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Pipeline

ProkBERT-mini-c†

ProkBERT-mini-c† as evaluated in the cited study. Paper genome-scanning gLM pipeline, including filtered region postprocessing; exact encoder checkpoint not inferred from the label

SourcesLAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2

1 evaluation · 6 results

Overview

Key specifications have not been extracted for this record. See the linked evaluation and sources for the reported setup.

limited source coverage · Automated source review, 2026-09-17. All specifications and missing details

Evaluations and results

1 evaluation · 6 results. Different protocols are not a single leaderboard.

Filter evaluations

Applied filters: All linked evaluations

Exact evaluated configurations and original reported results
Tested configurationProtocol and datasetFindingEvidence and details
Pipeline: ProkBERT-mini-c†Protocol: Genome-wide prophage detection (Genome-wide prophage detection)
Dataset: LAMBDA genome-wide prophage test
0.603 Precision
fraction · higher

Uncertainty: Not reported

Coverage: Not reported scored / Not reported eligible

Author-reported evaluation · Source checked
Methods, coverage and source

ProkBERT-mini-c†: Genome-wide prophage detection

Scan complete genomes with overlapping windows and postprocess predictions into prophage regions. Genome-wide metrics are computed at region level and macro-averaged across genomes. Filtered gLM pipelines include normalization, smoothing, clustering and size filtering; these are not standalone encoder scores. 80 bacterial genomes,47 species,four phyla;386 annotated prophage locations.

Aggregation: Not reported

LAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2
Pipeline: ProkBERT-mini-c†Protocol: Genome-wide prophage detection (Genome-wide prophage detection)
Dataset: LAMBDA genome-wide prophage test
0.013 FPR
fraction · lower

Uncertainty: Not reported

Coverage: Not reported scored / Not reported eligible

Author-reported evaluation · Source checked
Methods, coverage and source

ProkBERT-mini-c†: Genome-wide prophage detection

Scan complete genomes with overlapping windows and postprocess predictions into prophage regions. Genome-wide metrics are computed at region level and macro-averaged across genomes. Filtered gLM pipelines include normalization, smoothing, clustering and size filtering; these are not standalone encoder scores. 80 bacterial genomes,47 species,four phyla;386 annotated prophage locations.

Aggregation: Not reported

LAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column FPR; XML row16 column5
Pipeline: ProkBERT-mini-c†Protocol: Genome-wide prophage detection (Genome-wide prophage detection)
Dataset: LAMBDA genome-wide prophage test
0.551 F1
fraction · higher

Uncertainty: Not reported

Coverage: Not reported scored / Not reported eligible

Author-reported evaluation · Source checked
Methods, coverage and source

ProkBERT-mini-c†: Genome-wide prophage detection

Scan complete genomes with overlapping windows and postprocess predictions into prophage regions. Genome-wide metrics are computed at region level and macro-averaged across genomes. Filtered gLM pipelines include normalization, smoothing, clustering and size filtering; these are not standalone encoder scores. 80 bacterial genomes,47 species,four phyla;386 annotated prophage locations.

Aggregation: Not reported

LAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column F1; XML row16 column6
Pipeline: ProkBERT-mini-c†Protocol: Genome-wide prophage detection (Genome-wide prophage detection)
Dataset: LAMBDA genome-wide prophage test
0.572 MCC
unitless · higher

Uncertainty: Not reported

Coverage: Not reported scored / Not reported eligible

Author-reported evaluation · Source checked
Methods, coverage and source

ProkBERT-mini-c†: Genome-wide prophage detection

Scan complete genomes with overlapping windows and postprocess predictions into prophage regions. Genome-wide metrics are computed at region level and macro-averaged across genomes. Filtered gLM pipelines include normalization, smoothing, clustering and size filtering; these are not standalone encoder scores. 80 bacterial genomes,47 species,four phyla;386 annotated prophage locations.

