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<i>De novo</i> assembly of the cattle reference genome with single-molecule sequencing

2020· article· en· 908 citations· W3011183076 sur OpenAlex· 10.1093/gigascience/giaa021

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Résumé

BACKGROUND: Major advances in selection progress for cattle have been made following the introduction of genomic tools over the past 10-12 years. These tools depend upon the Bos taurus reference genome (UMD3.1.1), which was created using now-outdated technologies and is hindered by a variety of deficiencies and inaccuracies. RESULTS: We present the new reference genome for cattle, ARS-UCD1.2, based on the same animal as the original to facilitate transfer and interpretation of results obtained from the earlier version, but applying a combination of modern technologies in a de novo assembly to increase continuity, accuracy, and completeness. The assembly includes 2.7 Gb and is >250× more continuous than the original assembly, with contig N50 >25 Mb and L50 of 32. We also greatly expanded supporting RNA-based data for annotation that identifies 30,396 total genes (21,039 protein coding). The new reference assembly is accessible in annotated form for public use. CONCLUSIONS: We demonstrate that improved continuity of assembled sequence warrants the adoption of ARS-UCD1.2 as the new cattle reference genome and that increased assembly accuracy will benefit future research on this species.

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La notice

Revue
GigaScience
Thématique
Genetic and phenotypic traits in livestock
Domaine
Biochemistry, Genetics and Molecular Biology
Établissements canadiens
Organismes subventionnaires
National Human Genome Research InstituteBiotechnology and Biological Sciences Research CouncilU.S. National Library of MedicineNational Institute of Food and AgricultureNational Institutes of HealthMinistry of Health, British ColumbiaKorea Health Industry Development InstituteEunice Kennedy Shriver National Institute of Child Health and Human DevelopmentU.S. Department of Agriculture
Mots-clés
Sequence assemblyComputational biologyGenomeBiologyReference genomeGeneticsEvolutionary biologyGene
Résumé présent dans OpenAlex
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