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Claude Skills by FreedomIntelligence
github.com/FreedomIntelligence741 skills2 installs1,922 views
- Bio Phasing Imputation Genotype Imputation--> --- name: bio-phasing-imputation-genotype-imputation description: Impute missing genotypes using reference panels with Beagle or Minimac4. Use when increasing variant density for GWAS, harmonizing data across genotyping platforms, or inferring variants not directly typed in array data. tool_type: cli primary_tool: beagle measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Phasing Imputation Haplotype Phasing--> --- name: bio-phasing-imputation-haplotype-phasing description: Phase genotypes into haplotypes using Beagle or SHAPEIT. Resolves which alleles are inherited together on each chromosome. Use when preparing VCF files for imputation, HLA typing, or population genetic analyses requiring phased haplotypes. tool_type: cli primary_tool: beagle measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Phasing Imputation Imputation Qc--> --- name: bio-phasing-imputation-imputation-qc description: Quality control of phasing and imputation results. Filter by INFO scores, assess accuracy, and prepare imputed data for downstream analysis. Use when filtering low-quality imputed variants or validating imputation accuracy before GWAS. tool_type: mixed primary_tool: bcftools measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Phasing Imputation Reference Panels--> --- name: bio-phasing-imputation-reference-panels description: Download, prepare, and manage reference panels for phasing and imputation. Covers 1000 Genomes, HRC, and TOPMed panels. Use when setting up imputation infrastructure or selecting appropriate reference panels for target populations. tool_type: cli primary_tool: bcftools measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Phylo Distance Calculations--> --- name: bio-phylo-distance-calculations description: Compute evolutionary distances and build phylogenetic trees using Biopython Bio.Phylo.TreeConstruction. Use when creating distance matrices from alignments, building NJ/UPGMA trees, or generating bootstrap consensus trees. tool_type: python primary_tool: Bio.Phylo.TreeConstruction measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Compute dist...Votes: 0GitHub stars: 2,984
- Bio Phylo Modern Tree Inference--> --- name: bio-phylo-modern-tree-inference description: Build maximum likelihood phylogenetic trees using IQ-TREE2 and RAxML-ng. Use when inferring publication-quality trees with model selection, ultrafast bootstrap, or partitioned analyses from sequence alignments. tool_type: cli primary_tool: IQ-TREE2 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Build maximum likelihood phylogenetic trees w...Votes: 0GitHub stars: 2,984
- Bio Phylo Tree Io--> --- name: bio-phylo-tree-io description: Read, write, and convert phylogenetic tree files using Biopython Bio.Phylo. Use when parsing Newick, Nexus, PhyloXML, or NeXML tree formats, converting between formats, or handling multiple trees. tool_type: python primary_tool: Bio.Phylo measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Parse, write, and convert phylogenetic tree files in various formats.Votes: 0GitHub stars: 2,984
- Bio Phylo Tree Manipulation--> --- name: bio-phylo-tree-manipulation description: Modify phylogenetic tree structure using Biopython Bio.Phylo. Use when rooting trees with outgroups or midpoint, pruning taxa, collapsing clades, ladderizing branches, or extracting subtrees. tool_type: python primary_tool: Bio.Phylo measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Modify phylogenetic tree structure: rooting, pruning, ladderizin...Votes: 0GitHub stars: 2,984
- Bio Phylo Tree Visualization--> --- name: bio-phylo-tree-visualization description: Draw and export phylogenetic trees using Biopython Bio.Phylo with matplotlib. Use when creating publication-quality tree figures, customizing colors and labels, or exporting to image formats. tool_type: python primary_tool: Bio.Phylo measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Draw phylogenetic trees using matplotlib integration.Votes: 0GitHub stars: 2,984
- Bio Pileup Generation--> --- name: bio-pileup-generation description: Generate pileup data for variant calling using samtools mpileup and pysam. Use when preparing data for variant calling, analyzing per-position read data, or calculating allele frequencies. tool_type: cli primary_tool: samtools measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Generate pileup data for variant calling and position-level analysis.Votes: 0GitHub stars: 2,984
- Bio Population Genetics Association Testing--> --- name: bio-population-genetics-association-testing description: Genome-wide association studies (GWAS) with PLINK. Perform case-control and quantitative trait association testing using logistic/linear regression with covariates, generate Manhattan and QQ plots for result visualization. Use when running GWAS or association tests. tool_type: cli primary_tool: plink2 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - r...Votes: 0GitHub stars: 2,984
