The Gene Ontology Consortium (GOC) provides the most comprehensive resource currently available for computable knowledge regarding the functions of genes and gene products. Here, we report the advances of the consortium over the past two years. The new GO-CAM annotation framework was notably improved, and we formalized the model with a computational schema to check and validate the rapidly increasing repository of 2838 GO-CAMs. In addition, we describe the impacts of several collaborations to refine GO and report a 10% increase in the number of GO annotations, a 25% increase in annotated gene products, and over 9,400 new scientific articles annotated. As the project matures, we continue our efforts to review older annotations in light of newer findings, and, to maintain consistency with other ontologies. As a result, 20 000 annotations derived from experimental data were reviewed, corresponding to 2.5% of experimental GO annotations. The website (http://geneontology.org) was redesigned for quick access to documentation, downloads and tools. To maintain an accurate resource and support traceability and reproducibility, we have made available a historical archive covering the past 15 years of GO data with a consistent format and file structure for both the ontology and annotations.

The Gene Ontology resource: enriching a GOld mine / Carbon, S; Douglass, E; Good, Bm; Unni, Dr; Harris, Nl; Mungall, Cj; Basu, S; Chisholm, Rl; Dodson, Rj; Hartline, E; Fey, P; Thomas, Pd; Albou, Lp; Ebert, D; Kesling, Mj; Mi, Hy; Muruganujan, A; Huang, Xs; Mushayahama, T; Labonte, Sa; Siegele, Da; Antonazzo, G; Attrill, H; Brown, Nh; Garapati, P; Marygold, Sj; Trovisco, V; Dos Santos, G; Falls, K; Tabone, C; Zhou, Pl; Goodman, Jl; Strelets, Vb; Thurmond, J; Garmiri, P; Ishtiaq, R; Rodriguez-Lopez, M; Acencio, Ml; Kuiper, M; Laegreid, A; Logie, C; Lovering, Rc; Kramarz, B; Saverimuttu, Scc; Pinheiro, Sm; Gunn, H; Su, Rz; Thurlow, Ke; Chibucos, M; Giglio, M; Nadendla, S; Munro, J; Jackson, R; Duesbury, Mj; Del-Toro, N; Meldal, Bhm; Paneerselvam, K; Perfetto, L; Porras, P; Orchard, S; Shrivastava, A; Chang, Hy; Finn, Rd; Mitchell, Al; Rawlings, Nd; Richardson, L; Sangrador-Vegas, A; Blake, Ja; Christie, Kr; Dolan, Me; Drabkin, Hj; Hill, Dp; Ni, L; Sitnikov, Dm; Harris, Ma; Oliver, Sg; Rutherford, K; Wood, V; Hayles, J; Bahler, J; Bolton, Er; De Pons, Jl; Dwinell, Mr; Hayman, Gt; Kaldunski, Ml; Kwitek, Ae; Laulederkind, Sjf; Plasterer, C; Tutaj, Ma; Vedi, M; Wang, Sj; D'Eustachio, P; Matthews, L; Balhoff, Jp; Aleksander, Sa; Alexander, Mj; Cherry, Jm; Engel, Sr; Gondwe, F; Karra, K; Miyasato, Sr; Nash, Rs; Simison, M; Skrzypek, Ms; Weng, S; Wong, Ed; Feuermann, M; Gaudet, P; Morgat, A; Bakker, E; Berardini, Tz; Reiser, L; Subramaniam, S; Huala, E; Arighi, Cn; Auchincloss, A; Axelsen, K; Argoud-Puy, G; Bateman, A; Blatter, Mc; Boutet, E; Bowler, E; Breuza, L; Bridge, A; Britto, R; Bye-A-Jee, H; Casas, Cc; Coudert, E; Denny, P; Estreicher, A; Famiglietti, Ml; Georghiou, G; Gos, A; Gruaz-Gumowski, N; Hatton-Ellis, E; Hulo, C; Ignatchenko, A; Jungo, F; Laiho, K; Le Mercier, P; Lieberherr, D; Lock, A; Lussi, Y; Macdougall, A; Magrane, M; Martin, Mj; Masson, P; Natale, Da; Hyka-Nouspikel, N; Orchard, S; Pedruzzi, I; Pourcel, L; Poux, S; Pundir, S; Rivoire, C; Speretta, E; Sundaram, S; Tyagi, N; Warner, K; Zaru, R; Wu, Ch; Diehl, Ad; Chan, Jn; Grove, C; Lee, Ryn; Muller, Hm; Raciti, D; Van Auken, K; Sternberg, Pw; Berriman, M; Paulini, M; Howe, K; Gao, S; Wright, A; Stein, L; Howe, Dg; Toro, S; Westerfield, M; Jaiswal, P; Cooper, L; Elser, J. - In: NUCLEIC ACIDS RESEARCH. - ISSN 0305-1048. - 49:D1(2021), pp. 325-334. [10.1093/nar/gkaa1113]

