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| Resource Name | Proper Citation | Abbreviations | Resource Type |
Description |
Keywords | Resource Relationships | |||||||||||||
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SAMTOOLS Resource Report Resource Website 10000+ mentions |
SAMTOOLS (RRID:SCR_002105) | SAMtools | data analysis software, data processing software, sequence analysis software, software application, software resource, software toolkit | Original SAMTOOLS package has been split into three separate repositories including Samtools, BCFtools and HTSlib. Samtools for manipulating next generation sequencing data used for reading, writing, editing, indexing,viewing nucleotide alignments in SAM,BAM,CRAM format. BCFtools used for reading, writing BCF2,VCF, gVCF files and calling, filtering, summarising SNP and short indel sequence variants. HTSlib used for reading, writing high throughput sequencing data. | Samtools, BCFtools, HTSlib, next generation sequencing, nucleotide alignments, sequence variant, genomic, c, perl, read, alignment, nucleotide, sequence, data, process, sam, bam, cram, vcf, bcf, bio.tools |
is used by: deFuse is used by: Short Read Sequence Typing for Bacterial Pathogens is used by: ROSE is used by: Fcirc is listed by: OMICtools is listed by: Genetic Analysis Software is listed by: SNVer is listed by: Debian is listed by: bio.tools is listed by: SoftCite is related to: Platypus is related to: shovill is related to: pysam has parent organization: Wellcome Trust Sanger Institute; Hinxton; United Kingdom is parent organization of: SAMtools/BCFtools is required by: RelocaTE is required by: Wessim is required by: SL-quant is required by: smMIPfil |
NHGRI U54 HG002750; Wellcome Trust |
PMID:19505943 PMID:21903627 DOI:10.1093/bioinformatics/btp352 |
Free, Available for download, Freely available | SCR_018682, biotools:samtools, OMICS_01074, nlx_154607, OMICS_00090 | https://github.com/samtools/samtools, https://github.com/samtools/htslib, https://bio.tools/samtools, https://sources.debian.org/src/samtools/ | http://samtools.sourceforge.net/ | SCR_002105 | samtools, Samtools, Sequence Alignment Map TOOLS, SAMtools, SAM tools | 2026-09-03 04:45:09 | 33299 | |||
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La Jolla Interdisciplinary Neurosciences Center Resource Report Resource Website |
La Jolla Interdisciplinary Neurosciences Center (RRID:SCR_002772) | La Jolla Neuroscience Center Cores | access service resource, analysis service resource, biomaterial analysis service, material analysis service, material service resource, production service resource, service resource | Our NINDS Center Core Grant supports centralized resources and facilities shared by investigators with existing NINDS-funded research projects. Our Center is composed of three research cores, each of which will enrich the effectiveness of ongoing research, and promote new research directions. The three Core facilities support Electrophysiology, Neuropathology / Histology, and High-Throughput/High-Content Chemical and Genomic Library screening. By making these important Core Services available to the local Neuroscience community, the La Jolla Neurosciences Program hopes to promote the study of how the nervous system works and develop treatments for nervous system diseases. The cores and their services are available to La Jolla neuroscientists. Core services are available to NINDS-supported neuroscience projects from local investigators as well as young neuroscientists prior to obtaining their first NIH-funded grant. * Electrophysiology: SBMRI Electrophysiology ** The Electrophysiology Core consists of the Sanford-Burnham Electrophysiology Facility. This facility can perform patch-clamp intracellular and extracellular field recordings on a range of material including cultured cells and brain slices. The Sanford-Burnham facility emphasizes electrophysiological analysis of cultured cells and the detailed electrical properties of channels, receptors and recombinant proteins expressed in Xenopus oocytes or mammalian cells. * Neuropathology: UCSD Neuropathology ** The Neuropathology laboratory applies immunocytochemistry, neurochemistry, molecular genetics, transgenic models of disease, and imaging by scanning laser confocal microscopy to analysis of neurological disease in animal models. * Chemical Library Screening: SBIMR Assay Development, SBIMR Chemical Library Screening, SBIMR Cheminformatics, SBIMR High-content Screening ** The Chemical Library Screening core offers high-throughput screening (HTS) of biochemical and cell-based array using traditional HTS readouts and automated microscopy for high-content screening (HCS)> These facilities also offer array development and screening, as well as cheminformatics and medicinal chemistry., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on January 15,2026. | neuroscience, nervous system, electrophysiology, neuropathology, histology, high-throughput screening, high-content screening, chemical, genomic, chemical library screening, cheminformatics, medicinal chemistry |
has parent organization: University of California at San Diego; California; USA has parent organization: Sanford Burnham Prebys Medical Discovery Institute |
Nervous system disease | NINDS ; NIH Blueprint for Neuroscience Research |
THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-00436 | SCR_002772 | La Jolla Interdisciplinary Neuroscience Center Core (Burnham-Salk-Scripps-UCSD) | 2026-09-03 04:45:41 | 0 | |||||
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Macaque.org Resource Report Resource Website 1+ mentions |
