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The draft genome of Corchorus olitorius cv. JRO-524 (Navin)

Here, we present the draft genome (377.3 Mbp) of Corchorus olitorious cv. JRO-524 (Navin), which is a leading dark jute variety developed from a cross between African (cv. Sudan Green) and indigenous (cv. JRO-632) types. We predicted from the draft genome a total of 57,087 protein-coding genes with...

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Autores principales: Sarkar, Debabrata, Mahato, Ajay Kumar, Satya, Pratik, Kundu, Avijit, Singh, Sangeeta, Jayaswal, Pawan Kumar, Singh, Akshay, Bahadur, Kaushlendra, Pattnaik, Sasmita, Singh, Nisha, Chakraborty, Avrajit, Mandal, Nur Alam, Das, Debajeet, Basu, Tista, Sevanthi, Amitha Mithra, Saha, Dipnarayan, Datta, Subhojit, Kar, Chandan Sourav, Mitra, Jiban, Datta, Karabi, Karmakar, Pran Gobinda, Sharma, Tilak Raj, Mohapatra, Trilochan, Singh, Nagendra Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5432662/
https://www.ncbi.nlm.nih.gov/pubmed/28540183
http://dx.doi.org/10.1016/j.gdata.2017.05.007
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author Sarkar, Debabrata
Mahato, Ajay Kumar
Satya, Pratik
Kundu, Avijit
Singh, Sangeeta
Jayaswal, Pawan Kumar
Singh, Akshay
Bahadur, Kaushlendra
Pattnaik, Sasmita
Singh, Nisha
Chakraborty, Avrajit
Mandal, Nur Alam
Das, Debajeet
Basu, Tista
Sevanthi, Amitha Mithra
Saha, Dipnarayan
Datta, Subhojit
Kar, Chandan Sourav
Mitra, Jiban
Datta, Karabi
Karmakar, Pran Gobinda
Sharma, Tilak Raj
Mohapatra, Trilochan
Singh, Nagendra Kumar
author_facet Sarkar, Debabrata
Mahato, Ajay Kumar
Satya, Pratik
Kundu, Avijit
Singh, Sangeeta
Jayaswal, Pawan Kumar
Singh, Akshay
Bahadur, Kaushlendra
Pattnaik, Sasmita
Singh, Nisha
Chakraborty, Avrajit
Mandal, Nur Alam
Das, Debajeet
Basu, Tista
Sevanthi, Amitha Mithra
Saha, Dipnarayan
Datta, Subhojit
Kar, Chandan Sourav
Mitra, Jiban
Datta, Karabi
Karmakar, Pran Gobinda
Sharma, Tilak Raj
Mohapatra, Trilochan
Singh, Nagendra Kumar
author_sort Sarkar, Debabrata
collection PubMed
description Here, we present the draft genome (377.3 Mbp) of Corchorus olitorious cv. JRO-524 (Navin), which is a leading dark jute variety developed from a cross between African (cv. Sudan Green) and indigenous (cv. JRO-632) types. We predicted from the draft genome a total of 57,087 protein-coding genes with annotated functions. We identified a large number of 1765 disease resistance-like and defense response genes in the jute genome. The annotated genes showed the highest sequence similarities with that of Theobroma cacao followed by Gossypium raimondii. Seven chromosome-scale genetically anchored pseudomolecules were constructed with a total size of 8.53 Mbp and used for synteny analyses with the cocoa and cotton genomes. Like other plant species, gypsy and copia retrotransposons were the most abundant classes of repeat elements in jute. The raw data of our study are available in SRA database of NCBI with accession number SRX1506532. The genome sequence has been deposited at DDBJ/EMBL/GenBank under the accession LLWS00000000, and the version described in this paper will be the first version (LLWS01000000).
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spelling pubmed-54326622017-05-24 The draft genome of Corchorus olitorius cv. JRO-524 (Navin) Sarkar, Debabrata Mahato, Ajay Kumar Satya, Pratik Kundu, Avijit Singh, Sangeeta Jayaswal, Pawan Kumar Singh, Akshay Bahadur, Kaushlendra Pattnaik, Sasmita Singh, Nisha Chakraborty, Avrajit Mandal, Nur Alam Das, Debajeet Basu, Tista Sevanthi, Amitha Mithra Saha, Dipnarayan Datta, Subhojit Kar, Chandan Sourav Mitra, Jiban Datta, Karabi Karmakar, Pran Gobinda Sharma, Tilak Raj Mohapatra, Trilochan Singh, Nagendra Kumar Genom Data Data in Brief Here, we present the draft genome (377.3 Mbp) of Corchorus olitorious cv. JRO-524 (Navin), which is a leading dark jute variety developed from a cross between African (cv. Sudan Green) and indigenous (cv. JRO-632) types. We predicted from the draft genome a total of 57,087 protein-coding genes with annotated functions. We identified a large number of 1765 disease resistance-like and defense response genes in the jute genome. The annotated genes showed the highest sequence similarities with that of Theobroma cacao followed by Gossypium raimondii. Seven chromosome-scale genetically anchored pseudomolecules were constructed with a total size of 8.53 Mbp and used for synteny analyses with the cocoa and cotton genomes. Like other plant species, gypsy and copia retrotransposons were the most abundant classes of repeat elements in jute. The raw data of our study are available in SRA database of NCBI with accession number SRX1506532. The genome sequence has been deposited at DDBJ/EMBL/GenBank under the accession LLWS00000000, and the version described in this paper will be the first version (LLWS01000000). Elsevier 2017-05-07 /pmc/articles/PMC5432662/ /pubmed/28540183 http://dx.doi.org/10.1016/j.gdata.2017.05.007 Text en © 2017 Published by Elsevier Inc. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Data in Brief
Sarkar, Debabrata
Mahato, Ajay Kumar
Satya, Pratik
Kundu, Avijit
Singh, Sangeeta
Jayaswal, Pawan Kumar
Singh, Akshay
Bahadur, Kaushlendra
Pattnaik, Sasmita
Singh, Nisha
Chakraborty, Avrajit
Mandal, Nur Alam
Das, Debajeet
Basu, Tista
Sevanthi, Amitha Mithra
Saha, Dipnarayan
Datta, Subhojit
Kar, Chandan Sourav
Mitra, Jiban
Datta, Karabi
Karmakar, Pran Gobinda
Sharma, Tilak Raj
Mohapatra, Trilochan
Singh, Nagendra Kumar
The draft genome of Corchorus olitorius cv. JRO-524 (Navin)
title The draft genome of Corchorus olitorius cv. JRO-524 (Navin)
title_full The draft genome of Corchorus olitorius cv. JRO-524 (Navin)
title_fullStr The draft genome of Corchorus olitorius cv. JRO-524 (Navin)
title_full_unstemmed The draft genome of Corchorus olitorius cv. JRO-524 (Navin)
title_short The draft genome of Corchorus olitorius cv. JRO-524 (Navin)
title_sort draft genome of corchorus olitorius cv. jro-524 (navin)
topic Data in Brief
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5432662/
https://www.ncbi.nlm.nih.gov/pubmed/28540183
http://dx.doi.org/10.1016/j.gdata.2017.05.007
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