SkillAgentSearch skills...

primer-design

Designs and audits PCR and RT-qPCR primers with Primer3, explicit thermodynamic conditions, reference-based off-target amplification searches, and traceable sequence coordinates.

Install / Use

npx skills add K-Dense-AI/scientific-agent-skills --skill primer-design

Installs into whichever agent you are using.

About this skill
📄

SKILL.md

Installable skill definition

Quality Score

100/100

Supported Platforms

Universal

Our assessment of primer-design

primer-design scores 100/100 on our quality scale, 33rd of 4,585 Development & Engineering skills we index (top 1%).

Its SKILL.md is 16 KB long, well organised into 13 sections with 6 code examples: a thorough specification that gives an agent plenty to work with.

With 46,441 GitHub stars, it is one of the more widely adopted skills in the catalogue.

Substance
30/30
Structure
20/20
Description
15/15
Adoption
20/20
Freshness
15/15

Maintenance, license and trust

  • The repository was last updated 16 days ago, so primer-design is actively maintained.
  • It is released under the MIT license, a permissive license that allows use, modification and commercial use with attribution.
  • Its trust signals score 100/100, with no cautions. These come from repository metadata, not a code audit — read the skill file before letting an agent act on it.

primer-design compared with similar skills

primer-design has the highest quality score among these 4 similar skills, though 4 alternatives have been updated more recently.

SkillScoreStarsUpdatedFormat
primer-design (this skill)by K-Dense-AI10046.4k16d agoSKILL.md
Agent-Reachby Panniantong10093.2ktodayCLAUDE.md
headroomby headroomlabs-ai10074.6ktodayCLAUDE.md
ai-job-searchby MadsLorentzen10045.2k2d agoCLAUDE.md
claude-howtoby luongnv8910041.8k7d agoCLAUDE.md

Frequently asked questions

How do I install primer-design?
Run npx skills add K-Dense-AI/scientific-agent-skills --skill primer-design. The install tabs above show the steps for each supported agent.
Which AI agents does primer-design work with?
It is written for Universal, as a SKILL.md file. Other agents that read the same format can often use it too.
Is primer-design safe to use?
It is MIT-licensed and scores 100/100 on trust signals. Skills are instructions an agent will follow, so read the file before installing it and do not approve commands you do not understand.
Is primer-design still maintained?
The repository was last updated 16 days ago, so primer-design is actively maintained.

name: primer-design description: Designs and audits PCR and RT-qPCR primers with Primer3, explicit thermodynamic conditions, reference-based off-target amplification searches, and traceable sequence coordinates. Use for designing primer pairs, checking existing primers, exon-junction or isoform-specific assays, variant masking, cloning tails, multiplex compatibility, and interpreting Primer-BLAST results. Includes bounded local in-silico PCR and BLAST screening; distinguishes computational candidates from experimentally validated assays. license: MIT compatibility: Requires Python 3.11+ and primer3-py 2.3.1 for design and thermodynamics. Local exhaustive screening uses the standard library; BLAST screening additionally needs blastn and makeblastdb on PATH. Network access is needed only for installation, reference retrieval, or external Primer-BLAST. metadata: version: "1.1" skill-author: K-Dense Inc. last-reviewed: "2026-10-01"

Primer design and specificity

Produce candidate oligos in 5-prime-to-3-prime orientation, with the exact template, chemistry, intended products, and search scope behind each conclusion. Calculate sequence-dependent quantities with the supplied tools. A familiar gene name, good Primer3 penalty, or a single BLAST alignment cannot establish primer specificity.

Choose the workflow

| Request | Start here | | --- | --- | | New genomic PCR or RT-qPCR pair | Define the assay and reference; design; assess thermodynamics; screen products. | | Check an existing pair | Prepare pair TSV; assess both full oligos and annealing cores; screen with explicit intended coordinates. | | Exon junction, transcript isoform, allele discrimination | Read design-workflows.md; supply sequence annotation before imposing constraints. | | Cloning/adaptor-tailed primers | Design annealing cores, append declared 5-prime tails, reassess full oligos, reconstruct the final product. | | Multiplex panel | Enable --multiplex in both thermodynamics and specificity tools to assess oligo interactions and cross-pair products. | | Degenerate, bisulfite, probe, or modified-base assay | Use the specialized workflow in design-workflows.md; the bundled ordinary-DNA model is insufficient. |

The local tooling supports paired primers with unambiguous ACGT cores. Advanced assay types have substantive design and validation guidance, but are not silently reduced to ordinary PCR. This skill designs assays; expression normalization, experimental diagnostic validation, and guide-RNA design are separate tasks.