- Bio Population Genetics Linkage Disequilibrium--> --- name: bio-population-genetics-linkage-disequilibrium description: Calculate linkage disequilibrium statistics (r², D'), perform LD pruning for population structure analysis, identify haplotype blocks, and visualize LD patterns using PLINK, scikit-allel, and LDBlockShow. Use when calculating LD or pruning variants. tool_type: mixed primary_tool: plink2 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_com...Votes: 0GitHub stars: 2,984
- Bio Population Genetics Plink Basics--> --- name: bio-population-genetics-plink-basics description: PLINK file formats, format conversion, and quality control filtering for population genetics. Convert between VCF, BED/BIM/FAM, and PED/MAP formats, apply MAF, genotyping rate, and HWE filters using PLINK 1.9 and 2.0. Use when working with PLINK format files or running QC. tool_type: cli primary_tool: plink measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - ru...Votes: 0GitHub stars: 2,984
- Bio Population Genetics Population Structure--> --- name: bio-population-genetics-population-structure description: Analyze population structure using PCA and admixture analysis with PLINK and ADMIXTURE. Identify population clusters, assess ancestry proportions, visualize genetic structure, and choose optimal K for admixture models. Use when analyzing population stratification with PCA or admixture. tool_type: cli primary_tool: plink2 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-t...Votes: 0GitHub stars: 2,984
- Bio Population Genetics Scikit Allel Analysis--> --- name: bio-population-genetics-scikit-allel-analysis description: Python population genetics with scikit-allel. Read VCF files, compute allele frequencies, calculate diversity statistics, perform PCA, and run selection scans using GenotypeArray and HaplotypeArray data structures. Use when analyzing population genetics in Python. tool_type: python primary_tool: scikit-allel measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read...Votes: 0GitHub stars: 2,984
- Bio Population Genetics Selection Statistics--> --- name: bio-population-genetics-selection-statistics description: Detect signatures of natural selection using Fst, Tajima's D, iHS, XP-EHH, and other selection statistics. Calculate population differentiation, test for departures from neutrality, and identify selective sweeps with scikit-allel and vcftools. Use when computing selection signatures like Fst or Tajima's D. tool_type: mixed primary_tool: scikit-allel measurable_outcome: Execute skill workflow successfully with valid output...Votes: 0GitHub stars: 2,984
- Bio Primer Design Primer Basics--> --- name: bio-primer-design-primer-basics description: Design PCR primers for a target sequence using primer3-py. Specify target regions, product size, melting temperature, and other constraints. Returns ranked primer pairs with quality metrics. Use when designing standard PCR primers. tool_type: python primary_tool: primer3-py measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Design PCR primers ...Votes: 0GitHub stars: 2,984
- Bio Primer Design Primer Validation--> --- name: bio-primer-design-primer-validation description: Validate PCR primers for specificity, dimers, hairpins, and secondary structures using primer3-py thermodynamic calculations. Check self-complementarity, heterodimer formation, and 3' stability. Use when validating primer specificity and properties. tool_type: python primary_tool: primer3-py measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command -...Votes: 0GitHub stars: 2,984
- Bio Primer Design Qpcr Primers--> --- name: bio-primer-design-qpcr-primers description: Design qPCR primers and TaqMan/molecular beacon probes using primer3-py. Configure probe Tm, primer-probe spacing, and hydrolysis probe constraints for real-time PCR assays. Use when designing qPCR primers and probes. tool_type: python primary_tool: primer3-py measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Design primers and internal probes...Votes: 0GitHub stars: 2,984
- Bio Proteomics Data ImportLoad and parse mass spectrometry data formats including mzML, mzXML, and quantification tool outputs like MaxQuant proteinGroups.txt. Use when starting a proteomics analysis with raw or processed MS data. Handles contaminant filtering and missing value assessment.Votes: 0GitHub stars: 2,984
- Bio Proteomics Dia AnalysisData-independent acquisition (DIA) proteomics analysis with DIA-NN and other tools. Use when analyzing DIA mass spectrometry data with library-free or library-based workflows for deep proteome profiling.Votes: 0GitHub stars: 2,984
- Bio Proteomics Differential AbundanceStatistical testing for differentially abundant proteins between conditions. Covers limma and MSstats workflows with multiple testing correction. Use when identifying proteins with significant abundance changes between experimental groups.Votes: 0GitHub stars: 2,984