Aggregation: Not reported

LAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column MCC; XML row16 column7
Pipeline: ProkBERT-mini-c†Protocol: Genome-wide prophage detection (Genome-wide prophage detection)
Dataset: LAMBDA genome-wide prophage test
0.632 Recall
fraction · higher

Uncertainty: Not reported

Coverage: Not reported scored / Not reported eligible

Author-reported evaluation · Source checked
Methods, coverage and source

ProkBERT-mini-c†: Genome-wide prophage detection

Scan complete genomes with overlapping windows and postprocess predictions into prophage regions. Genome-wide metrics are computed at region level and macro-averaged across genomes. Filtered gLM pipelines include normalization, smoothing, clustering and size filtering; these are not standalone encoder scores. 80 bacterial genomes,47 species,four phyla;386 annotated prophage locations.

Aggregation: Not reported

LAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column Recall; XML row16 column3
Pipeline: ProkBERT-mini-c†Protocol: Genome-wide prophage detection (Genome-wide prophage detection)
Dataset: LAMBDA genome-wide prophage test
0.987 Specificity
fraction · higher

Uncertainty: Not reported

Coverage: Not reported scored / Not reported eligible

Author-reported evaluation · Source checked
Methods, coverage and source

ProkBERT-mini-c†: Genome-wide prophage detection

Scan complete genomes with overlapping windows and postprocess predictions into prophage regions. Genome-wide metrics are computed at region level and macro-averaged across genomes. Filtered gLM pipelines include normalization, smoothing, clustering and size filtering; these are not standalone encoder scores. 80 bacterial genomes,47 species,four phyla;386 annotated prophage locations.

Aggregation: Not reported

LAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column Specificity; XML row16 column4

Source checking is not independent reproduction. Release 2026-09-29-06401fd5b220.

Use this model

How it works, versions and access

Underlying model: ProkBERT. Results on this page belong to this pipeline and its evaluated settings.

How it works

Evaluation in this paper

Paper genome-scanning gLM pipeline, including filtered region postprocessing; exact encoder checkpoint not inferred from the label

SourcesLAMBDA: A Prophage Detection Benchmark for Genomic Language Models · Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2
Strengths, limitations and unresolved questions

Strengths and limitations

Strengths and considerations

No source-reviewed explanatory claims are recorded here yet.

Limitations and conditions

No source-reviewed explanatory claims are recorded here yet.

Profile review details

Primary-source transcription and separate automated review. No human sign-off or experimental reproduction.

Stable record: paper-model-67baf1dec1a017ac4b

Specifications

Inputs, training, access and other details

Explanatory profile: limited source coverage · Automated source review, 2026-09-17. Review applies to the cited claims; unresolved fields are listed below. Numerical results retain their own review status.

Inputs, outputs and configuration
PropertyDescription and evidence
ComponentsNot extracted or verified for this record.
InputsNot extracted or verified for this record.
OutputsNot extracted or verified for this record.
AdaptationNot extracted or verified for this record.
ImplementationNot extracted or verified for this record.

Evidence

Source checking verifies the cited claim or transcription. It does not establish independent reproduction.

Evidence table

Inspect claims, sources and review details

Trace each statement to its source and review. A context-only reference supports the record generally; it does not verify an individual field. Source checking does not reproduce an experiment.

One row per statement and cited source. Multiple citations are not independent evaluations. Shared locators are labelled explicitly.

4 evidence rows matching the loaded filters

Claims, original sources and review scope · Release 2026-09-29-06401fd5b220
Property and statementOriginal source and locationReview and provenance
Evaluation in this paper
Paper genome-scanning gLM pipeline, including filtered region postprocessing; exact encoder checkpoint not inferred from the label
Individual claims
LAMBDA: A Prophage Detection Benchmark for Genomic Language Models

Original source ↗

Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2

Version: PMC13041943.1
Retrieved: 2026-09-17T07:56:21.006973+00:00

source checked

automated source review · 2026-09-17

Audit details

Primary-source transcription and separate automated review. No human sign-off or experimental reproduction.

Field: attributes.profile.sections.0.body

Source artifact SHA-256: 22c2e218e87dce757907f6086a0e2ad37c13f785b34fff5bea7cfa1a6c276b16

Hash scope: Exact retrieved primary paper artifact bytes.