Establish the assay contract

Obtain what changes the result; use explicit provisional assumptions for an exploratory design, and identify them in the report:

  • Purpose and template: genomic DNA, cDNA, plasmid, or another defined substrate; target organism, accession with version, assembly/transcript release, strand, desired isoforms, and product-size range. Name wanted and unwanted templates.
  • Sequence evidence: local FASTA plus source/retrieval date and its SHA-256 hash. A locus excerpt uses local coordinates; record its mapping to the full reference. Include relevant paralogs, pseudogenes, alternate contigs, transcript isoforms, vector backbone, and host sequence in the appropriate screen.
  • Reaction conditions: polymerase/buffer, monovalent salt, total divalent salt, total dNTP, and oligo concentrations. Primer3 uses mM for salts/dNTP and nM for DNA. Record the initial reaction concentration separately from Primer3's effective annealing-oligo concentration parameter. Engine defaults are assumptions.
  • Constraints: target interval, allowed/excluded binding regions, junctions, variant exclusions and their source, fixed primers, tails, or multiplex membership. Do not guess exon boundaries or silently substitute another assembly.
  • Definition of an acceptable result: relevant off-target references, amplicon lengths, mismatch search limits, controls, and experimental validation appropriate to the assay. There is no universal thermodynamic cutoff that validates all PCRs.

Use input-contract.md for file schemas and coordinate examples. Copy assay-report-template.md into the analysis directory to collect evidence. Reference retrieval may be manual or through an established sequence API; preserve accession/version and verify the returned sequence. The supplied scripts use local files and do not submit sequences online.

Install and verify

Set SKILL_DIR to this skill's actual installed directory. Work in a separate analysis directory so environments, reference databases, and results do not enter the skill.

uv venv --python 3.13 .venv-primer
uv pip install --python .venv-primer/bin/python -r "$SKILL_DIR/assets/requirements.txt"
.venv-primer/bin/python "$SKILL_DIR/scripts/design_primers.py" --help

Use the environment's Scripts/python.exe on Windows. The design/thermodynamic examples target primer3-py 2.3.1, tested with Python 3.13. For the optional BLAST engine, install NCBI BLAST+ from its official distribution and check:

blastn -version
makeblastdb -version

Local integration checks also exercise BLAST+ 2.17.0; other releases require checking their output and search behavior before claiming equivalent coverage.

Read sources.md when updating dependencies or API assumptions. The scripts record engine versions and effective settings in their JSON reports.

1. Design candidates

For an initial functional demonstration, use the bundled synthetic sequence. It is nonbiological example input, not an experimentally validated assay:

.venv-primer/bin/python "$SKILL_DIR/scripts/design_primers.py" \
  --template "$SKILL_DIR/assets/demo-template.fasta" \
  --preset qpcr --config "$SKILL_DIR/assets/qpcr-config.json" \
  --output design.json --pairs-out pairs.tsv --expected-out expected.tsv

For actual work, substitute the reviewed target FASTA and constraints. A multi-record FASTA requires --record with its exact ID. The pcr preset requests 100–1000 bp; qpcr requests 70–200 bp. Override these starting ranges in the configuration. The example overrides its range to 90–180 bp and includes a specific target interval. Multiple SEQUENCE_TARGET intervals are alternatives: Primer3 flanks at least one. To require coverage of every interval, supply one enclosing target and verify the returned product; separate assays require separate design runs.

The tool:

  • Passes validated sequence_args and global_args to Primer3. Unsupported or misspelled tags fail rather than silently changing the task.
  • Converts ambiguous template positions to N and forbids ambiguous primer bases. It does not interpret lowercase sequence as a repeat mask; use explicit exclusions.
  • Optionally imports --mask-bed exclusions in the supplied template's coordinates. Use BED intervals for variant/repeat masking only after validating the reference mapping; it does not infer allele frequencies or convert arbitrary VCFs.
  • Verifies returned forward and reverse sequences against the template and checks product lengths. Primer3's right-primer position is converted into a half-open binding interval; the reverse primer is already in ordering orientation.
  • Optionally appends --forward-tail and --reverse-tail to cores. The design score and core Tm do not include those tails; step 2 checks complete oligos.