- Bio Proteomics Peptide IdentificationPeptide-spectrum matching and protein identification from MS/MS data. Use when identifying peptides from tandem mass spectra. Covers database searching, spectral library matching, and FDR estimation using target-decoy approaches.Votes: 0GitHub stars: 2,984
- Bio Proteomics Protein InferenceProtein grouping and inference from peptide identifications. Use when resolving protein ambiguity from shared peptides. Handles protein groups and protein-level FDR control using parsimony and probabilistic approaches.Votes: 0GitHub stars: 2,984
- Bio Proteomics Proteomics QcQuality control and assessment for proteomics data. Use when evaluating proteomics data quality before downstream analysis. Covers sample metrics, missing value patterns, replicate correlation, batch effects, and intensity distributions.Votes: 0GitHub stars: 2,984
- Bio Proteomics Ptm AnalysisPost-translational modification analysis including phosphorylation, acetylation, and ubiquitination. Covers site localization, motif analysis, and quantitative PTM analysis. Use when analyzing phosphoproteomic data or other modification-enriched samples.Votes: 0GitHub stars: 2,984
- Bio Proteomics QuantificationProtein quantification from mass spectrometry data including label-free (LFQ, intensity-based), isobaric labeling (TMT, iTRAQ), and metabolic labeling (SILAC) approaches. Use when extracting protein abundances from MS data for differential analysis.Votes: 0GitHub stars: 2,984
- Bio Proteomics Spectral LibrariesBuild, manage, and search spectral libraries for proteomics. Use when creating or working with spectral libraries for DIA analysis. Covers DDA-based library generation, predicted libraries (Prosit, DeepLC), and library formats.Votes: 0GitHub stars: 2,984
- Bio Reaction EnumerationEnumerates chemical libraries through reaction SMARTS transformations using RDKit. Generates virtual compound libraries from building blocks using defined chemical reactions with product validation. Use when creating combinatorial libraries or enumerating products from synthetic routes.Votes: 0GitHub stars: 2,984
- Bio Read Alignment Bowtie2 Alignment--> --- name: bio-read-alignment-bowtie2-alignment description: Align short reads using Bowtie2 with local or end-to-end modes. Supports gapped alignment. Use when aligning ChIP-seq, ATAC-seq, or when flexible alignment modes are needed. tool_type: cli primary_tool: bowtie2 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Read Alignment Bwa Alignment--> --- name: bio-read-alignment-bwa-alignment description: Align DNA short reads to reference genomes using bwa-mem2, the faster successor to BWA-MEM. Use when aligning DNA short reads to a reference genome. tool_type: cli primary_tool: bwa-mem2 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Read Alignment Hisat2 Alignment--> --- name: bio-read-alignment-hisat2-alignment description: Align RNA-seq reads with HISAT2, a memory-efficient splice-aware aligner. Use when STAR's memory requirements are too high or for general RNA-seq alignment. tool_type: cli primary_tool: HISAT2 measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Read Alignment Star Alignment--> --- name: bio-read-alignment-star-alignment description: Align RNA-seq reads with STAR (Spliced Transcripts Alignment to a Reference). Supports two-pass mode for novel splice junction discovery. Use when aligning RNA-seq data requiring splice-aware alignment. tool_type: cli primary_tool: STAR measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Read Qc Adapter TrimmingRemove sequencing adapters from FASTQ files using Cutadapt and Trimmomatic. Supports single-end and paired-end reads, Illumina TruSeq, Nextera, and custom adapter sequences. Use when FastQC shows adapter contamination or before alignment of short reads.Votes: 0GitHub stars: 2,984
- Bio Read Qc Contamination ScreeningDetect sample contamination and cross-species reads using FastQ Screen. Screen reads against multiple reference genomes to identify bacterial, viral, adapter, or sample swap contamination. Use when suspecting cross-contamination or working with samples prone to microbial contamination.Votes: 0GitHub stars: 2,984
- Bio Read Qc Fastp WorkflowAll-in-one read preprocessing with fastp including adapter trimming, quality filtering, deduplication, base correction, and HTML report generation. Use when preprocessing Illumina data and wanting a single fast tool instead of separate Cutadapt, Trimmomatic, and FastQC steps.Votes: 0GitHub stars: 2,984
- Bio Read Qc Quality FilteringFilter reads by quality scores, length, and N content using Trimmomatic and fastp. Apply sliding window trimming, remove low-quality bases from read ends, and discard reads below thresholds. Use when reads have poor quality tails or require minimum quality for downstream analysis.Votes: 0GitHub stars: 2,984
- Bio Read Qc Quality ReportsGenerate and interpret quality reports from FASTQ files using FastQC and MultiQC. Assess per-base quality, adapter content, GC bias, duplication levels, and overrepresented sequences. Use when performing initial QC on raw sequencing data or validating preprocessing results.Votes: 0GitHub stars: 2,984
