g. 31200000 or 31200K or 31.2M), and end of the interval and the chromosome (i.e, autosome number and X chromosome). Samples can be selected by name or by entire set. Data sets include information on subspecific origin, heterozygosity regions, and haplotype coloring, among others.
Proper citation: Mouse Phylogeny Viewer (RRID:SCR_014071) Copy
A blog that contains reviews and information on PCR methods, applications and technology. Topics include tips and advice, troubleshooting, optimization and up-to-date information on the polymerase chain reaction.
Proper citation: PCR Blog (RRID:SCR_000919) Copy
http://www.people.fas.harvard.edu/~junliu/em/em.htm
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on July 31,2025. A haplotype inference program.
Proper citation: EM-DECODER (RRID:SCR_000023) Copy
http://lpg.nci.nih.gov/lpg_small/protocols/HapScope/
Software application that includes a comprehensive analysis pipeline and a sophisticated visualization tool for analyzing functionally annotated haplotypes. (entry from Genetic Analysis Software)
Proper citation: HAPSCOPE (RRID:SCR_000838) Copy
http://mlemire.freeshell.org/software.html
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on April 6th,2023. Software application with implementation of the Sad statistic, more robust to transmission ratio distortion in the context of allele sharing (entry from Genetic Analysis Software)
Proper citation: GENEHUNTER SAD (RRID:SCR_000831) Copy
http://cedar.genetics.soton.ac.uk/pub/PROGRAMS/comds
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on August 30,2022. Software application for combined segregation and linkage analysis, incorporating severity and diathesis. (entry from Genetic Analysis Software)
Proper citation: COMDS (RRID:SCR_000832) Copy
http://www.genetics.emory.edu/labs/epstein/software/chaplin/index.html
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 23,2022.Software application for identifying specific haplotypes or haplotype features that are associated with disease using genotype data from a case-control study. (entry from Genetic Analysis Software)
Proper citation: CHAPLIN (RRID:SCR_000833) Copy
http://compgen.rutgers.edu/crimap.shtml
Software application for constructing multilocus linkage map (entry from Genetic Analysis Software)
Proper citation: CRIMAP (RRID:SCR_000834) Copy
Issue
https://cran.r-project.org/web/packages/adegenet/index.html
Software package dedicated to the handling of molecular marker data for multivariate analysis. This package is related to ADE4, a R package for multivariate analysis, graphics, phylogeny and spatial analysis. (entry from Genetic Analysis Software)
Proper citation: ADEGENET (RRID:SCR_000825) Copy
http://research.i2r.a-star.edu.sg:8080/kleisli/demos/pedigree/
Software application (entry from Genetic Analysis Software)
Proper citation: PEDIGREE-VISUALIZER (RRID:SCR_000842) Copy
http://vorlon.case.edu/~jxl175/haplotyping.html
THIS RESOURCE IS NO LONGER IN SERVICE.Documented on August 23,2022. Software application for inferring haplotypes from genotypes on pedigree data (entry from Genetic Analysis Software)
Proper citation: PEDPHASE (RRID:SCR_000843) Copy
http://animalgene.umn.edu/locusmap/index.html
Software package designed for rapid linkage analysis and map construction of loci with a variety of inheritance modes. (entry from Genetic Analysis Software)
Proper citation: LOCUSMAP (RRID:SCR_000840) Copy
http://www-genome.wi.mit.edu/ftp/pub/software/rhmapper/
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on August 30, 2022. An interactive software program for radiation hybrid mapping (entry from Genetic Analysis Software)
Proper citation: RHMAPPER (RRID:SCR_000845) Copy
http://csbio.unc.edu/CCstatus/index.py
Core focused on systems genetics approach to understanding diseases, development, aging, and fertility in mouse. Projects range from development of new community resources, such as Collaborative Cross, to development of tools and assays for measuring genetic diversity and discerning genomic structure. Collaborative Cross is reference population for mapping multigenic traits that would be free of population structure and it is new panel of recombinant inbred lines generated by randomizing genetic diversity of existing inbred mouse resources.
Proper citation: University of North Carolina Systems Genetics Core Facility (RRID:SCR_016401) Copy
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