Inspect engine_explanations when no candidates are found. Change a biologically justified constraint and rerun; do not silently relax all constraints or return an invented sequence. Preserve previous reports when comparing parameter choices.

expected.tsv describes intended products on the design template. If screening another reference, map these coordinates to its exact record IDs and orientation. A cDNA product cannot be relabeled as a genomic interval across introns.

2. Assess thermodynamics

Use the same chemistry as the design. The following explicit values match the bundled design defaults; replace them together when the actual conditions differ:

.venv-primer/bin/python "$SKILL_DIR/scripts/check_thermodynamics.py" \
  --pairs pairs.tsv --mv-conc 50 --dv-conc 1.5 --dntp-conc 0.6 \
  --dna-conc 50 --temp-c 37 --output thermodynamics.json

The report contains core Tm, core and full-oligo hairpins/homodimers, full-oligo heterodimers, self 3-prime end stability, and both directional inter-oligo 3-prime end-stability calculations. Delta-G and delta-H are reported in kcal/mol; delta-S in cal/(mol K). --temp-c controls the temperature for delta-G, not a recommended PCR annealing temperature.

If design used different Tm/salt models, also set --tm-method and --salt-corrections-method to match; see the mapping in the input contract.

For a panel, add --multiplex to examine all unordered oligo combinations, including forward/forward and reverse/reverse between different pairs. Distinguish a panel to be combined from alternative candidates that will be tested separately.

Read thermodynamics.md before interpreting these values. Full oligos longer than 60 bases are reported as unresolved; they are never silently truncated. Modified bases and degenerate mixtures require a suitable model. Thermodynamic predictions support ranking and experimental planning, not a blanket claim of primer quality. Nonfinite Tm or a Tm at/below absolute zero is rejected as a calculation/input failure; such a result must not be ranked as an ordinary low-Tm primer.

3. Screen amplification products

Read specificity.md before making a specificity claim. Search each primer on both strands and pair inward-facing binding sites. A binding hit alone is not an amplicon; absence of a reported hit is not proof of absence.

Exhaustive bounded local search

.venv-primer/bin/python "$SKILL_DIR/scripts/screen_specificity.py" \
  --pairs pairs.tsv --reference "$SKILL_DIR/assets/demo-template.fasta" \
  --expected expected.tsv --engine exhaustive \
  --min-product 40 --max-product 1000 --max-mismatches 2 \
  --three-prime-bases 5 --max-three-prime-mismatches 0 \
  --output specificity.json

This enumerates full-length, ungapped binding sites in a bounded local reference and checks F/R, R/F, F/F, and R/R products for each pair. Reference ambiguity is treated conservatively as unresolved sequence; it cannot establish a clean result. The mismatch limits are a search model, not a validated polymerase discrimination rule. Tight 3-prime thresholds can exclude amplifiable mismatched sites; broaden the search when evaluating that uncertainty.

Use --circular RECORD_ID for a circular molecule. Wrapped products use canonical start coordinates and unwrapped ends greater than the reference length; only products spanning at most one molecule are considered. Caps on comparisons, hits, and products prevent unbounded work; hitting a cap makes the result incomplete.

BLAST-assisted local search

.venv-primer/bin/python "$SKILL_DIR/scripts/screen_specificity.py" \
  --pairs pairs.tsv --reference "$SKILL_DIR/assets/demo-template.fasta" \
  --expected expected.tsv --engine blast \
  --min-product 40 --max-product 1000 --max-mismatches 2 \
  --three-prime-bases 5 --max-three-prime-mismatches 0 \
  --output specificity-blast.json

The script builds a temporary local BLAST database, runs short-query alignment, rechecks complete primer-length candidate sites, and records commands and versions. It checks configured hit limits and tool failures. BLAST discovery is heuristic: successful execution and unsaturated limits do not establish exhaustive coverage. The reference is loaded in memory; plan memory and search bounds for large genomes. The small example verifie

Truncated for display — read the full file on GitHub.

Related Skills

View on GitHub
GitHub Stars46.4k
CategoryDevelopment
Updated16d ago
Forks4.2k

Languages

Python

Trust signals

100/100

From repository metadata: license, adoption, age and documentation. Not a code audit — see the Safety scan above for what the skill file itself contains.

No cautions