Macaque.org (RRID:SCR_002767) | Macaque.org | data or information resource, disease-related portal, laboratory portal, organization portal, portal, research forum portal, topical portal | THIS RESOURCE IS NO LONGER IN SERVICE, documented May 10, 2017. A pilot effort that has developed a centralized, web-based biospecimen locator that presents biospecimens collected and stored at participating Arizona hospitals and biospecimen banks, which are available for acquisition and use by researchers. Researchers may use this site to browse, search and request biospecimens to use in qualified studies. The development of the ABL was guided by the Arizona Biospecimen Consortium (ABC), a consortium of hospitals and medical centers in the Phoenix area, and is now being piloted by this Consortium under the direction of ABRC. You may browse by type (cells, fluid, molecular, tissue) or disease. Common data elements decided by the ABC Standards Committee, based on data elements on the National Cancer Institute''s (NCI''s) Common Biorepository Model (CBM), are displayed. These describe the minimum set of data elements that the NCI determined were most important for a researcher to see about a biospecimen. The ABL currently does not display information on whether or not clinical data is available to accompany the biospecimens. However, a requester has the ability to solicit clinical data in the request. Once a request is approved, the biospecimen provider will contact the requester to discuss the request (and the requester''s questions) before finalizing the invoice and shipment. The ABL is available to the public to browse. In order to request biospecimens from the ABL, the researcher will be required to submit the requested required information. Upon submission of the information, shipment of the requested biospecimen(s) will be dependent on the scientific and institutional review approval. Account required. Registration is open to everyone.. Documented on June 8, 2020.Macaque genomic and proteomic resources and how they are providing important new dimensions to research using macaque models of infectious disease. The research encompasses a number of viruses that pose global threats to human health, including influenza, HIV, and SARS-associated coronavirus. By combining macaque infection models with gene expression and protein abundance profiling, they are uncovering exciting new insights into the multitude of molecular and cellular events that occur in response to virus infection. A better understanding of these events may provide the basis for innovative antiviral therapies and improvements to vaccine development strategies. | genomic, hiv, infection, proteomic, virus, simian immunodeficiency virus, influenza virus, animal model | has parent organization: University of Washington; Seattle; USA | Viral infection, Infectious disease | NCRR ; NIAID ; NHLBI ; NIDA |
THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-24370 | SCR_002767 | Macaque.org | 2026-09-03 04:45:51 | 3 | |||||
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Sal-Site Resource Report Resource Website 50+ mentions |
Sal-Site (RRID:SCR_002850) | Sal-Site | analysis service resource, data analysis service, data or information resource, database, image collection, organism-related portal, portal, production service resource, service resource, topical portal | Portal that supports Ambystoma-related research and educational efforts. It is composed of several resources: Salamander Genome Project, Ambystoma EST Database, Ambystoma Gene Collection, Ambystoma Map and Marker Collection, Ambystoma Genetic Stock Center, and Ambystoma Research Coordination Network. | gene, genomic, expressed sequence tag, blast, model organism, genome, salamander, animal model, genetic map, genetic marker, gene expression, limb regeneration, microarray, quantitative-pcr, rna-seq, nanostring, husbandry, embryo, limb, mutant, strain, neural, olfaction, phentotype, regeneration, renal, retina, sequence, vision, human, chicken, xenopus tropicalis, FASEB list | has parent organization: University of Kentucky; Kentucky; USA | NCRR R24 RR016344; NIH Office of the Director R24 OD010435; NSF DBI0443496; NSF OB0242833 |
PMID:16359543 | Free, Freely available | nif-0000-25309 | https://orip.nih.gov/comparative-medicine/programs/vertebrate-models | SCR_002850 | Ambystoma Resources for Model Amphibians Database | 2026-09-03 04:45:56 | 92 | ||||
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GoatMap Database Resource Report Resource Website |
GoatMap Database (RRID:SCR_008144) | data or information resource, data repository, database, portal, service resource, storage service resource, topical portal | THIS RESOURCE IS NO LONGER IN SERVICE, documented on July 16, 2013. This website contains information about the mapping of the caprine genome. It contains loci list, phenes list, cartography, gene list, and other sequence information about goats. This website contains 731 loci, 271 genes, and 1909 homologue loci on 112 species. It also allows users to summit their own data for Goatmap. ARK-Genomics is not-for-profit and has collaborators from all over the world with an interest in farm animal genomics and genetics. ARK-Genomics was initially set up in 2000 with a grant awarded from the BBSRC IGF (Investigating Gene Function) initiative and from core resources of the Roslin Institute to provide a laboratory for automated analysis of gene expression using state-of-the-art genomic facilities. Since then, ARK-Genomics has expanded considerably, building up considerable expertise and resources. | farm, gene, animal, caprine, cartography, genome, genomic, goat, homologue, locus, map, mapping, phene, sequence | THIS RESOURCE IS NO LONGER IN SERVICE | nif-0000-20978 | SCR_008144 | GoatMap | 2026-09-03 04:49:34 | 0 | |||||||||
