A Reference Genome Sequence for the European Silver Fir (Abies alba Mill.): A Community-Generated Genomic Resource

Author:

Mosca Elena1,Cruz Fernando2,Gómez-Garrido Jèssica2,Bianco Luca3,Rellstab Christian4,Brodbeck Sabine4,Csilléry Katalin45,Fady Bruno6,Fladung Matthias7,Fussi Barbara8,Gömöry Dušan9,González-Martínez Santiago C10,Grivet Delphine11,Gut Marta212,Hansen Ole Kim13,Heer Katrin14,Kaya Zeki15,Krutovsky Konstantin V161718,Kersten Birgit7,Liepelt Sascha14,Opgenoorth Lars14,Sperisen Christoph4,Ullrich Kristian K19,Vendramin Giovanni G20,Westergren Marjana21,Ziegenhagen Birgit14,Alioto Tyler212,Gugerli Felix4,Heinze Berthold22,Höhn Maria23,Troggio Michela3,Neale David B24

Affiliation:

1. C3A - Centro Agricoltura Alimenti Ambiente, University of Trento, via E. Mach 1, 38010 S. Michele a/Adige (TN), Italy

2. CNAG-CRG, Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, BaldiriReixac 4, 08028 Barcelona, Spain

3. Fondazione Edmund Mach, Via Mach 1, 38010 S. Michele a/Adige (TN), Italy

4. Swiss Federal Research Institute WSL, Zürcherstrasse 111, 8903 Birmensdorf, Switzerland

5. University of Zürich, Department of Evolutionary Biology and Environmental Studies, Winterthurerstrasse 190, CH-8057 Zurich

6. Institut National de la Recherche Agronomique (INRA), Unité de Recherche Ecologie des Forêts Méditerranéennes (URFM), Site Agroparc, Domaine Saint Paul, 84914 Avignon, France

7. Thünen-Institute of Forest Genetics, Sieker Landstr, 2, 22927 Grosshansdorf, Germany

8. Bavarian Office for Forest Seeding and Planting (ASP), Applied Forest Genetics, Forstamtsplatz 1, 83317 Teisendorf, Germany

9. Technical University in Zvolen, TG Masaryka 24, 96053 Zvolen, Slovakia

10. Institut National de la Recherche Agronomique (INRA), UMR1202 Biodiversity, Genes & Communities (BIOGECO), University of Bordeaux, 69, route d’Arcachon, 33610 Cestas, France

11. INIA Forest Research Centre, Carretera de la Coruña km 7.5, 28040 Madrid, Spain

12. Universitat Pompeu Fabra (UPF), Plaça de la Mercè, 10, 08002 Barcelona, Spain

13. Department of Geosciences and Natural Resource Management (IGN), University of Copenhagen, Rolighedsvej 23, 1958 Frederiksberg C, Denmark

14. Philipps-Universität Marburg, Faculty of Biology (PUM), Karl-von-Frisch-Str. 8, 35032 Marburg, Germany

15. Department of Biological Sciences (METU), Middle East Technical University, 06800 Çankaya/Ankara, Turkey

16. Department of Forest Genetics and Forest Tree Breeding, Georg-August University of Göttingen, Büsgenweg 2, 37077 Göttingen, Germany

17. Laboratory of Population Genetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, Gubkina Str. 3, 11991 Moscow, Russia

18. Laboratory of Forest Genomics, Genome Research and Education Center, Institute of Fundamental Biology and Biotechnology, Siberian Federal University, 50a/2 Akademgorodok, 660036 Krasnoyarsk, Russia

19. Max Planck Institute for Evolutionary Biology, Department for Evolutionary Genetics (MPI), August Thienemann Str. 2, 24306 Ploen, Germany

20. Institute of Biosciences and BioResources, National Research Council, Via Madonna del Piano 10,50019 Sesto Fiorentino (Firenze), Italy

21. Slovenian Forestry Institute (SFI), Gozdarskiinštitut Slovenije), Večna pot 2, 1000 Ljubljana, Slovenia

22. Federal Research and Training Centre for Forests, Natural Hazards and Landscape (BFW), Seckendorff-Gudent Weg 8, 1130 Wien, Austria

23. Faculty of Horticultural Science, Department of Botany (SZIU/FHS), Szent Istvan University, 1118 Budapest, Hungary

24. Department of Plant Sciences, University of California at Davis (UCD), Davis 95616

Abstract

Abstract Silver fir (Abies alba Mill.) is a keystone conifer of European montane forest ecosystems that has experienced large fluctuations in population size during during the Quaternary and, more recently, due to land-use change. To forecast the species’ future distribution and survival, it is important to investigate the genetic basis of adaptation to environmental change, notably to extreme events. For this purpose, we here provide a first draft genome assembly and annotation of the silver fir genome, established through a community-based initiative. DNA obtained from haploid megagametophyte and diploid needle tissue was used to construct and sequence Illumina paired-end and mate-pair libraries, respectively, to high depth. The assembled A. alba genome sequence accounted for over 37 million scaffolds corresponding to 18.16 Gb, with a scaffold N50 of 14,051 bp. Despite the fragmented nature of the assembly, a total of 50,757 full-length genes were functionally annotated in the nuclear genome. The chloroplast genome was also assembled into a single scaffold (120,908 bp) that shows a high collinearity with both the A. koreana and A. sibirica complete chloroplast genomes. This first genome assembly of silver fir is an important genomic resource that is now publicly available in support of a new generation of research. By genome-enabling this important conifer, this resource will open the gate for new research and more precise genetic monitoring of European silver fir forests.

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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