Cargando…

De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes

Bread wheat is a major crop that has long been the focus of basic and breeding research. Assembly of its genome has been difficult because of its large size and allohexaploid nature (AABBDD genome). Following the first reported assembly of the genome of the experimental strain Chinese Spring (CS), t...

Descripción completa

Detalles Bibliográficos
Autores principales: Shimizu, Kentaro K, Copetti, Dario, Okada, Moeko, Wicker, Thomas, Tameshige, Toshiaki, Hatakeyama, Masaomi, Shimizu-Inatsugi, Rie, Aquino, Catharine, Nishimura, Kazusa, Kobayashi, Fuminori, Murata, Kazuki, Kuo, Tony, Delorean, Emily, Poland, Jesse, Haberer, Georg, Spannagl, Manuel, Mayer, Klaus F X, Gutierrez-Gonzalez, Juan, Muehlbauer, Gary J, Monat, Cecile, Himmelbach, Axel, Padmarasu, Sudharsan, Mascher, Martin, Walkowiak, Sean, Nakazaki, Tetsuya, Ban, Tomohiro, Kawaura, Kanako, Tsuji, Hiroyuki, Pozniak, Curtis, Stein, Nils, Sese, Jun, Nasuda, Shuhei, Handa, Hirokazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7991897/
https://www.ncbi.nlm.nih.gov/pubmed/33244607
http://dx.doi.org/10.1093/pcp/pcaa152
_version_ 1783669266154782720
author Shimizu, Kentaro K
Copetti, Dario
Okada, Moeko
Wicker, Thomas
Tameshige, Toshiaki
Hatakeyama, Masaomi
Shimizu-Inatsugi, Rie
Aquino, Catharine
Nishimura, Kazusa
Kobayashi, Fuminori
Murata, Kazuki
Kuo, Tony
Delorean, Emily
Poland, Jesse
Haberer, Georg
Spannagl, Manuel
Mayer, Klaus F X
Gutierrez-Gonzalez, Juan
Muehlbauer, Gary J
Monat, Cecile
Himmelbach, Axel
Padmarasu, Sudharsan
Mascher, Martin
Walkowiak, Sean
Nakazaki, Tetsuya
Ban, Tomohiro
Kawaura, Kanako
Tsuji, Hiroyuki
Pozniak, Curtis
Stein, Nils
Sese, Jun
Nasuda, Shuhei
Handa, Hirokazu
author_facet Shimizu, Kentaro K
Copetti, Dario
Okada, Moeko
Wicker, Thomas
Tameshige, Toshiaki
Hatakeyama, Masaomi
Shimizu-Inatsugi, Rie
Aquino, Catharine
Nishimura, Kazusa
Kobayashi, Fuminori
Murata, Kazuki
Kuo, Tony
Delorean, Emily
Poland, Jesse
Haberer, Georg
Spannagl, Manuel
Mayer, Klaus F X
Gutierrez-Gonzalez, Juan
Muehlbauer, Gary J
Monat, Cecile
Himmelbach, Axel
Padmarasu, Sudharsan
Mascher, Martin
Walkowiak, Sean
Nakazaki, Tetsuya
Ban, Tomohiro
Kawaura, Kanako
Tsuji, Hiroyuki
Pozniak, Curtis
Stein, Nils
Sese, Jun
Nasuda, Shuhei
Handa, Hirokazu
author_sort Shimizu, Kentaro K
collection PubMed
description Bread wheat is a major crop that has long been the focus of basic and breeding research. Assembly of its genome has been difficult because of its large size and allohexaploid nature (AABBDD genome). Following the first reported assembly of the genome of the experimental strain Chinese Spring (CS), the 10+ Wheat Genomes Project was launched to produce multiple assemblies of worldwide modern cultivars. The only Asian cultivar in the project is Norin 61, a representative Japanese cultivar adapted to grow across a broad latitudinal range, mostly characterized by a wet climate and a short growing season. Here, we characterize the key aspects of its chromosome-scale genome assembly spanning 15 Gb with a raw scaffold N50 of 22 Mb. Analysis of the repetitive elements identified chromosomal regions unique to Norin 61 that encompass a tandem array of the pathogenesis-related 13 family. We report novel copy-number variations in the B homeolog of the florigen gene FT1/VRN3, pseudogenization of its D homeolog and the association of its A homeologous alleles with the spring/winter growth habit. Furthermore, the Norin 61 genome carries typical East Asian functional variants different from CS, ranging from a single nucleotide to multi-Mb scale. Examples of such variation are the Fhb1 locus, which confers Fusarium head-blight resistance, Ppd-D1a, which confers early flowering, Glu-D1f for Asian noodle quality and Rht-D1b, which introduced semi-dwarfism during the green revolution. The adoption of Norin 61 as a reference assembly for functional and evolutionary studies will enable comprehensive characterization of the underexploited Asian bread wheat diversity.
format Online
Article
Text
id pubmed-7991897
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-79918972021-03-31 De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes Shimizu, Kentaro K Copetti, Dario Okada, Moeko Wicker, Thomas Tameshige, Toshiaki Hatakeyama, Masaomi Shimizu-Inatsugi, Rie Aquino, Catharine Nishimura, Kazusa Kobayashi, Fuminori Murata, Kazuki Kuo, Tony Delorean, Emily Poland, Jesse Haberer, Georg Spannagl, Manuel Mayer, Klaus F X Gutierrez-Gonzalez, Juan Muehlbauer, Gary J Monat, Cecile Himmelbach, Axel Padmarasu, Sudharsan Mascher, Martin Walkowiak, Sean Nakazaki, Tetsuya Ban, Tomohiro Kawaura, Kanako Tsuji, Hiroyuki Pozniak, Curtis Stein, Nils Sese, Jun Nasuda, Shuhei Handa, Hirokazu Plant Cell Physiol Rapid Paper Bread wheat is a major crop that has long been the focus of basic and breeding research. Assembly of its genome has been difficult because of its large size and allohexaploid nature (AABBDD genome). Following the first reported assembly of the genome of the experimental strain Chinese Spring (CS), the 10+ Wheat Genomes Project was launched to produce multiple assemblies of worldwide modern cultivars. The only Asian cultivar in the project is Norin 61, a representative Japanese cultivar adapted to grow across a broad