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First draft genome assembly of the Argane tree ( Argania spinosa)

Background: The Argane tree ( Argania spinosa L. Skeels) is an endemic tree of mid-western Morocco that plays an important socioeconomic and ecologic role for a dense human population in an arid zone. Several studies confirmed the importance of this species as a food and feed source and as a resourc...

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Autores principales: Khayi, Slimane, Azza, Nour Elhouda, Gaboun, Fatima, Pirro, Stacy, Badad, Oussama, Claros, M. Gonzalo, Lightfoot, David A., Unver, Turgay, Chaouni, Bouchra, Merrouch, Redouane, Rahim, Bouchra, Essayeh, Soumaya, Ganoudi, Matike, Abdelwahd, Rabha, Diria, Ghizlane, Mdarhi, Meriem Alaoui, Labhilili, Mustapha, Iraqi, Driss, Mouhaddab, Jamila, Sedrati, Hayat, Memari, Majid, Hamamouch, Noureddine, Alché, Juan de Dios, Boukhatem, Noureddine, Mrabet, Rachid, Dahan, Rachid, Legssyer, Adelkhaleq, Khalfaoui, Mohamed, Badraoui, Mohamed, Van de Peer, Yves, Tatusova, Tatiana, El Mousadik, Abdelhamid, Mentag, Rachid, Ghazal, Hassan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: F1000 Research Limited 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238458/
https://www.ncbi.nlm.nih.gov/pubmed/32509273
http://dx.doi.org/10.12688/f1000research.15719.2
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author Khayi, Slimane
Azza, Nour Elhouda
Gaboun, Fatima
Pirro, Stacy
Badad, Oussama
Claros, M. Gonzalo
Lightfoot, David A.
Unver, Turgay
Chaouni, Bouchra
Merrouch, Redouane
Rahim, Bouchra
Essayeh, Soumaya
Ganoudi, Matike
Abdelwahd, Rabha
Diria, Ghizlane
Mdarhi, Meriem Alaoui
Labhilili, Mustapha
Iraqi, Driss
Mouhaddab, Jamila
Sedrati, Hayat
Memari, Majid
Hamamouch, Noureddine
Alché, Juan de Dios
Boukhatem, Noureddine
Mrabet, Rachid
Dahan, Rachid
Legssyer, Adelkhaleq
Khalfaoui, Mohamed
Badraoui, Mohamed
Van de Peer, Yves
Tatusova, Tatiana
El Mousadik, Abdelhamid
Mentag, Rachid
Ghazal, Hassan
author_facet Khayi, Slimane
Azza, Nour Elhouda
Gaboun, Fatima
Pirro, Stacy
Badad, Oussama
Claros, M. Gonzalo
Lightfoot, David A.
Unver, Turgay
Chaouni, Bouchra
Merrouch, Redouane
Rahim, Bouchra
Essayeh, Soumaya
Ganoudi, Matike
Abdelwahd, Rabha
Diria, Ghizlane
Mdarhi, Meriem Alaoui
Labhilili, Mustapha
Iraqi, Driss
Mouhaddab, Jamila
Sedrati, Hayat
Memari, Majid
Hamamouch, Noureddine
Alché, Juan de Dios
Boukhatem, Noureddine
Mrabet, Rachid
Dahan, Rachid
Legssyer, Adelkhaleq
Khalfaoui, Mohamed
Badraoui, Mohamed
Van de Peer, Yves
Tatusova, Tatiana
El Mousadik, Abdelhamid
Mentag, Rachid
Ghazal, Hassan
author_sort Khayi, Slimane
collection PubMed
description Background: The Argane tree ( Argania spinosa L. Skeels) is an endemic tree of mid-western Morocco that plays an important socioeconomic and ecologic role for a dense human population in an arid zone. Several studies confirmed the importance of this species as a food and feed source and as a resource for both pharmaceutical and cosmetic compounds. Unfortunately, the argane tree ecosystem is facing significant threats from environmental changes (global warming, over-population) and over-exploitation. Limited research has been conducted, however, on argane tree genetics and genomics, which hinders its conservation and genetic improvement. Methods: Here, we present a draft genome assembly of A. spinosa. A reliable reference genome of  A. spinosa was created using a hybrid  de novo assembly approach combining short and long sequencing reads. Results: In total, 144 Gb Illumina HiSeq reads and 7.6 Gb PacBio reads were produced and assembled. The final draft genome comprises 75 327 scaffolds totaling 671 Mb with an N50 of 49 916 kb. The draft assembly is close to the genome size estimated by k-mers distribution and covers 89% of complete and 4.3 % of partial Arabidopsis orthologous groups in BUSCO. Conclusion: The A. spinosa genome will be useful for assessing biodiversity leading to efficient conservation of this endangered endemic tree. Furthermore, the genome may enable genome-assisted cultivar breeding, and provide a better understanding of important metabolic pathways and their underlying genes for both cosmetic and pharmacological.
