Cargando…

A high-quality chromosomal genome assembly of Diospyros oleifera Cheng

BACKGROUND: Diospyros oleifera Cheng, of the family Ebenaceae, is an economically important tree. Phylogenetic analyses indicate that D. oleifera is closely related to Diospyros kaki Thunb. and could be used as a model plant for studies of D. kaki. Therefore, development of genomic resources of D. o...

Descripción completa

Detalles Bibliográficos
Autores principales: Suo, Yujing, Sun, Peng, Cheng, Huihui, Han, Weijuan, Diao, Songfeng, Li, Huawei, Mai, Yini, Zhao, Xing, Li, Fangdong, Fu, Jianmin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6964648/
https://www.ncbi.nlm.nih.gov/pubmed/31944244
http://dx.doi.org/10.1093/gigascience/giz164
_version_ 1783488492347588608
author Suo, Yujing
Sun, Peng
Cheng, Huihui
Han, Weijuan
Diao, Songfeng
Li, Huawei
Mai, Yini
Zhao, Xing
Li, Fangdong
Fu, Jianmin
author_facet Suo, Yujing
Sun, Peng
Cheng, Huihui
Han, Weijuan
Diao, Songfeng
Li, Huawei
Mai, Yini
Zhao, Xing
Li, Fangdong
Fu, Jianmin
author_sort Suo, Yujing
collection PubMed
description BACKGROUND: Diospyros oleifera Cheng, of the family Ebenaceae, is an economically important tree. Phylogenetic analyses indicate that D. oleifera is closely related to Diospyros kaki Thunb. and could be used as a model plant for studies of D. kaki. Therefore, development of genomic resources of D. oleifera will facilitate auxiliary assembly of the hexaploid persimmon genome and elucidate the molecular mechanisms of important traits. FINDINGS: The D. oleifera genome was assembled with 443.6 Gb of raw reads using the Pacific Bioscience Sequel and Illumina HiSeq X Ten platforms. The final draft genome was ∼812.3 Mb and had a high level of continuity with N50 of 3.36 Mb. Fifteen scaffolds corresponding to the 15 chromosomes were assembled to a final size of 721.5 Mb using 332 scaffolds, accounting for 88.81% of the genome. Repeat sequences accounted for 54.8% of the genome. By de novo sequencing and analysis of homology with other plant species, 30,530 protein-coding genes with an average transcript size of 7,105.40 bp were annotated; of these, 28,580 protein-coding genes (93.61%) had conserved functional motifs or terms. In addition, 171 candidate genes involved in tannin synthesis and deastringency in persimmon were identified; of these chalcone synthase (CHS) genes were expanded in the D. oleifera genome compared with Diospyros lotus, Camellia sinensis, and Vitis vinifera. Moreover, 186 positively selected genes were identified, including chalcone isomerase (CHI) gene, a key enzyme in the flavonoid-anthocyanin pathway. Phylogenetic tree analysis indicated that the split of D. oleifera and D. lotus likely occurred 9.0 million years ago. In addition to the ancient γ event, a second whole-genome duplication event occurred in D. oleifera and D. lotus. CONCLUSIONS: We generated a high-quality chromosome-level draft genome for D. oleifera, which will facilitate assembly of the hexaploid persimmon genome and further studies of major economic traits in the genus Diospyros.
format Online
Article
Text
id pubmed-6964648
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-69646482020-01-23 A high-quality chromosomal genome assembly of Diospyros oleifera Cheng Suo, Yujing Sun, Peng Cheng, Huihui Han, Weijuan Diao, Songfeng Li, Huawei Mai, Yini Zhao, Xing Li, Fangdong Fu, Jianmin Gigascience Data Note BACKGROUND: Diospyros oleifera Cheng, of the family Ebenaceae, is an economically important tree. Phylogenetic analyses indicate that D. oleifera is closely related to Diospyros kaki Thunb. and could be used as a model plant for studies of D. kaki. Therefore, development of genomic resources of D. oleifera will facilitate auxiliary assembly of the hexaploid persimmon genome and elucidate the molecular mechanisms of important traits. FINDINGS: The D. oleifera genome was assembled with 443.6 Gb of raw reads using the Pacific Bioscience Sequel and Illumina HiSeq X Ten platforms. The final draft genome was ∼812.3 Mb and had a high level of continuity with N50 of 3.36 Mb. Fifteen scaffolds corresponding to the 15 chromosomes were assembled to a final size of 721.5 Mb using 332 scaffolds, accounting for 88.81% of the genome. Repeat sequences accounted for 54.8% of the genome. By de novo sequencing and analysis of homology with other plant species, 30,530 protein-coding genes with an average transcript size of 7,105.40 bp were annotated; of these, 28,580 protein-coding genes (93.61%) had conserved functional motifs or terms. In addition, 171 candidate genes involved in tannin synthesis and deastringency in persimmon were identified; of these chalcone synthase (CHS) genes were expanded in the D. oleifera genome compared with Diospyros lotus, Camellia sinensis, and Vitis vinifera. Moreover, 186 positively selected genes were identified, including chalcone isomerase (CHI) gene, a key enzyme in the flavonoid-anthocyanin pathway. Phylogenetic tree analysis indicated that the split of D. oleifera and D. lotus likely occurred 9.0 million years ago. In addition to the ancient γ event, a second whole-genome duplication event occurred in D. oleifera and D. lotus. CONCLUSIONS: We generated a high-quality chromosome-level draft genome for D. oleifera, which will facilitate assembly of the hexaploid persimmon genome and further studies of major economic traits in the genus Diospyros. Oxford University Press 2020-01-16 /pmc/articles/PMC6964648/ /pubmed/31944244 http://dx.doi.org/10.1093/gigascience/giz164 Text en © The Author(s) 2020. Published by Oxford University Press. http://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/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Data Note
Suo, Yujing
Sun, Peng
Cheng, Huihui
Han, Weijuan
Diao, Songfeng
Li, Huawei
Mai, Yini
Zhao, Xing
Li, Fangdong
Fu, Jianmin
A high-quality chromosomal genome assembly of Diospyros oleifera Cheng
title A high-quality chromosomal genome assembly of Diospyros oleifera Cheng
title_full A high-quality chromosomal genome assembly of Diospyros oleifera Cheng
title_fullStr A high-quality chromosomal genome assembly of Diospyros oleifera Cheng
title_full_unstemmed A high-quality chromosomal genome assembly of Diospyros oleifera Cheng
title_short A high-quality chromosomal genome assembly of Diospyros oleifera Cheng
title_sort high-quality chromosomal genome assembly of diospyros oleifera cheng
topic Data Note
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6964648/
https://www.ncbi.nlm.nih.gov/pubmed/31944244
http://dx.doi.org/10.1093/gigascience/giz164
work_keys_str_mv AT suoyujing ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT sunpeng ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT chenghuihui ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT hanweijuan ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT diaosongfeng ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT lihuawei ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT maiyini ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT zhaoxing ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT lifangdong ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT fujianmin ahighqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT suoyujing highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT sunpeng highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT chenghuihui highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT hanweijuan highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT diaosongfeng highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT lihuawei highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT maiyini highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT zhaoxing highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT lifangdong highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng
AT fujianmin highqualitychromosomalgenomeassemblyofdiospyrosoleiferacheng