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Bacterial Genomes Resource Report Resource Website 10+ mentions |
Bacterial Genomes (RRID:SCR_008141) | data analysis software, data or information resource, data processing software, database, software application, software resource | This website includes a list of projects that the Sanger Institute is currently working on or completed. All projects consist of the genomic sequencing of different bacteria. Each description of the bacteria includes its classification, a description, and the types of diseases that the bacteria is likely to cause. The Sanger Institute bacterial sequencing effort is concentrated on pathogens and model organisms. Data is accessible in a number of ways; for each organism there is a BLAST server, allowing users to search the sequences with their own query and retrieve the matching contigs. Sequences can also be downloaded directly by FTP. Data is accessible in a number of ways; for each organism there is a BLAST server, allowing you to search the sequences with your own query and retrieve the matching contigs. Sequences can also be downloaded directly by FTP. The primary sequence viewer and annotation tool, Artemis is available for download. This is a portable Java program which is used extensively within the Microbial Genomes group for the analysis and annotation of sequence data from cosmids to whole genomes. The Artemis Comparison Tool (ACT) is also useful for interactive viewing of the comparisons between large and small sequences. | bacteria, bacterial, classification, description, disease, genomic, model, organism, pathogen, sequence, sequencing, model |
is listed by: 3DVC has parent organization: Wellcome Trust Sanger Institute; Hinxton; United Kingdom |
nif-0000-20963 | SCR_008141 | Bacterial Genomes | 2026-09-03 04:49:28 | 12 | |||||||||
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U.S. Pig Genome Project Resource Report Resource Website |
U.S. Pig Genome Project (RRID:SCR_008151) | data or information resource, database, portal, topical portal | Database and resources on the pig genome. | embryo, embryonic, environmental, exercise, exposure, fat, feed, feeding, fibroblast, food, foot and mouth disease, function, genetic, acute, additive, alcohol, alcoholism, atherosclerosis, bed, behavior, biological, bone, breed, cancer, cell, chronic, clone, degenerative, density, deposition, dermal, developmental, diabetes, dietary, digestive, disease, genome, genomic, growth, habit, healing, human, hypertension, kidney, mammal, map, melanoma, metabolism, nephropathy, nuclear, nutrition, obesity, omnivore, organ, organism, parenteral, pathogen, pattern, phenotype, phenotypic, physiology, pig, pollutant, population, porcine, prenatal, pulmonary, reproductive, respiratory, retinal, sex, shock, size, social, somatic, structure, swine, taxon, technique, tissue, tobacco, transplantation, variation, vascular, warfare, xenobiotic, model | is listed by: 3DVC | nif-0000-20986 | SCR_008151 | U.S. Pig Genome Project | 2026-09-03 04:49:51 | 0 | |||||||||
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GeneWindow Resource Report Resource Website 1+ mentions |
GeneWindow (RRID:SCR_008183) | data analysis software, data processing software, software application, software resource | Software tool for pre- and post-genetic bioinformatics and analytical work, developed and used at the Core Genotyping Facility (CGF) at the National Cancer Institute. While Genewindow is implemented for the human genome and integrated with the CGF laboratory data, it stands as a useful tool to assist investigators in the selection of variants for study in vitro, or in novel genetic association studies. The Genewindow application and source code is publicly available for use in other genomes, and can be integrated with the analysis, storage, and archiving of data generated in any laboratory setting. This can assist laboratories in the choice and tracking of information related to genetic annotations, including variations and genomic positions. Features of GeneWindow include: -Intuitive representation of genomic variation using advanced web-based graphics (SVG) -Search by HUGO gene symbol, dbSNP ID, internal CGF polymorphism ID, or chromosome coordinates -Gene-centric display (only when a gene of interest is in view) oriented 5 to 3 regardless of the reference strand and adjacent genes -Two views, a Locus Overview, which varies in size depending on the gene or genomic region being viewed and, below it, a Sequence View displaying 2000 base pairs within the overview -Navigate the genome by clicking along the gene in the Locus Overview to change the Sequence View, expand or contract the genomic interval, or shift the view in the 5 or 3 direction (relative to the current gene) -Lists of available genomic features -Search for sequence matches in the Locus Overview -Genomic features are represented by shape, color and opacity with contextual information visible when the user moves over or clicks on a feature -Administrators can insert newly-discovered polymorphisms into the Genewindow database by entering annotations directly through the GUI -Integration with a Laboratory Information Management System (LIMS) or other databases is possible | gene, genetic, analysis, annotation, archive, bioinformatic, cancer, genome, genomic, genotype, genotyping, human, human genome databases, maps, polymorphism, position, variation, data set |
is listed by: 3DVC has parent organization: National Cancer Institute |
nif-0000-21173 | SCR_008183 | GeneWindow | 2026-09-03 04:49:37 | 1 | |||||||||