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spelling pubmed-72384582020-06-04 First draft genome assembly of the Argane tree ( Argania spinosa) Khayi, Slimane Azza, Nour Elhouda Gaboun, Fatima Pirro, Stacy Badad, Oussama Claros, M. Gonzalo Lightfoot, David A. Unver, Turgay Chaouni, Bouchra Merrouch, Redouane Rahim, Bouchra Essayeh, Soumaya Ganoudi, Matike Abdelwahd, Rabha Diria, Ghizlane Mdarhi, Meriem Alaoui Labhilili, Mustapha Iraqi, Driss Mouhaddab, Jamila Sedrati, Hayat Memari, Majid Hamamouch, Noureddine Alché, Juan de Dios Boukhatem, Noureddine Mrabet, Rachid Dahan, Rachid Legssyer, Adelkhaleq Khalfaoui, Mohamed Badraoui, Mohamed Van de Peer, Yves Tatusova, Tatiana El Mousadik, Abdelhamid Mentag, Rachid Ghazal, Hassan F1000Res Research Article Background: The Argane tree ( Argania spinosa L. Skeels) is an endemic tree of mid-western Morocco that plays an important socioeconomic and ecologic role for a dense human population in an arid zone. Several studies confirmed the importance of this species as a food and feed source and as a resource for both pharmaceutical and cosmetic compounds. Unfortunately, the argane tree ecosystem is facing significant threats from environmental changes (global warming, over-population) and over-exploitation. Limited research has been conducted, however, on argane tree genetics and genomics, which hinders its conservation and genetic improvement. Methods: Here, we present a draft genome assembly of A. spinosa. A reliable reference genome of  A. spinosa was created using a hybrid  de novo assembly approach combining short and long sequencing reads. Results: In total, 144 Gb Illumina HiSeq reads and 7.6 Gb PacBio reads were produced and assembled. The final draft genome comprises 75 327 scaffolds totaling 671 Mb with an N50 of 49 916 kb. The draft assembly is close to the genome size estimated by k-mers distribution and covers 89% of complete and 4.3 % of partial Arabidopsis orthologous groups in BUSCO. Conclusion: The A. spinosa genome will be useful for assessing biodiversity leading to efficient conservation of this endangered endemic tree. Furthermore, the genome may enable genome-assisted cultivar breeding, and provide a better understanding of important metabolic pathways and their underlying genes for both cosmetic and pharmacological. F1000 Research Limited 2020-05-04 /pmc/articles/PMC7238458/ /pubmed/32509273 http://dx.doi.org/10.12688/f1000research.15719.2 Text en Copyright: © 2020 Khayi S et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Khayi, Slimane
Azza, Nour Elhouda
Gaboun, Fatima
Pirro, Stacy
Badad, Oussama
Claros, M. Gonzalo
Lightfoot, David A.
Unver, Turgay
Chaouni, Bouchra
Merrouch, Redouane
Rahim, Bouchra
Essayeh, Soumaya
Ganoudi, Matike
Abdelwahd, Rabha
Diria, Ghizlane
Mdarhi, Meriem Alaoui
Labhilili, Mustapha
Iraqi, Driss
Mouhaddab, Jamila
Sedrati, Hayat
Memari, Majid
Hamamouch, Noureddine
Alché, Juan de Dios
Boukhatem, Noureddine
Mrabet, Rachid
Dahan, Rachid
Legssyer, Adelkhaleq
Khalfaoui, Mohamed
Badraoui, Mohamed
Van de Peer, Yves
Tatusova, Tatiana
El Mousadik, Abdelhamid
Mentag, Rachid
Ghazal, Hassan
First draft genome assembly of the Argane tree ( Argania spinosa)
title First draft genome assembly of the Argane tree ( Argania spinosa)
title_full First draft genome assembly of the Argane tree ( Argania spinosa)
title_fullStr First draft genome assembly of the Argane tree ( Argania spinosa)
title_full_unstemmed First draft genome assembly of the Argane tree ( Argania spinosa)
title_short First draft genome assembly of the Argane tree ( Argania spinosa)
title_sort first draft genome assembly of the argane tree ( argania spinosa)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238458/
https://www.ncbi.nlm.nih.gov/pubmed/32509273
http://dx.doi.org/10.12688/f1000research.15719.2
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