Workflow for orthology, synteny, ancestral reconstruction, and evolutionary comparison across genomes.
Scanned 9/4/2026
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---
name: comparative-genomics
description: Workflow for orthology, synteny, ancestral reconstruction, and evolutionary comparison across genomes.
tool_type: python
primary_tool: orthology
---
# Comparative Genomics
## Version Compatibility
Reference examples assume recent stable releases of the preferred tools, especially `orthology` and the other tools listed below.
Before using code or command patterns, verify installed versions match the environment:
- Python: `python -c "import <module>; print(<module>.__version__)"`
- CLI: `<tool> --version`
- If signatures differ, inspect the installed help or API and adapt the pattern instead of retrying unchanged.
## Overview
Workflow for orthology, synteny, ancestral reconstruction, and evolutionary comparison across genomes.
## When To Use This Skill
- use when the task is cross-genome comparison or evolutionary inference
- use when assembled genomes and annotations are available for multiple taxa or strains
- use when the user needs orthologs, synteny blocks, or positive-selection style summaries
## Quick Route
- If the input is raw or minimally processed data, start with validation and QC before any modeling.
- If the input is already processed, skip directly to the first workflow step that matches the user goal.
- If the user asks for a biological conclusion, always produce at least one QC or confidence artifact alongside the final result.
## Progressive Disclosure
- Read `references/technical_reference.md` when you need deeper tool-selection rules, environment adaptation notes, or extra validation guidance.
- Keep `SKILL.md` as the main execution path and load the reference file only when the task or failure mode needs the extra detail.
## Default Rules
- Prefer Python-first workflows unless the task explicitly requires something else.
- Keep intermediate and final outputs separated.
- Record software versions, reference builds, and key parameters when they affect interpretation.
- Favor reproducible tables and figures over one-off interactive-only outputs.
## Expected Inputs
- assemblies
- gene annotations
- optional phylogenetic context
## Expected Outputs
- ortholog tables
- synteny outputs
- evolutionary comparison summaries
## Preferred Tools
- orthology tools
- alignment and phylogeny utilities
- pandas
## Starter Pattern
```text
Preferred starting point: orthology
Inputs: assemblies, gene annotations, optional phylogenetic context
Outputs: ortholog tables, synteny outputs, evolutionary comparison summaries
```
## Workflow
### 1. Define comparison scale
Clarify whether the task is gene-level, synteny-level, or phylogenomic.
### 2. Standardize annotations
Use consistent naming, feature models, and assemblies before comparing genomes.
### 3. Infer shared and divergent elements
Run orthology, synteny, or evolutionary analyses appropriate to the question.
### 4. Interpret in biological context
Separate technical annotation differences from genuine biological divergence.
### 5. Export concise comparison artifacts
Save tables and figures that highlight conserved versus lineage-specific patterns.
## Output Artifacts
- Recommended output layout:
- `results/` for final tables and serialized objects
- `figures/` for plots and static visual exports
- `qc/` for checks that justify downstream interpretation
- Minimum expected outputs for this skill:
- `ortholog tables`
- `synteny outputs`
- `evolutionary comparison summaries`
## Quality Review
- Confirm identifiers and metadata join correctly before modeling or summarizing.
- Generate at least one QC artifact before final biological interpretation.
- Keep raw or minimally processed inputs separate from transformed outputs.
- Record reference build, caller assumptions, and filtering rules in the final outputs.
- Separate raw calls from filtered or interpreted results.
## Anti-Patterns
- comparing genomes with incompatible annotation quality without caveats
- overstating adaptive evolution from weak evidence
- mixing orthology and homology claims carelessly
## Related Skills
- `Variant Calling`
- `Copy Number`
- `Long-Read Genomics`
- `Genome Assembly`
## Optional Supplements
- None required for the first pass.
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