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Integrating gene annotation with orthology inference at scale.

Bogdan M KirilenkoChetan MunegowdaEkaterina OsipovaDavid JebbVirag SharmaMoritz BlumerAriadna E MoralesAlexis-Walid AhmedDimitrios -Georgios KontopoulosLeon HilgersKerstin Lindblad-TohElinor K Karlssonnull nullMichael HillerGregory AndrewsJoel C ArmstrongMatteo BianchiBruce W BirrenKevin R BredemeyerAna M BreitMatthew J ChristmasHiram ClawsonJoana DamasFederica Di PalmaMark DiekhansMichael X DongEduardo EizirikKaili FanCornelia FanterNicole M FoleyKarin Forsberg-NilssonCarlos J GarciaJohn GatesySteven GazalDiane P GenereuxLinda GoodmanJenna GrimshawMichaela K HalseyAndrew J HarrisGlenn HickeyMichael HillerAllyson G HindleRobert M HubleyGraham M HughesJeremy JohnsonDavid JuanIrene M KaplowElinor K KarlssonKathleen C KeoughBogdan KirilenkoKlaus-Peter KoepfliJennifer M KorstianAmanda KowalczykSergey V KozyrevAlyssa J LawlerColleen LawlessThomas LehmannDanielle L LevesqueHarris A LewinXue LiAbigail LindKerstin Lindblad-TohAva Mackay-SmithVoichita D MarinescuTomas Marques-BonetVictor C MasonJennifer R S MeadowsWynn K MeyerJill E MooreLucas R MoreiraDiana D Moreno-SantillanKathleen M MorrillGerard MuntanéWilliam J MurphyArcadi NavarroMartin NweeiaSylvia OrtmannAustin OsmanskiBenedict PatenNicole S PaulatAndreas R PfenningBaDoi N PhanKatherine S PollardHenry E PrattDavid A RaySteven K ReillyJeb R RosenIrina RufLouise RyanOliver A RyderPardis C SabetiDaniel E SchäfferAitor SerresBeth ShapiroArian F A SmitMark SpringerChaitanya SrinivasanCynthia SteinerJessica M StorerKevin A M SullivanPatrick F SullivanElisabeth SundströmMegan A SuppleRoss SwoffordJoy-El TalbotEmma TeelingJason Turner-MaierAlejandro ValenzuelaFranziska WagnerOla WallermanChao WangJuehan WangZhiping WengAryn P WilderMorgan E WirthlinJames R XueXiaomeng Zhang
Published in: Science (New York, N.Y.) (2023)
Annotating coding genes and inferring orthologs are two classical challenges in genomics and evolutionary biology that have traditionally been approached separately, limiting scalability. We present TOGA (Tool to infer Orthologs from Genome Alignments), a method that integrates structural gene annotation and orthology inference. TOGA implements a different paradigm to infer orthologous loci, improves ortholog detection and annotation of conserved genes compared with state-of-the-art methods, and handles even highly fragmented assemblies. TOGA scales to hundreds of genomes, which we demonstrate by applying it to 488 placental mammal and 501 bird assemblies, creating the largest comparative gene resources so far. Additionally, TOGA detects gene losses, enables selection screens, and automatically provides a superior measure of mammalian genome quality. TOGA is a powerful and scalable method to annotate and compare genes in the genomic era.
Keyphrases
  • genome wide
  • copy number
  • genome wide identification
  • dna methylation
  • transcription factor
  • single cell
  • genome wide analysis
  • gene expression
  • quality improvement
  • label free