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Expression Patterns for C. elegans promoter: GFP fusions Resource Report Resource Website |
Expression Patterns for C. elegans promoter: GFP fusions (RRID:SCR_008354) | data or information resource, data set, database | Provided here is a database of expression patterns of C. elegans promoter::GFP constructs. A text description of the observed pattern is provided, indicating the stage(s) and tissue(s) in which GFP is expressed. Also available for some strains are the corresponding 2D and 3D images. Investigators may browse the entire list, search by gene name, tissue, stage, and pattern. Search results may be downloaded in .csv and .txt formats. All of the strains in the expression pattern database are displayed in the browse page. The records are organized by gene; information such as locus name, genomic location (WormBase), the presence of images and videos, and the actual expression pattern are shown in a tabular format. Sponsors: The Genome BC C. elegans Gene Expression Consortium is funded by Genome Canada and Genome British Columbia. | expression, gene, gene expression, caenorhabditis elegans, c. elegans, genomic, green fluorescent protein, location, locus, pattern, stage, strain, tissue | is related to: NEXTDB | nif-0000-25220 | SCR_008354 | Caenorhabditis elegans Expression Patterns | 2026-09-03 04:49:30 | 0 | |||||||||
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Distributed Annotation System Resource Report Resource Website 10+ mentions |
Distributed Annotation System (RRID:SCR_008427) | data or information resource, narrative resource, software resource, standard specification | The Distributed Annotation System (DAS) defines a communication protocol used to exchange annotations on genomic or protein sequences. It is motivated by the idea that such annotations should not be provided by single centralized databases, but should instead be spread over multiple sites. Data distribution, performed by DAS servers, is separated from visualization, which is done by DAS clients. The advantages of this system are that control over the data is retained by data providers, data is freed from the constraints of specific organisations and the normal issues of release cycles, API updates and data duplication are avoided. DAS is a client-server system in which a single client integrates information from multiple servers. It allows a single machine to gather up sequence annotation information from multiple distant web sites, collate the information, and display it to the user in a single view. Little coordination is needed among the various information providers. DAS is heavily used in the genome bioinformatics community. Over the last years we have also seen growing acceptance in the protein sequence and structure communities. A DAS-enabled website or application can aggregate complex and high-volume data from external providers in an efficient manner. For the biologist, this means the ability to plug in the latest data, possibly including a user''s own data. For the application developer, this means protection from data format changes and the ability to add new data with minimal development cost. Here are some examples of DAS-enabled applications or websites for end users: :- Dalliance Experimental Web/Javascript based Genome Viewer :- IGV Integrative Genome Viewer java based browser for many genomes :- Ensembl uses DAS to pull in genomic, gene and protein annotations. It also provides data via DAS. :- Gbrowse is a generic genome browser, and is both a consumer and provider of DAS. :- IGB is a desktop application for viewing genomic data. :- SPICE is an application for projecting protein annotations onto 3D structures. :- Dasty2 is a web-based viewer for protein annotations :- Jalview is a multiple alignment editor. :- PeppeR is a graphical viewer for 3D electron microscopy data. :- DASMI is an integration portal for protein interaction data. :- DASher is a Java-based viewer for protein annotations. :- EpiC presents structure-function summaries for antibody design. :- STRAP is a STRucture-based sequence Alignment Program. Hundreds of DAS servers are currently running worldwide, including those provided by the European Bioinformatics Institute, Ensembl, the Sanger Institute, UCSC, WormBase, FlyBase, TIGR, and UniProt. For a listing of all available DAS sources please visit the DasRegistry. Sponsors: The initial ideas for DAS were developed in conversations with LaDeana Hillier of the Washington University Genome Sequencing Center. | annotation, database, software, genomic, protein, sequence, visualization, data, client-server, integration, bioinformatics, genome, structure, data integration |
is listed by: 3DVC has parent organization: Uppsala University; Uppsala; Sweden |
Howard Hughes Medical Institute ; NHGRI 2-P01-HG00956 |
nif-0000-30177 | SCR_008427 | BioDAS | 2026-09-03 04:49:37 | 11 | ||||||||
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Augustus Resource Report Resource Website 1000+ mentions |
Augustus (RRID:SCR_008417) | data analysis software, data processing software, sequence analysis software, software application, software resource, web application | Software for gene prediction in eukaryotic genomic sequences. Serves as a basis for further steps in the analysis of sequenced and assembled eukaryotic genomes. | software, gene, prediction, eucaryotic, genomic, sequence |
is used by: BRAKER is used by: BRO_annotation is listed by: Debian is listed by: OMICtools is listed by: SoftCite works with: Gsnap2Augustus |
Deutsche Forschungsgemeinschaft (DFG) HO4545/1-1;; STA1009/6-1 ; Institute for Mathematics and Computer Science ; Ernst Moritz Arndt University of Greifswald |