latitudinal range, mostly characterized by a wet climate and a short growing season. Here, we characterize the key aspects of its chromosome-scale genome assembly spanning 15 Gb with a raw scaffold N50 of 22 Mb. Analysis of the repetitive elements identified chromosomal regions unique to Norin 61 that encompass a tandem array of the pathogenesis-related 13 family. We report novel copy-number variations in the B homeolog of the florigen gene FT1/VRN3, pseudogenization of its D homeolog and the association of its A homeologous alleles with the spring/winter growth habit. Furthermore, the Norin 61 genome carries typical East Asian functional variants different from CS, ranging from a single nucleotide to multi-Mb scale. Examples of such variation are the Fhb1 locus, which confers Fusarium head-blight resistance, Ppd-D1a, which confers early flowering, Glu-D1f for Asian noodle quality and Rht-D1b, which introduced semi-dwarfism during the green revolution. The adoption of Norin 61 as a reference assembly for functional and evolutionary studies will enable comprehensive characterization of the underexploited Asian bread wheat diversity. Oxford University Press 2020-11-27 /pmc/articles/PMC7991897/ /pubmed/33244607 http://dx.doi.org/10.1093/pcp/pcaa152 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Japanese Society of Plant Physiologists. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Rapid Paper
Shimizu, Kentaro K
Copetti, Dario
Okada, Moeko
Wicker, Thomas
Tameshige, Toshiaki
Hatakeyama, Masaomi
Shimizu-Inatsugi, Rie
Aquino, Catharine
Nishimura, Kazusa
Kobayashi, Fuminori
Murata, Kazuki
Kuo, Tony
Delorean, Emily
Poland, Jesse
Haberer, Georg
Spannagl, Manuel
Mayer, Klaus F X
Gutierrez-Gonzalez, Juan
Muehlbauer, Gary J
Monat, Cecile
Himmelbach, Axel
Padmarasu, Sudharsan
Mascher, Martin
Walkowiak, Sean
Nakazaki, Tetsuya
Ban, Tomohiro
Kawaura, Kanako
Tsuji, Hiroyuki
Pozniak, Curtis
Stein, Nils
Sese, Jun
Nasuda, Shuhei
Handa, Hirokazu
De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes
title De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes
title_full De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes
title_fullStr De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes
title_full_unstemmed De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes
title_short De Novo Genome Assembly of the Japanese Wheat Cultivar Norin 61 Highlights Functional Variation in Flowering Time and Fusarium-Resistant Genes in East Asian Genotypes
title_sort de novo genome assembly of the japanese wheat cultivar norin 61 highlights functional variation in flowering time and fusarium-resistant genes in east asian genotypes
topic Rapid Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7991897/
https://www.ncbi.nlm.nih.gov/pubmed/33244607
http://dx.doi.org/10.1093/pcp/pcaa152
work_keys_str_mv AT shimizukentarok denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT copettidario denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT okadamoeko denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT wickerthomas denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT tameshigetoshiaki denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT hatakeyamamasaomi denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT shimizuinatsugirie denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT aquinocatharine denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT nishimurakazusa denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT kobayashifuminori denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT muratakazuki denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT kuotony denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT deloreanemily denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT polandjesse denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT haberergeorg denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT spannaglmanuel denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT mayerklausfx denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT gutierrezgonzalezjuan denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT muehlbauergaryj denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT monatcecile denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT himmelbachaxel denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT padmarasusudharsan denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT maschermartin denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT walkowiaksean denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT nakazakitetsuya denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT bantomohiro denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT kawaurakanako denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT tsujihiroyuki denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT pozniakcurtis denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT steinnils denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT sesejun denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT nasudashuhei denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes
AT handahirokazu denovogenomeassemblyofthejapanesewheatcultivarnorin61highlightsfunctionalvariationinfloweringtimeandfusariumresistantgenesineastasiangenotypes