- Bio Read Qc Umi ProcessingExtract, process, and deduplicate reads using Unique Molecular Identifiers (UMIs) with umi_tools. Use when library prep includes UMIs and accurate molecule counting is needed, such as in single-cell RNA-seq, low-input RNA-seq, or targeted sequencing to distinguish PCR from biological duplicates.Votes: 0GitHub stars: 2,984
- Bio Read SequencesRead biological sequence files (FASTA, FASTQ, GenBank, EMBL, ABI, SFF) using Biopython Bio.SeqIO. Use when parsing sequence files, iterating multi-sequence files, random access to large files, or high-performance parsing.Votes: 0GitHub stars: 2,984
- Bio Reference Operations--> --- name: bio-reference-operations description: Generate consensus sequences and manage reference files using samtools. Use when creating consensus from alignments, indexing references, or creating sequence dictionaries. tool_type: cli primary_tool: samtools measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command --- Generate consensus sequences and manage reference files using samtools.Votes: 0GitHub stars: 2,984
- Bio Reporting Automated Qc Reports--> --- name: bio-reporting-automated-qc-reports description: Generates standardized quality control reports by aggregating metrics from FastQC, alignment, and other tools using MultiQC. Use when summarizing QC metrics across samples, creating shareable quality reports, or building automated QC pipelines. tool_type: cli primary_tool: multiqc measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Reporting Figure Export--> --- name: bio-reporting-figure-export description: Exports publication-ready figures in various formats with proper resolution, sizing, and typography. Use when preparing figures for journal submission, creating vector graphics for presentations, or ensuring consistent figure styling across analyses. tool_type: mixed primary_tool: matplotlib measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Reporting Jupyter Reports--> --- name: bio-reporting-jupyter-reports description: Creates reproducible Jupyter notebooks for bioinformatics analysis with parameterization using papermill. Use when generating automated analysis reports, running notebook-based pipelines, or creating shareable computational notebooks. tool_type: python primary_tool: papermill measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Reporting Quarto Reports--> --- name: bio-reporting-quarto-reports description: Build reproducible scientific documents, presentations, and websites with Quarto supporting R, Python, Julia, and Observable JS. Use when creating reproducible reports with Quarto. tool_type: mixed primary_tool: Quarto measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Reporting Rmarkdown Reports--> --- name: bio-reporting-rmarkdown-reports description: Create reproducible bioinformatics analysis reports with R Markdown including code, results, and visualizations in HTML, PDF, or Word format. Use when generating analysis reports with RMarkdown. tool_type: r primary_tool: rmarkdown measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Research Tools Biomarker Signature Studio--> --- name: bio-research-tools-biomarker-signature-studio description: Multi-omic biomarker discovery studio that ingests expression + metadata, performs QC, multi-strategy feature selection, nested CV model training, survival analysis hooks, and SHAP-based interpretation. Use to design translational biomarker panels with documented evidence. tool_type: python primary_tool: scikit-learn depends_on: - machine-learning/biomarker-discovery - machine-learning/model-validation - machine-learning...Votes: 0GitHub stars: 2,984
- Bio Restriction Enzyme Selection--> --- name: bio-restriction-enzyme-selection description: Select restriction enzymes by criteria using Biopython Bio.Restriction. Find enzymes that cut once, don't cut, produce specific overhangs, are commercially available, or have compatible ends for cloning. Use when selecting restriction enzymes for cloning or analysis. tool_type: python primary_tool: Bio.Restriction measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file -...Votes: 0GitHub stars: 2,984
- Bio Restriction Fragment Analysis--> --- name: bio-restriction-fragment-analysis description: Analyze restriction digest fragments using Biopython Bio.Restriction. Predict fragment sizes, get fragment sequences, simulate gel electrophoresis patterns, and perform double digests. Use when analyzing restriction digest fragment patterns. tool_type: python primary_tool: Bio.Restriction measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984
- Bio Restriction Mapping--> --- name: bio-restriction-mapping description: Create restriction maps showing enzyme cut positions on DNA sequences using Biopython Bio.Restriction. Visualize cut sites, calculate distances between sites, and generate text or graphical maps. Use when creating or analyzing restriction maps. tool_type: python primary_tool: Bio.Restriction measurable_outcome: Execute skill workflow successfully with valid output within 15 minutes. allowed-tools: - read_file - run_shell_command ---Votes: 0GitHub stars: 2,984