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A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch

BACKGROUND: Corylus heterophylla Fisch. is a species of the Betulaceae family native to China. As an economically and ecologically important nut tree, C. heterophylla can survive in extremely low temperatures (–30 to –40 °C). To deepen our knowledge of the Betulaceae species and facilitate the use o...

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Autores principales: Zhao, Tiantian, Ma, Wenxu, Yang, Zhen, Liang, Lisong, Chen, Xin, Wang, Guixi, Ma, Qinghua, Wang, Lujun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8054262/
https://www.ncbi.nlm.nih.gov/pubmed/33871007
http://dx.doi.org/10.1093/gigascience/giab027
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author Zhao, Tiantian
Ma, Wenxu
Yang, Zhen
Liang, Lisong
Chen, Xin
Wang, Guixi
Ma, Qinghua
Wang, Lujun
author_facet Zhao, Tiantian
Ma, Wenxu
Yang, Zhen
Liang, Lisong
Chen, Xin
Wang, Guixi
Ma, Qinghua
Wang, Lujun
author_sort Zhao, Tiantian
collection PubMed
description BACKGROUND: Corylus heterophylla Fisch. is a species of the Betulaceae family native to China. As an economically and ecologically important nut tree, C. heterophylla can survive in extremely low temperatures (–30 to –40 °C). To deepen our knowledge of the Betulaceae species and facilitate the use of C. heterophylla for breeding and its genetic improvement, we have sequenced the whole genome of C. heterophylla. FINDINGS: Based on >64.99 Gb (∼175.30×) of Nanopore long reads, we assembled a 370.75-Mb C. heterophylla genome with contig N50 and scaffold N50 sizes of 2.07 and 31.33  Mb, respectively, accounting for 99.23% of the estimated genome size (373.61 Mb). Furthermore, 361.90 Mb contigs were anchored to 11 chromosomes using Hi-C link data, representing 97.61% of the assembled genome sequences. Transcriptomes representing 4 different tissues were sequenced to assist protein-coding gene prediction. A total of 27,591 protein-coding genes were identified, of which 92.02% (25,389) were functionally annotated. The phylogenetic analysis showed that C. heterophylla is close to Ostrya japonica, and they diverged from their common ancestor ∼52.79 million years ago. CONCLUSIONS: We generated a high-quality chromosome-level genome of C. heterophylla. This genome resource will promote research on the molecular mechanisms of how the hazelnut responds to environmental stresses and serves as an important resource for genome-assisted improvement in cold and drought resistance of the Corylus genus.
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spelling pubmed-80542622021-04-22 A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch Zhao, Tiantian Ma, Wenxu Yang, Zhen Liang, Lisong Chen, Xin Wang, Guixi Ma, Qinghua Wang, Lujun Gigascience Data Note BACKGROUND: Corylus heterophylla Fisch. is a species of the Betulaceae family native to China. As an economically and ecologically important nut tree, C. heterophylla can survive in extremely low temperatures (–30 to –40 °C). To deepen our knowledge of the Betulaceae species and facilitate the use of C. heterophylla for breeding and its genetic improvement, we have sequenced the whole genome of C. heterophylla. FINDINGS: Based on >64.99 Gb (∼175.30×) of Nanopore long reads, we assembled a 370.75-Mb C. heterophylla genome with contig N50 and scaffold N50 sizes of 2.07 and 31.33  Mb, respectively, accounting for 99.23% of the estimated genome size (373.61 Mb). Furthermore, 361.90 Mb contigs were anchored to 11 chromosomes using Hi-C link data, representing 97.61% of the assembled genome sequences. Transcriptomes representing 4 different tissues were sequenced to assist protein-coding gene prediction. A total of 27,591 protein-coding genes were identified, of which 92.02% (25,389) were functionally annotated. The phylogenetic analysis showed that C. heterophylla is close to Ostrya japonica, and they diverged from their common ancestor ∼52.79 million years ago. CONCLUSIONS: We generated a high-quality chromosome-level genome of C. heterophylla. This genome resource will promote research on the molecular mechanisms of how the hazelnut responds to environmental stresses and serves as an important resource for genome-assisted improvement in cold and drought resistance of the Corylus genus. Oxford University Press 2021-04-19 /pmc/articles/PMC8054262/ /pubmed/33871007 http://dx.doi.org/10.1093/gigascience/giab027 Text en © The Author(s) 2021. Published by Oxford University Press GigaScience. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Data Note
Zhao, Tiantian
Ma, Wenxu
Yang, Zhen
Liang, Lisong
Chen, Xin
Wang, Guixi
Ma, Qinghua
Wang, Lujun
A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch
title A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch
title_full A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch
title_fullStr A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch
title_full_unstemmed A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch
title_short A chromosome-level reference genome of the hazelnut, Corylus heterophylla Fisch
title_sort chromosome-level reference genome of the hazelnut, corylus heterophylla fisch
topic Data Note
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8054262/
https://www.ncbi.nlm.nih.gov/pubmed/33871007
http://dx.doi.org/10.1093/gigascience/giab027
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