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glyanno vs KLINK

A side-by-side editorial comparison of glyanno and KLINK — release velocity, themes, recent moves, and the top alternatives to consider.

Shared themes:r-packages

glyanno vs KLINK: at a glance

FeatureglyannoKLINK
SectorAnalyticsAnalytics
Velocity score3.82.5
Sparks · 30d10
Top themesglycomics, mass-spectrometry, structure-annotation, databasesforensic-genetics, kinship-testing, str-markers, shiny
Last editorial update46m ago48m ago
WebsiteVisit →Visit →

What is glyanno?

Glycan annotation stops depending on the database having seen the structure before.

glyanno resolves mass spectrometry observations into glycan compositions and structures, converting between m/z, composition and structure, filling in missing detail on partial structures, and mapping results to GlyTouCan accessions. The newest release adds de novo reconstruction of topological N-glycans, falling back to the topological database only when reconstruction is not possible. Batch performance was reworked at the same time, with vector inputs reusing prepared databases and direct lookups instead of repeating setup per element.

Read the full glyanno trajectory →

What is KLINK?

Forensic kinship testing with linked STR markers, now peer-reviewed and taking data from anywhere.

KLINK is a Shiny application and R package for kinship testing that accounts for linkage between STR markers, rather than treating all markers as independent. The built-in genetic map covers 50 common STR markers, pairs them dynamically after data loads, and lets the user set the maximum distance at which a pair counts as linked. Custom marker maps can now arrive as Excel files including KLINK's own download files, and a paper describing the tool was published in FSI:Genetics in 2026.

Read the full KLINK trajectory →

glyanno vs KLINK: editorial side-by-side

G
glyanno
ANALYTICS
3.8

Glycan annotation stops depending on the database having seen the structure before.

◆ Current state

glyanno resolves mass spectrometry observations into glycan compositions and structures, converting between m/z, composition and structure, filling in missing detail on partial structures, and mapping results to GlyTouCan accessions. The newest release adds de novo reconstruction of topological N-glycans, falling back to the topological database only when reconstruction is not possible. Batch performance was reworked at the same time, with vector inputs reusing prepared databases and direct lookups instead of repeating setup per element.

◆ Where it's heading

The consistent theme is making ambiguous results honest and predictable. return_best moved from returning a shortened tibble to a vector aligned with the input, with NA for unmatched glycans; matching concrete compositions against a generic database now errors instead of silently returning nothing; zero-length database arguments are rejected. Alongside that, functions belonging elsewhere have been pushed down into glyrepr rather than duplicated, which is the same boundary discipline visible across this cohort. Version churn is largely driven by upstream: two of the last six entries exist to absorb breaking changes in glyrepr.

◆ Prediction

De novo reconstruction currently covers topological N-glycans only, so extending it to other structure levels or to O-glycans is the natural next step. The performance work suggests batch annotation of full experiments is now the primary use being optimised for.

K
KLINK
ANALYTICS
2.5

Forensic kinship testing with linked STR markers, now peer-reviewed and taking data from anywhere.

◆ Current state

KLINK is a Shiny application and R package for kinship testing that accounts for linkage between STR markers, rather than treating all markers as independent. The built-in genetic map covers 50 common STR markers, pairs them dynamically after data loads, and lets the user set the maximum distance at which a pair counts as linked. Custom marker maps can now arrive as Excel files including KLINK's own download files, and a paper describing the tool was published in FSI:Genetics in 2026.

◆ Where it's heading

The direction is from fixed panel toward general instrument. Hard-coded linkage pairs gave way to dynamic pairing, the built-in map grew from 18 to 50 markers, the map itself was then moved out to the norSTR package, and the app now accepts custom maps in several file formats and decimal conventions. Method capability tracks the upstream pedsuite rather than KLINK itself: special lumping in pedprobr and pedmut is what allowed complex mutation models in common pedigrees, and the newest release pins pedtools 2.11.0 and pedprobr 1.1.0 for faster likelihoods and better handling of looped pedigrees. Much of the remaining work is unglamorous casework ergonomics, replacing stray Norwegian text in Excel output, controlling table heights, fixing karyogram colours.

◆ Prediction

With the map externalised and custom maps loading from multiple formats, the likeliest next step is broader marker-panel coverage through norSTR rather than changes in KLINK itself. Method gains should continue to arrive as pedprobr and pedmut version bumps.

Alternatives to glyanno and KLINK

Other Analytics products tracked by Sparkpulse, ranked by recent ship velocity. Each card links to a full editorial trajectory and lets you pivot into a head-to-head comparison with either glyanno or KLINK.

See all glyanno alternatives → · See all KLINK alternatives →

Recent activity from glyanno and KLINK

Latest ship moves from both products, interleaved chronologically. ⚡ = editorial spark.

  1. 12d agoKLINKExcel marker maps, more robust map loading, and a published paper
  2. 24d agoglyannoDe novo reconstruction of topological N-glycans, with database fallback
  3. 3mo agoglyannoGlyTouCan accession mapping and anomeric position filling
  4. 3mo agoglyannoFixes an enhance_struc() break from glyrepr 0.11.0
  5. 3mo agoKLINKIn-app help pages, a mutation-model setting, and clearer controls
  6. 4mo agoglyannoExplicit empty return from com_to_struc()
  7. 4mo agoglyannoreturn_best output aligns with input length; silent empty matches now error
  8. 5mo agoglyannoto_level parameter removed from enhance_struc()
  9. 1y agoKLINKComplex mutation models become usable via upstream special lumping
  10. 1y agoKLINKDownload fix for XML initials containing hyphens
  11. 1y agoKLINKUnlinked report picks the higher-PIC marker from each pair
  12. 2y agoKLINKMarkers pair dynamically against a 50-marker map, replacing hard-coded pairs

Frequently asked questions

What is the difference between glyanno and KLINK?

Both compete on the same themes — r-packages — within Analytics. glyanno is currently shipping more aggressively (velocity 3.8 vs 2.5), with 1 editorial sparks in the last 30 days against 0. See the at-a-glance table above for a side-by-side breakdown of velocity, recent sparks, and editorial themes.

Is glyanno better than KLINK?

Sparkpulse doesn't pick a winner — we score release velocity, not feature parity. glyanno is currently shipping more aggressively (velocity 3.8 vs 2.5), with 1 editorial sparks in the last 30 days against 0. For your specific use case, the alternatives sections above list other Analytics products to evaluate alongside.

What are the best alternatives to glyanno?

Top glyanno alternatives in Analytics are ranked by recent ship velocity. Browse the "glyanno alternatives" section above for the current picks, or visit /alternatives/glyanno for the full list with editorial commentary on each.

What are the best alternatives to KLINK?

Top KLINK alternatives in Analytics are ranked by recent ship velocity. Browse the "KLINK alternatives" section above for the current picks, or visit /alternatives/klink for the full list with editorial commentary on each.