PMID:23700307 DOI:10.1093/bioinformatics/btw494 |
Free, Available for download, Freely available | SCR_015981, OMICS_07777, nif-0000-30133 | https://sources.debian.org/src/autodock-vina/ | SCR_008417 | Augustus: Gene Prediction, WebAUGUSTUS, Augustus, Augustus [gene prediction] | 2026-09-03 04:49:43 | 3886 | |||||
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PLAYPUS Resource Report Resource Website 10+ mentions |
PLAYPUS (RRID:SCR_009046) | PLAYPUS | software application, software resource | Software application that is an integrated variant caller (entry from Genetic Analysis Software) | gene, genetic, genomic | is listed by: Genetic Analysis Software | nlx_154021 | SCR_009046 | 2026-09-03 04:49:53 | 26 | |||||||||
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HAP-SAMPLE Resource Report Resource Website 1+ mentions |
HAP-SAMPLE (RRID:SCR_009234) | HAP-SAMPLE | analysis service resource, data analysis service, production service resource, service resource, software application, software resource | Web application for simulating SNP genotypes for case-control and affected-child trio studies by resampling from Phase I/II HapMap SNP data. The user provides a list of SNPs to be genotyped, along with a disease model file that describes causal SNPs and their effect sizes. The simulation tool is appropriate for candidate regions or whole-genome scans. (entry from Genetic Analysis Software) | gene, genetic, genomic, web-based | is listed by: Genetic Analysis Software | nlx_154392 | SCR_009234 | 2026-09-03 04:50:07 | 4 | |||||||||
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R/QTLBIM Resource Report Resource Website 1+ mentions |
R/QTLBIM (RRID:SCR_009375) | software application, software library, software resource, software toolkit | Software library for QTL Bayesian Interval Mapping that provides a Bayesian model selection approach to map multiple interacting QTL. It works on experimentally inbred lines and performs a genome-wide search to locate multiple potential QTL. The package can handle continuous, binary and ordinal traits. (entry from Genetic Analysis Software) | gene, genetic, genomic, r, bio.tools |
is listed by: Genetic Analysis Software is listed by: bio.tools is listed by: Debian |
nlx_154597, biotools:qtlbim | http://www.ssg.uab.edu/qtlbim/index.jsp, https://cran.r-project.org/src/contrib/Archive/qtlbim/, https://bio.tools/qtlbim | http://www.qtlbim.org/ | SCR_009375 | 2026-09-03 04:50:08 | 2 | ||||||||
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Mouse Genome Databases Resource Report Resource Website 1+ mentions |
Mouse Genome Databases (RRID:SCR_007147) | MGD | data or information resource, data set, database, organism-related portal, portal, topical portal | A mouse-related portal of genomic databases and tables of mouse brain data. Most files are intended for you to download and use on your own personal computer. Most files are available in generic text format or as FileMaker Pro databases. The server provides data extracted and compiled from: The 2000-2001 Mouse Chromosome Committee Reports, Release 15 of the MIT microsatellite map (Oct 1997), The recombinant inbred strain database of R.W. Elliott (1997) and R. W. Williams (2001), and the Map Manager and text format chromosome maps (Apr 2001). * LXS genotype (Excel file): Updated, revised positions for 330 markers genotyped using a panel of 77 LXS strain. * MIT SNP DATABASE ONLINE: Search and sort the MIT Single Nucleotide Polymorphism (SNP) database ONLINE. These data from the MIT-Whitehead SNP release of December 1999. * INTEGRATED MIT-ROCHE SNP DATABASE in EXCEL and TEXT FORMATS (1-3 MB): Original MIT SNPs merged with the new Roche SNPs. The Excel file has been formatted to illustrate SNP haplotypes and genetic contrasts. Both files are intended for statistical analyses of SNPs and can be used to test a method outlined in a paper by Andrew Grupe, Gary Peltz, and colleagues (Science 291: 1915-1918, 2001). The Excel file includes many useful equations and formatting that will help in navigating through this large database and in testing the in silico mapping method. * Use of inbred strains for the study of individual differences in pain related phenotypes in the mouse: Elissa J. Chesler''s 2002 dissertation, discussing issues relevant to the integration of genomic and phenomic data from standard inbred strains including genetic interactions with laboratory environmental conditions and the use of various in silico inbred strain haplotype based mapping algorithms for QTL analysis. * SNP QTL MAPPER in EXCEL format (572 KB, updated January 2002 by Elissa Chesler): This Excel workbook implements the Grupe et al. mapping method and outputs correlation plots. The main spreadsheet allows you to enter your own strain data and compares them to haplotypes. Be very cautious and skeptical when using this spreadsheet and the technique. Read all of the caveates. This excel version of the method was developed by Elissa Chesler. This updated version (Jan 2002) handles missing data. * MIT SNP Database (tab-delimited text format): This file is suitable for manipulation in statistics and spreadsheet programs (752 KB, Updated June 27, 2001). Data have been formatted in a way that allows rapid acquisition of the new data from the Roche Bioscience SNP database. * MIT SNP Database (FileMaker 5 Version): This is a reformatted version of the MIT Single Nucleotide Polymorphism (SNP) database in FileMaker 5 format. You will need a copy of this application to open the file (Mac and Windows; 992 KB. Updated July 13, 2001 by RW). * Gene Mapping and Map Manager Data Sets: Genetic maps of mouse chromosomes. Now includes a 10th generation advanced intercross