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. 2018 Mar;110(2):75-79.
doi: 10.1016/j.ygeno.2017.08.008. Epub 2017 Aug 30.

First de novo whole genome sequencing and assembly of the pink-footed goose

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Free article

First de novo whole genome sequencing and assembly of the pink-footed goose

J M Pujolar et al. Genomics. 2018 Mar.
Free article

Abstract

Annotated genomes can provide new perspectives on the biology of species. We present the first de novo whole genome sequencing for the pink-footed goose. In order to obtain a high-quality de novo assembly the strategy used was to combine one short insert paired-end library with two mate-pair libraries. The pink-footed goose genome was assembled de novo using three different assemblers and an assembly evaluation was subsequently performed in order to choose the best assembler. For our data, ALLPATHS-LG performed the best, since the assembly produced covers most of the genome, while introducing the fewest errors. A total of 26,134 genes were annotated, with bird species accounting for virtually all BLAST hits. We also estimated the substitution rate in the pink-footed goose, which can be of use in future demographic studies, by using a comparative approach with the genome of the chicken, the mallard and the swan goose. A substitution rate of 1.38×10-7 per nucleotide per generation was obtained when comparing the genomes of the two closely-related goose species (the pink-footed and the swan goose). Altogether, we provide a valuable tool for future genomic studies aiming at particular genes and regions of the pink-footed goose genome as well as other bird species.

Keywords: Avian genome; Birds; Geese; Substitution rate; Whole genome sequences.

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