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Single-molecule sequencing and chromatin conformation capture enable de novo reference assembly of the domestic goat genome.

Authors :
Bickhart DM
Rosen BD
Koren S
Sayre BL
Hastie AR
Chan S
Lee J
Lam ET
Liachko I
Sullivan ST
Burton JN
Huson HJ
Nystrom JC
Kelley CM
Hutchison JL
Zhou Y
Sun J
Crisà A
Ponce de León FA
Schwartz JC
Hammond JA
Waldbieser GC
Schroeder SG
Liu GE
Dunham MJ
Shendure J
Sonstegard TS
Phillippy AM
Van Tassell CP
Smith TP
Source :
Nature genetics [Nat Genet] 2017 Apr; Vol. 49 (4), pp. 643-650. Date of Electronic Publication: 2017 Mar 06.
Publication Year :
2017

Abstract

The decrease in sequencing cost and increased sophistication of assembly algorithms for short-read platforms has resulted in a sharp increase in the number of species with genome assemblies. However, these assemblies are highly fragmented, with many gaps, ambiguities, and errors, impeding downstream applications. We demonstrate current state of the art for de novo assembly using the domestic goat (Capra hircus) based on long reads for contig formation, short reads for consensus validation, and scaffolding by optical and chromatin interaction mapping. These combined technologies produced what is, to our knowledge, the most continuous de novo mammalian assembly to date, with chromosome-length scaffolds and only 649 gaps. Our assembly represents a ∼400-fold improvement in continuity due to properly assembled gaps, compared to the previously published C. hircus assembly, and better resolves repetitive structures longer than 1 kb, representing the largest repeat family and immune gene complex yet produced for an individual of a ruminant species.

Details

Language :
English
ISSN :
1546-1718
Volume :
49
Issue :
4
Database :
MEDLINE
Journal :
Nature genetics
Publication Type :
Academic Journal
Accession number :
28263316
Full Text :
https://doi.org/10.1038/ng.3802