consisting of 500 animals genetoyped at 340 markers. Lots of older files on recombinant inbred strains. * The Portable Dictionary of the Mouse Genome, 21,039 loci, 17,912,832 bytes. Includes all 1997-98 Chromosome Committee Reports and MIT Release 15. * FullDict.FMP.sit: The Portable Dictionary of the Mouse Genome. This large FileMaker Pro 3.0/4.0 database has been compressed with StuffIt. The Dictionary of the Mouse Genome contains data from the 1997-98 chromosome committee reports and MIT Whitehead SSLP databases (Release 15). The Dictionary contains information for 21,039 loci. File size = 4846 KB. Updated March 19, 1998. * MIT Microsatellite Database ONLINE: A database of MIT microsatellite loci in the mouse. Use this FileMaker Pro database with OurPrimersDB. MITDB is a subset of the Portable Dictionary of the Mouse Genome. ONLINE. Updated July 12, 2001. * MIT Microsatellite Database: A database of MIT microsatellite loci in the mouse. Use this FileMaker Pro database with OurPrimersDB. MITDB is a subset of the Portable Dictionary of the Mouse Genome. File size = 3.0 MB. Updated March 19, 1998. * OurPrimersDB: A small database of primers. Download this database if you are using numerous MIT primers to map genes in mice. This database should be used in combination with the MITDB as one part of a relational database. File size = 149 KB. Updated March 19, 1998. * Empty copy (clone) of the Portable Dictionary in FileMaker Pro 3.0 format. Download this file and import individual chromosome text files from the table into the database. File size = 231 KB. Updated March 19, 1998. * Chromosome Text Files from the Dictionary: The table lists data on gene loci for individual chromosomes. | gene, genetic, chromosome, genotype, inbred mouse strain, pain, phenotype, polygenic, recombinant, trait, genome, genomic, single nucleotide polymorphism, primer, brain, recombinant inbred mouse strain |
has parent organization: University of Tennessee Health Science Center; Tennessee; USA is organization facet of: Alliance of Genome Resources |
nif-0000-20982 | SCR_007147 | 2026-09-03 04:49:27 | 2 | |||||||||
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Tetraodon Genome Browser Resource Report Resource Website 1+ mentions |
Tetraodon Genome Browser (RRID:SCR_007079) | data or information resource, database, portal, topical portal | The initial objective of Genoscope was to compare the genomic sequences of this fish to that of humans to help in the annotation of human genes and to estimate their number. This strategy is based on the common genetic heritage of the vertebrates: from one species of vertebrate to another, even for those as far apart as a fish and a mammal, the same genes are present for the most part. In the case of the compact genome of Tetraodon, this common complement of genes is contained in a genome eight times smaller than that of humans. Although the length of the exons is similar in these two species, the size of the introns and the intergenic sequences is greatly reduced in this fish. Furthermore, these regions, in contrast to the exons, have diverged completely since the separation of the lineages leading to humans and Tetraodon. The Exofish method, developed at Genoscope, exploits this contrast such that the conserved regions which can be identified by comparing genomic sequences of the two species, correspond only to coding regions. Using preliminary sequencing results of the genome of Tetraodon in the year 2000, Genoscope evaluated the number of human genes at about 30,000, whereas much higher estimations were current. The progress of the annotation of the human genome has since supported the Genoscope hypothesis, with values as low as 22,000 genes and a consensus of around 25,000 genes. The sequencing of the Tetraodon genome at a depth of about 8X, carried out as a collaboration between Genoscope and the Whitehead Institute Center for Genome Research (now the Broad Institute), was finished in 2002, with the production of an assembly covering 90 of the euchromatic region of the genome of the fish. This has permitted the application of Exofish at a larger scale in comparisons with the genome of humans, but also with those of the two other vertebrates sequenced at the time (Takifugu, a fish closely related to Tetraodon, and the mouse). The conserved regions detected in this way have been integrated into the annotation procedure, along with other resources (cDNA sequences from Tetraodon and ab initio predictions). Of the 28,000 genes annotated, some families were examined in detail: selenoproteins, and Type 1 cytokines and their receptors. The comparison of the proteome of Tetraodon with those of mammals has revealed some interesting differences, such as a major diversification of some hormone systems and of the collagen molecules in the fish. A search for transposable elements in the genomic sequences of Tetraodon has also revealed a high diversity (75 types), which contrasts with their scarcity; the small size of the Tetraodon genome is due to the low abundance of these elements, of which some appear to still be active. Another factor in the compactness of the Tetraodon genome, which has been confirmed by annotation, is the reduction in intron size, which approaches a lower limit of 50-60 bp, and which preferentially affects certain genes. The availability of the sequences from the genomes of humans and mice on one hand, and Takifugu and Tetraodon on the other, provide new opportunities for the study of vertebrate evolution. We have shown that the level of neutral evolution is higher in fish than in mammals. The protein sequences of fish also diverge more quickly than those of mammals. A key mechanism