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High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers

Pepper (Capsicum annuum) is an important vegetable crop that has been subjected to intensive breeding, resulting in limited genetic diversity, especially for sweet peppers. Previous studies have reported pepper draft genome assemblies using short read sequencing, but their capture of the extent of l...

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Autores principales: Lee, Joung-Ho, Venkatesh, Jelli, Jo, Jinkwan, Jang, Siyoung, Kim, Geon Woo, Kim, Jung-Min, Han, Koeun, Ro, Nayoung, Lee, Hea-Young, Kwon, Jin-Kyung, Kim, Yong-Min, Lee, Tae-Ho, Choi, Doil, Van Deynze, Allen, Hill, Theresa, Kfir, Nir, Freiman, Aviad, Davila Olivas, Nelson H, Elkind, Yonatan, Paran, Ilan, Kang, Byoung-Cheorl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9715575/
https://www.ncbi.nlm.nih.gov/pubmed/36467270
http://dx.doi.org/10.1093/hr/uhac210
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author Lee, Joung-Ho
Venkatesh, Jelli
Jo, Jinkwan
Jang, Siyoung
Kim, Geon Woo
Kim, Jung-Min
Han, Koeun
Ro, Nayoung
Lee, Hea-Young
Kwon, Jin-Kyung
Kim, Yong-Min
Lee, Tae-Ho
Choi, Doil
Van Deynze, Allen
Hill, Theresa
Kfir, Nir
Freiman, Aviad
Davila Olivas, Nelson H
Elkind, Yonatan
Paran, Ilan
Kang, Byoung-Cheorl
author_facet Lee, Joung-Ho
Venkatesh, Jelli
Jo, Jinkwan
Jang, Siyoung
Kim, Geon Woo
Kim, Jung-Min
Han, Koeun
Ro, Nayoung
Lee, Hea-Young
Kwon, Jin-Kyung
Kim, Yong-Min
Lee, Tae-Ho
Choi, Doil
Van Deynze, Allen
Hill, Theresa
Kfir, Nir
Freiman, Aviad
Davila Olivas, Nelson H
Elkind, Yonatan
Paran, Ilan
Kang, Byoung-Cheorl
author_sort Lee, Joung-Ho
collection PubMed
description Pepper (Capsicum annuum) is an important vegetable crop that has been subjected to intensive breeding, resulting in limited genetic diversity, especially for sweet peppers. Previous studies have reported pepper draft genome assemblies using short read sequencing, but their capture of the extent of large structural variants (SVs), such as presence–absence variants (PAVs), inversions, and copy-number variants (CNVs) in the complex pepper genome falls short. In this study, we sequenced the genomes of representative sweet and hot pepper accessions by long-read and/or linked-read methods and advanced scaffolding technologies. First, we developed a high-quality reference genome for the sweet pepper cultivar ‘Dempsey’ and then used the reference genome to identify SVs in 11 other pepper accessions and constructed a graph-based pan-genome for pepper. We annotated an average of 42 972 gene families in each pepper accession, defining a set of 19 662 core and 23 115 non-core gene families. The new pepper pan-genome includes informative variants, 222 159 PAVs, 12 322 CNVs, and 16 032 inversions. Pan-genome analysis revealed PAVs associated with important agricultural traits, including potyvirus resistance, fruit color, pungency, and pepper fruit orientation. Comparatively, a large number of genes are affected by PAVs, which is positively correlated with the high frequency of transposable elements (TEs), indicating TEs play a key role in shaping the genomic landscape of peppers. The datasets presented herein provide a powerful new genomic resource for genetic analysis and genome-assisted breeding for pepper improvement.
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spelling pubmed-97155752022-12-02 High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers Lee, Joung-Ho Venkatesh, Jelli Jo, Jinkwan Jang, Siyoung Kim, Geon Woo Kim, Jung-Min Han, Koeun Ro, Nayoung Lee, Hea-Young Kwon, Jin-Kyung Kim, Yong-Min Lee, Tae-Ho Choi, Doil Van Deynze, Allen Hill, Theresa Kfir, Nir Freiman, Aviad Davila Olivas, Nelson H Elkind, Yonatan Paran, Ilan Kang, Byoung-Cheorl Hortic Res Article Pepper (Capsicum annuum) is an important vegetable crop that has been subjected to intensive breeding, resulting in limited genetic diversity, especially for sweet peppers. Previous studies have reported pepper draft genome assemblies using short read sequencing, but their capture of the extent of large structural variants (SVs), such as presence–absence variants (PAVs), inversions, and copy-number variants (CNVs) in the complex pepper genome falls short. In this study, we sequenced the genomes of representative sweet and hot pepper accessions by long-read and/or linked-read methods and advanced scaffolding technologies. First, we developed a high-quality reference genome for the sweet pepper cultivar ‘Dempsey’ and then used the reference genome to identify SVs in 11 other pepper accessions and constructed a graph-based pan-genome for pepper. We annotated an average of 42 972 gene families in each pepper accession, defining a set of 19 662 core and 23 115 non-core gene families. The new pepper pan-genome includes informative variants, 222 159 PAVs, 12 322 CNVs, and 16 032 inversions. Pan-genome analysis revealed PAVs associated with important agricultural traits, including potyvirus resistance, fruit color, pungency, and pepper fruit orientation. Comparatively, a large number of genes are affected by PAVs, which is positively correlated with the high frequency of transposable elements (TEs), indicating TEs play a key role in shaping the genomic landscape of peppers. The datasets presented herein provide a powerful new genomic resource for genetic analysis and genome-assisted breeding for pepper improvement. Oxford University Press 2022-09-19 /pmc/articles/PMC9715575/ /pubmed/36467270 http://dx.doi.org/10.1093/hr/uhac210 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (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 Article
Lee, Joung-Ho
Venkatesh, Jelli
Jo, Jinkwan
Jang, Siyoung
Kim, Geon Woo
Kim, Jung-Min
Han, Koeun
Ro, Nayoung
Lee, Hea-Young
Kwon, Jin-Kyung
Kim, Yong-Min
Lee, Tae-Ho
Choi, Doil
Van Deynze, Allen
Hill, Theresa
Kfir, Nir
Freiman, Aviad
Davila Olivas, Nelson H
Elkind, Yonatan
Paran, Ilan
Kang, Byoung-Cheorl
High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers
title High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers
title_full High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers
title_fullStr High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers
title_full_unstemmed High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers
title_short High-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers
title_sort high-quality chromosome-scale genomes facilitate effective identification of large structural variations in hot and sweet peppers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9715575/
https://www.ncbi.nlm.nih.gov/pubmed/36467270
http://dx.doi.org/10.1093/hr/uhac210
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