Decoding the oak genome: public release of sequence data, assembly, annotation and publication strategies

福斯密德 生物 康蒂格 基因组 顺序装配 基因组计划 全基因组测序 遗传学 计算生物学 参考基因组 霰弹枪测序 DNA测序 注释 基因 转录组 植物 基因表达
作者
Christophe Plomion,Jean‐Marc Aury,Joëlle Amselem,Tina Alaeitabar,Valérie Barbe,Caroline Belser,Hélène Berges,Catherine Bodénès,Nathalie Boudet,Christophe Boury,Aurélie Canaguier,Arnaud Couloux,Corinne Da Silva,Sébastien Duplessis,François Ehrenmann,Barbara Estrada-Mairey,Stéphanie Fouteau,Nicolas Francillonne,Christine Gaspin,Cécile Guichard,Christophe Klopp,Karine Labadie,Céline Lalanne,Isabelle Le Clainche,Jean‐Charles Leplé,Grégoire Le Provost,Thibault Leroy,Isabelle Lesur,Francis Martin,Jonathan Mercier,Célia Michotey,Florent Murat,Franck Salin,Delphine Steinbach,Patricia Faivre‐Rampant,Patrick Wincker,Jérôme Salse,Hadi Quesneville,Antoine Kremer
出处
期刊:Molecular Ecology Resources [Wiley]
卷期号:16 (1): 254-265 被引量:115
标识
DOI:10.1111/1755-0998.12425
摘要

Abstract The 1.5 Gbp/2C genome of pedunculate oak ( Quercus robur ) has been sequenced. A strategy was established for dealing with the challenges imposed by the sequencing of such a large, complex and highly heterozygous genome by a whole‐genome shotgun ( WGS ) approach, without the use of costly and time‐consuming methods, such as fosmid or BAC clone‐based hierarchical sequencing methods. The sequencing strategy combined short and long reads. Over 49 million reads provided by Roche 454 GS ‐ FLX technology were assembled into contigs and combined with shorter Illumina sequence reads from paired‐end and mate‐pair libraries of different insert sizes, to build scaffolds. Errors were corrected and gaps filled with Illumina paired‐end reads and contaminants detected, resulting in a total of 17 910 scaffolds (>2 kb) corresponding to 1.34 Gb. Fifty per cent of the assembly was accounted for by 1468 scaffolds (N50 of 260 kb). Initial comparison with the phylogenetically related Prunus persica gene model indicated that genes for 84.6% of the proteins present in peach (mean protein coverage of 90.5%) were present in our assembly. The second and third steps in this project are genome annotation and the assignment of scaffolds to the oak genetic linkage map. In accordance with the Bermuda and Fort Lauderdale agreements and the more recent Toronto Statement, the oak genome data have been released into public sequence repositories in advance of publication. In this presubmission paper, the oak genome consortium describes its principal lines of work and future directions for analyses of the nature, function and evolution of the oak genome.
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