in evolution is gene duplication, which we have studied by taking advantage of the anchoring of the majority of the sequences from the assembly on the chromosomes. The result of this study speaks strongly in favor of a whole genome duplication event, very early in the line of ray-finned fish (Actinopterygians). An even stronger evidence came from synteny studies between the genomes of humans and Tetraodon. Using a high-resolution synteny map, we have reconstituted the genome of the vertebrate which predates this duplication - that is, the last common ancestor to all bony vertebrates (most of the vertebrates apart from cartilaginous fish and agnaths like lamprey). This ancestral karyotype contains 12 chromosomes, and the 21 Tetraodon chromosomes derive from it by the whole genome duplication and a surprisingly small number of interchromosomal rearrangements. On the contrary, exchanges between chromosomes have been much more frequent in the lineage that leads to humans. Sponsors: The project was supported by the Consortium National de Recherche en Genomique and the National Human Genome Research Institute. | duplication, element, euchromatic, evolution, exon, fish, gene, genetic, actinopterygians, aganth, ancestor, cartilaginous, cdna, chromosome, coding, collagen, cytokine, diversity, genome, genomic, heritage, hormone, human, interchromossomal, intergenic, intron, karyotype, lineage, mammal, molecule, mouse, nigroviridis, protein, proteome, pufferfish, receptor, region, selenoprotein, sequence, size, specie, synteny, system, takifugu, tetraodon, transposable, vertebrate | nif-0000-20997 | SCR_007079 | TGB | 2026-09-03 04:49:10 | 8 | ||||||||||
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Broad Institute Resource Report Resource Website 1000+ mentions |
Broad Institute (RRID:SCR_007073) | Broad | institution | Biomedical and genomic research center located in Cambridge, Massachusetts, United States. Nonprofit research organization under the name Broad Institute Inc., and is partners with Massachusetts Institute of Technology, Harvard University, and the five Harvard teaching hospitals. Dedicated to advance understanding of biology and treatment of human disease to improve human health. | biomedical, genomic, research, center, nonprofit, organization, human, biology, disease |
is affiliated with: Massachusetts Institute of Technology; Massachusetts; USA; is affiliated with: Harvard University; Cambridge; United States is affiliated with: Integrative Human Microbiome Project is affiliated with: MIT; Cambridge; Massachusetts; United States is related to: LINCS Information Framework is related to: HMS LINCS Database is related to: Cancer Cell Line Encyclopedia is related to: GO2MSIG is parent organization of: ARACHNE is parent organization of: MuTect is parent organization of: SiPhy is parent organization of: ContEst is parent organization of: Broad Minded is parent organization of: JBrowse is parent organization of: Birdseed is parent organization of: VAAL is parent organization of: SomaticCall is parent organization of: BIRDSUITE is parent organization of: GATK is parent organization of: SNAP - SNP Annotation and Proxy Search is parent organization of: SYZYGY is parent organization of: Genetic Maps of the Rat Genome is parent organization of: LINCS Connectivity Map is parent organization of: Classification of Human Lung Carcinomas by mRNA Expression Profiling Reveals Distinct Adenocarcinoma Sub-classes is parent organization of: Haploview is parent organization of: Magnaporthe comparative Database is parent organization of: GeneCruiser is parent organization of: Fungal Genome Initiative is parent organization of: Gene Set Enrichment Analysis is parent organization of: GenePattern is parent organization of: MAGENTA is parent organization of: Multiple Myeloma Genomics Portal is parent organization of: ExAc is parent organization of: Ricopili is parent organization of: UnifiedGenotyper is parent organization of: SomaticIndelDetector is parent organization of: RNA-SeQC is parent organization of: Oncotator is parent organization of: ABSOLUTE is parent organization of: PathSeq is parent organization of: V-Phaser 2 is parent organization of: Indelocator is parent organization of: Scripture is parent organization of: VICUNA is parent organization of: Tuberculosis Database is parent organization of: HaploReg is parent organization of: CellProfiler Image Analysis Software is parent organization of: National Institute of Mental Health (NIMH) Human Genetics Initiative is parent organization of: ChemBank is parent organization of: GeneCluster 2: An Advanced Toolset for Bioarray Analysis is parent organization of: Ultrasome is parent organization of: Diabetes Genetics Initiative is parent organization of: Dog Genome Project is parent organization of: Gene Relationships Across Implicated Loci is parent organization of: InVEx is parent organization of: Broad Genetic Analysis Platform is parent organization of: CellProfiler Analyst is parent organization of: ALLPATHS-LG is parent organization of: MutSig is parent organization of: SegSeq is parent organization of: Argo Genome Browser is parent organization of: Integrative Genomics Viewer is parent organization of: MEDEA is parent organization of: Pathline is parent organization of: ASPGD is parent organization of: DGAP is parent organization of: BARD is parent organization of: 1000 Genomes: A Deep Catalog of Human Genetic Variation is parent organization of: Trinity is parent organization of: Genome Aggregation Database is parent organization of: GenomeSpace is parent organization of: Picard is parent organization of: Connectivity Map 02 is parent organization of: CMap is