A draft genome sequence of the elusive giant squid, Architeuthis dux

dc.contributor.author da Fonseca, Rute R.
dc.contributor.author Couto, Alvarina
dc.contributor.author Machado, Andre M.
dc.contributor.author Brejova, Brona
dc.contributor.author Albertin, Carolin B.
dc.contributor.author Silva, Filipe
dc.contributor.author Gardner, Paul
dc.contributor.author Baril, Tobias
dc.contributor.author Hayward, Alex
dc.contributor.author Campos, Alexandre
dc.contributor.author Ribeiro, Ângela M.
dc.contributor.author Barrio-Hernandez, Inigo
dc.contributor.author Hoving, Henk-Jan
dc.contributor.author Tafur-Jimenez, Ricardo
dc.contributor.author Chu, Chong
dc.contributor.author Frazão, Barbara
dc.contributor.author Petersen, Bent
dc.contributor.author Peñaloza, Fernando
dc.contributor.author Musacchia, Francesco
dc.contributor.author Alexander, Graham C., Jr.
dc.contributor.author Osório, Hugo
dc.contributor.author Winkelmann, Inger
dc.contributor.author Simakov, Oleg
dc.contributor.author Rasmussen, Simon
dc.contributor.author Rahman, M. Ziaur
dc.contributor.author Pisani, Davide
dc.contributor.author Vinther, Jakob
dc.contributor.author Jarvis, Erich
dc.contributor.author Zhang, Guojie
dc.contributor.author Strugnell, Jan M.
dc.contributor.author Castro, L. Filipe C.
dc.contributor.author Fedrigo, Olivier
dc.contributor.author Patricio, Mateus
dc.contributor.author Li, Qiye
dc.contributor.author Rocha, Sara
dc.contributor.author Antunes, Agostinho
dc.contributor.author Wu, Yufeng
dc.contributor.author Ma, Bin
dc.contributor.author Sanges, Remo
dc.contributor.author Vinar, Tomas
dc.contributor.author Blagoev, Blagoy
dc.contributor.author Sicheritz-Ponten, Thomas
dc.contributor.author Nielsen, Rasmus
dc.contributor.author Gilbert, M. Thomas P.
dc.date.accessioned 2020-03-13T17:36:26Z
dc.date.available 2020-03-13T17:36:26Z
dc.date.issued 2020-01-16
dc.description © The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in da Fonseca, R. R., Couto, A., Machado, A. M., Brejova, B., Albertin, C. B., Silva, F., Gardner, P., Baril, T., Hayward, A., Campos, A., Ribeiro, A. M., Barrio-Hernandez, I., Hoving, H. J., Tafur-Jimenez, R., Chu, C., Frazao, B., Petersen, B., Penaloza, F., Musacchia, F., Alexander, G. C., Osorio, H., Winkelmann, I., Simakov, O., Rasmussen, S., Rahman, M. Z., Pisani, D., Vinther, J., Jarvis, E., Zhang, G., Strugnell, J. M., Castro, L. F. C., Fedrigo, O., Patricio, M., Li, Q., Rocha, S., Antunes, A., Wu, Y., Ma, B., Sanges, R., Vinar, T., Blagoev, B., Sicheritz-Ponten, T., Nielsen, R., & Gilbert, M. T. P. A draft genome sequence of the elusive giant squid, Architeuthis dux. Gigascience, 9(1), (2020): giz152. doi: 10.1093/gigascience/giz152. en_US
dc.description.abstract Background: The giant squid (Architeuthis dux; Steenstrup, 1857) is an enigmatic giant mollusc with a circumglobal distribution in the deep ocean, except in the high Arctic and Antarctic waters. The elusiveness of the species makes it difficult to study. Thus, having a genome assembled for this deep-sea–dwelling species will allow several pending evolutionary questions to be unlocked. Findings: We present a draft genome assembly that includes 200 Gb of Illumina reads, 4 Gb of Moleculo synthetic long reads, and 108 Gb of Chicago libraries, with a final size matching the estimated genome size of 2.7 Gb, and a scaffold N50 of 4.8 Mb. We also present an alternative assembly including 27 Gb raw reads generated using the Pacific Biosciences platform. In addition, we sequenced the proteome of the same individual and RNA from 3 different tissue types from 3 other species of squid (Onychoteuthis banksii, Dosidicus gigas, and Sthenoteuthis oualaniensis) to assist genome annotation. We annotated 33,406 protein-coding genes supported by evidence, and the genome completeness estimated by BUSCO reached 92%. Repetitive regions cover 49.17% of the genome. Conclusions: This annotated draft genome of A. dux provides a critical resource to investigate the unique traits of this species, including its gigantism and key adaptations to deep-sea environments. en_US