Inspected artifact

Introduction
ProkBERT-mini-c† as evaluated in the cited study. Paper genome-scanning gLM pipeline, including filtered region postprocessing; exact encoder checkpoint not inferred from the label
Individual claims
LAMBDA: A Prophage Detection Benchmark for Genomic Language Models

Original source ↗

Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2

Version: PMC13041943.1
Retrieved: 2026-09-17T07:56:21.006973+00:00

source checked

automated source review · 2026-09-17

Audit details

Primary-source transcription and separate automated review. No human sign-off or experimental reproduction.

Field: attributes.profile.summary

Source artifact SHA-256: 22c2e218e87dce757907f6086a0e2ad37c13f785b34fff5bea7cfa1a6c276b16

Hash scope: Exact retrieved primary paper artifact bytes.

Inspected artifact

Relationship: uses model
catalog-model-prokbert
Individual claims
nbrg-ppcu/prokbert: README.md

Original source ↗

Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2; ProkBERT official README variant list and primary paper Table 1

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: 8670ae92b816cff158a0b85647a8dea122e251eb
Retrieved: 2026-09-16T19:46:19.913949+00:00

source checked

automated source review · 2026-09-23

Audit details

Source review establishes this relationship only. Exact evaluated configurations and original numerical review status remain unchanged. Catalog model explicitly describes the microbial encoder family including mini, mini-c and mini-long. Preserve paper-specific variant and pipeline identity.

Field: links:uses_model:catalog-model-prokbert

Claim: model-evaluation-identity-5fdc633a440a12942c8a

Source artifact SHA-256: 29de39c6ad006ce704ab14240cfd97af93da411fb63ec89ebe499c2646928cfc

Hash scope: SHA-256 of retrieved original artifact bytes

Format: original_artifact

Inspected artifact

Relationship: uses model
catalog-model-prokbert
Individual claims
LAMBDA: A Prophage Detection Benchmark for Genomic Language Models

Original source ↗

Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2; ProkBERT official README variant list and primary paper Table 1

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: PMC13041943.1
Retrieved: 2026-09-17T07:56:21.006973+00:00

source checked

automated source review · 2026-09-23

Audit details

Source review establishes this relationship only. Exact evaluated configurations and original numerical review status remain unchanged. Catalog model explicitly describes the microbial encoder family including mini, mini-c and mini-long. Preserve paper-specific variant and pipeline identity.

Field: links:uses_model:catalog-model-prokbert

Claim: model-evaluation-identity-5fdc633a440a12942c8a

Source artifact SHA-256: 22c2e218e87dce757907f6086a0e2ad37c13f785b34fff5bea7cfa1a6c276b16

Hash scope: Exact retrieved primary paper artifact bytes.

Inspected artifact

Sources and history

View linked audit checks and correction history

Release 2026-09-29-06401fd5b220 · Record review: needs review

1 source records and release historyDownload this release
Technical metadata and extraction receipts

Stable ID: paper-model-67baf1dec1a017ac4b

areas
microbes-communities
tasks
Genome-wide prophage detection
entity level
method
configuration type
reported_configuration
version
Paper genome-scanning gLM pipeline, including filtered region postprocessing; exact encoder checkpoint not inferred from the label
legacy kinds
model
entity classification
review date: 2026-09-17; rationale: Genome scanning with overlapping windows is followed by per-genome score normalization, smoothing, clustering/merging and size/score filtering to identify prophage regions. The reported row evaluates that complete workflow, not the unprocessed encoder. Preserve the exact source-scoped composition and its results; no additional checkpoint or family equivalence is inferred.; source ids: part2-lambda-prophage-2026; source locator: Table 5., row ProkBERT-mini-c†, column Precision; XML row16 column2 | Table 5 dagger-labelled genome-scanning rows; genome-wide detection Methods; Figure 2 caption; raw versus filtered region evaluation; ambiguities: This is the paper-specific pipeline identity. Missing component versions or checkpoint hashes remain unknown; a shared upstream name does not establish equivalent pipelines.
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