parent organization of: IndelGenotyper is parent organization of: Discovar assembler is parent organization of: Molecular Signatures Database is parent organization of: GSEA is parent organization of: Eagle is parent organization of: Morpheus by Broad Institute is parent organization of: Cancer Dependency Map Portal is parent organization of: LIGER is parent organization of: Drop-seq tools is parent organization of: scATAC Pipeline is parent organization of: Guide Design Resources is parent organization of: Smart-seq2 Single Sample Pipeline is parent organization of: Smart-seq2 Single Nucleus Multi Sample Pipeline is parent organization of: Broad Terra cloud commons for pathogen surveillance is parent organization of: Single Cell Portal is parent organization of: CEMBA MethylC Seq Pipeline is parent organization of: Pegasus is parent organization of: Cumulus is parent organization of: Cirrocumulus is parent organization of: BICCN Anatomy and Morphology Project is parent organization of: Terra is parent organization of: JUMP Cell Painting Consortium is parent organization of: Spectrum Mill is parent organization of: Polysolver is parent organization of: Brain Cell Data Viewer is parent organization of: Eagle is parent organization of: Broad Institute Imaging Platform Core Facility is parent organization of: ATAC Pipeline is parent organization of: ichorCNA is parent organization of: CRISPick is parent organization of: FireBrowse is parent organization of: Cellarium is parent organization of: multiVIB is parent organization of: SlideTags.wdl is parent organization of: Slide-seq Pipeline is parent organization of: BuildIndices is parent organization of: Broad Institute Genomics Platform has organization facet: GATK HaplotypeCaller has organization facet: GATK VariantFiltration |
Eli and Edythe Broad ; individual donors |
nif-0000-31438, grid.66859.34, Wikidata: Q4971893 | https://ror.org/05a0ya142 | SCR_007073 | Broad Institute of MIT and Harvard, Broad Institute Inc. | 2026-09-03 04:49:06 | 1931 | ||||||
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aneurIST Resource Report Resource Website 1+ mentions |
aneurIST (RRID:SCR_007427) | aneurIST | data or information resource, disease-related portal, portal, topical portal | Project focused on cerebral aneurysms and provides integrated decision support system to assess risk of aneurysm rupture in patients and to optimize their treatments. IT infrastructure has been developeded for management and processing of vast amount of heterogeneous data acquired during diagnosis. | gene, genetic, adult, cerebral aneurysm, cerebral brain hemorrhage, cerebral hemorrhage, cerebral parenchymal hemorrhage, cerebral hemorrhage, clinical, genomic, human, intracerebral hemorrhage, intracranial aneurysm, subarachnoid hemorrhage, risk, aneurysm rupture, patient, treatment, infrastructure, platform, genomics, disease, personalized risk assessment, bioinformatics, clinical, data management, data integration, data processing, software tool, cerebrum | has parent organization: Pompeu Fabra University; Barcelona; Spain | Cerebral aneurysm, Subarachnoid hemorrhage, Aging | European Union ; Sixth FPPriority 2 of the Information Society Technologies IST |
nif-0000-00538 | http://www.cilab.upf.edu/aneurist1/ | SCR_007427 | aneurIST - Integrated Biomedical Informatics for the Management of Cerebral Aneurysms, (at)neurIST, (at)neurIST - Integrated Biomedical Informatics for the Management of Cerebral Aneurysms | 2026-09-03 04:49:18 | 5 | |||||
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Allen Human Brain Atlas Resource Report Resource Website 100+ mentions |
Allen Human Brain Atlas (RRID:SCR_007416) | atlas, data or information resource, data processing software, data visualization software, database, software application, software resource | Multi modal atlas of human brain that integrates anatomic and genomic information, coupled with suite of visualization and mining tools to create open public resource for brain researchers and other scientists. Data include magnetic resonance imaging (MRI), diffusion tensor imaging (DTI), histology and gene expression data derived from both microarray and in situ hybridization (ISH) approaches. Brain Explorer 2 is desktop software application for viewing human brain anatomy and gene expression data in 3D. | atlas, human, brain, anatomic, genomic, data, visualization, mining, tool, MRI, DTI, histology, gene, expression |
is related to: Speech Language Disorders Database has parent organization: Allen Institute for Brain Science has parent organization: Allen Brain Atlas |
Individual private donors ; U.S. Department of Health and Human Services 1C76HF15069; U.S. Department of Health and Human Services 1C76HF19619 |
PMID:23041053 | Free, Available for download, Freely available | nif-0000-00506 | http://humancortex.alleninstitute.org, http://human.brain-map.org/ | SCR_007416 | Human Cortex Study, Allen Institute for Brain Science Human Cortex Study, Allen Brain Atlas - Human Brain | 2026-09-03 04:49:35 | 135 | |||||
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Bio2RDF atlas of post genomic knowledge Resource Report Resource Website 10+ mentions |
Bio2RDF atlas of post genomic knowledge (RRID:SCR_007991) | blog, data or information resource, narrative resource, portal, topical portal | This is a blog about post genomic knowledge. The website''s goal is to make public datasets from the bioinformatics community available in RDF format via standard SPARQL endpoints. | bioinformatic, community, dataset, genomic, knowledge, rdf | nif-0000-10166 | SCR_007991 | Bio2RDF | 2026-09-03 04:49:29 | 41 |
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