dc.description.sponsorship R.R.F. thanks the Villum Fonden for grant VKR023446 (Villum Fonden Young Investigator Grant), the Portuguese Science Foundation (FCT) for grant PTDC/MAR/115347/2009; COMPETE-FCOMP-01-012; FEDER-015453, Marie Curie Actions (FP7-PEOPLE-2010-IEF, Proposal 272927), and the Danish National Research Foundation (DNRF96) for its funding of the Center for Macroecology, Evolution, and Climate. H.O. thanks the Rede Nacional de Espectrometria de Massa, ROTEIRO/0028/2013, ref. LISBOA-01-0145-FEDER-022125, supported by COMPETE and North Portugal Regional Operational Programme (Norte2020), under the PORTUGAL 2020 Partnership Agreement, through the European Regional Development Fund (ERDF). A.C. thanks FCT for project UID/Multi/04423/2019. M.P. acknowledges the support from the Wellcome Trust (grant number WT108749/Z/15/Z) and the European Molecular Biology Laboratory. M.P.T.G. thanks the Danish National Research Foundation for its funding of the Center for GeoGenetics (grant DNRF94) and Lundbeck Foundation for grant R52–5062 on Pathogen Palaeogenomics. S.R. was supported by the Novo Nordisk Foundation grant NNF14CC0001. A.H. is supported by a Biotechnology and Biological Sciences Research Council David Phillips Fellowship (fellowship reference: BB/N020146/1). T.B. is supported by the Biotechnology and Biological Sciences Research Council-funded South West Biosciences Doctoral Training Partnership (training grant reference BB/M009122/1). This work was partially funded by the Lundbeck Foundation (R52-A4895 to B.B.). H.J.T.H. was supported by the David and Lucile Packard Foundation, the Netherlands Organization for Scientific Research (#825.09.016), and currently by the Deutsche Forschungsgemeinschaft (DFG) under grant HO 5569/2-1 (Emmy Noether Junior Research Group). T.V. and B. Brejova were supported by grants from the Slovak grant agency VEGA (1/0684/16, 1/0458/18). F.S. was supported by a PhD grant (SFRH/BD/126560/2016) from FCT. A.A. was partly supported by the FCT project PTDC/CTA-AMB/31774/2017. C.C. and Y.W. are partly supported by grant IIS-1526415 from the US National Science Foundation. Computation for the work described in this article was partially supported by the DeiC National Life Science Supercomputer at DTU. en_US
dc.identifier.citation da Fonseca, R. R., Couto, A., Machado, A. M., Brejova, B., Albertin, C. B., Silva, F., Gardner, P., Baril, T., Hayward, A., Campos, A., Ribeiro, A. M., Barrio-Hernandez, I., Hoving, H. J., Tafur-Jimenez, R., Chu, C., Frazao, B., Petersen, B., Penaloza, F., Musacchia, F., Alexander, G. C., Osorio, H., Winkelmann, I., Simakov, O., Rasmussen, S., Rahman, M. Z., Pisani, D., Vinther, J., Jarvis, E., Zhang, G., Strugnell, J. M., Castro, L. F. C., Fedrigo, O., Patricio, M., Li, Q., Rocha, S., Antunes, A., Wu, Y., Ma, B., Sanges, R., Vinar, T., Blagoev, B., Sicheritz-Ponten, T., Nielsen, R., & Gilbert, M. T. P. (2020). A draft genome sequence of the elusive giant squid, Architeuthis dux. Gigascience, 9(1), giz152. en_US
dc.identifier.doi 10.1093/gigascience/giz152
dc.identifier.uri https://hdl.handle.net/1912/25521
dc.publisher Oxford University Press en_US
dc.relation.uri https://doi.org/10.1093/gigascience/giz152
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/ *
dc.subject Cephalopod en_US
dc.subject Invertebrate en_US
dc.subject Genome assembly en_US
dc.title A draft genome sequence of the elusive giant squid, Architeuthis dux en_US
dc.type Article en_US
dspace.entity.type Publication
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