The Gene Ontology resource: enriching a GOld mine

Perfetto L;
2021

Abstract

The Gene Ontology Consortium (GOC) provides the most comprehensive resource currently available for computable knowledge regarding the functions of genes and gene products. Here, we report the advances of the consortium over the past two years. The new GO-CAM annotation framework was notably improved, and we formalized the model with a computational schema to check and validate the rapidly increasing repository of 2838 GO-CAMs. In addition, we describe the impacts of several collaborations to refine GO and report a 10% increase in the number of GO annotations, a 25% increase in annotated gene products, and over 9,400 new scientific articles annotated. As the project matures, we continue our efforts to review older annotations in light of newer findings, and, to maintain consistency with other ontologies. As a result, 20 000 annotations derived from experimental data were reviewed, corresponding to 2.5% of experimental GO annotations. The website (http://geneontology.org) was redesigned for quick access to documentation, downloads and tools. To maintain an accurate resource and support traceability and reproducibility, we have made available a historical archive covering the past 15 years of GO data with a consistent format and file structure for both the ontology and annotations.
2021
Gene Ontology; Data curation; GO-CAMs
01 Pubblicazione su rivista::01a Articolo in rivista
The Gene Ontology resource: enriching a GOld mine / Carbon, S; Douglass, E; Good, Bm; Unni, Dr; Harris, Nl; Mungall, Cj; Basu, S; Chisholm, Rl; Dodson, Rj; Hartline, E; Fey, P; Thomas, Pd; Albou, Lp; Ebert, D; Kesling, Mj; Mi, Hy; Muruganujan, A; Huang, Xs; Mushayahama, T; Labonte, Sa; Siegele, Da; Antonazzo, G; Attrill, H; Brown, Nh; Garapati, P; Marygold, Sj; Trovisco, V; Dos Santos, G; Falls, K; Tabone, C; Zhou, Pl; Goodman, Jl; Strelets, Vb; Thurmond, J; Garmiri, P; Ishtiaq, R; Rodriguez-Lopez, M; Acencio, Ml; Kuiper, M; Laegreid, A; Logie, C; Lovering, Rc; Kramarz, B; Saverimuttu, Scc; Pinheiro, Sm; Gunn, H; Su, Rz; Thurlow, Ke; Chibucos, M; Giglio, M; Nadendla, S; Munro, J; Jackson, R; Duesbury, Mj; Del-Toro, N; Meldal, Bhm; Paneerselvam, K; Perfetto, L; Porras, P; Orchard, S; Shrivastava, A; Chang, Hy; Finn, Rd; Mitchell, Al; Rawlings, Nd; Richardson, L; Sangrador-Vegas, A; Blake, Ja; Christie, Kr; Dolan, Me; Drabkin, Hj; Hill, Dp; Ni, L; Sitnikov, Dm; Harris, Ma; Oliver, Sg; Rutherford, K; Wood, V; Hayles, J; Bahler, J; Bolton, Er; De Pons, Jl; Dwinell, Mr; Hayman, Gt; Kaldunski, Ml; Kwitek, Ae; Laulederkind, Sjf; Plasterer, C; Tutaj, Ma; Vedi, M; Wang, Sj; D'Eustachio, P; Matthews, L; Balhoff, Jp; Aleksander, Sa; Alexander, Mj; Cherry, Jm; Engel, Sr; Gondwe, F; Karra, K; Miyasato, Sr; Nash, Rs; Simison, M; Skrzypek, Ms; Weng, S; Wong, Ed; Feuermann, M; Gaudet, P; Morgat, A; Bakker, E; Berardini, Tz; Reiser, L; Subramaniam, S; Huala, E; Arighi, Cn; Auchincloss, A; Axelsen, K; Argoud-Puy, G; Bateman, A; Blatter, Mc; Boutet, E; Bowler, E; Breuza, L; Bridge, A; Britto, R; Bye-A-Jee, H; Casas, Cc; Coudert, E; Denny, P; Estreicher, A; Famiglietti, Ml; Georghiou, G; Gos, A; Gruaz-Gumowski, N; Hatton-Ellis, E; Hulo, C; Ignatchenko, A; Jungo, F; Laiho, K; Le Mercier, P; Lieberherr, D; Lock, A; Lussi, Y; Macdougall, A; Magrane, M; Martin, Mj; Masson, P; Natale, Da; Hyka-Nouspikel, N; Orchard, S; Pedruzzi, I; Pourcel, L; Poux, S; Pundir, S; Rivoire, C; Speretta, E; Sundaram, S; Tyagi, N; Warner, K; Zaru, R; Wu, Ch; Diehl, Ad; Chan, Jn; Grove, C; Lee, Ryn; Muller, Hm; Raciti, D; Van Auken, K; Sternberg, Pw; Berriman, M; Paulini, M; Howe, K; Gao, S; Wright, A; Stein, L; Howe, Dg; Toro, S; Westerfield, M; Jaiswal, P; Cooper, L; Elser, J. - In: NUCLEIC ACIDS RESEARCH. - ISSN 0305-1048. - 49:D1(2021), pp. 325-334. [10.1093/nar/gkaa1113]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1660163
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