Cargando…

High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice

Genes have been lost or weakened from cultivated rice during rice domestication and breeding. Weedy rice (Oryza sativa f. spontanea) is usually recognized as the progeny between cultivated rice and wild rice and is also known to harbor an gene pool for rice breeding. Therefore, identifying genes fro...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Fei, Han, Zhenyun, Qiao, Weihua, Wang, Junrui, Song, Yue, Cui, Yongxia, Li, Jiaqi, Ge, Jinyue, Lou, Danjing, Fan, Weiya, Li, Danting, Nong, Baoxuan, Zhang, Zongqiong, Cheng, Yunlian, Zhang, Lifang, Zheng, Xiaoming, Yang, Qingwen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8639688/
https://www.ncbi.nlm.nih.gov/pubmed/34868173
http://dx.doi.org/10.3389/fpls.2021.775051
_version_ 1784609191379337216
author Li, Fei
Han, Zhenyun
Qiao, Weihua
Wang, Junrui
Song, Yue
Cui, Yongxia
Li, Jiaqi
Ge, Jinyue
Lou, Danjing
Fan, Weiya
Li, Danting
Nong, Baoxuan
Zhang, Zongqiong
Cheng, Yunlian
Zhang, Lifang
Zheng, Xiaoming
Yang, Qingwen
author_facet Li, Fei
Han, Zhenyun
Qiao, Weihua
Wang, Junrui
Song, Yue
Cui, Yongxia
Li, Jiaqi
Ge, Jinyue
Lou, Danjing
Fan, Weiya
Li, Danting
Nong, Baoxuan
Zhang, Zongqiong
Cheng, Yunlian
Zhang, Lifang
Zheng, Xiaoming
Yang, Qingwen
author_sort Li, Fei
collection PubMed
description Genes have been lost or weakened from cultivated rice during rice domestication and breeding. Weedy rice (Oryza sativa f. spontanea) is usually recognized as the progeny between cultivated rice and wild rice and is also known to harbor an gene pool for rice breeding. Therefore, identifying genes from weedy rice germplasms is an important way to break the bottleneck of rice breeding. To discover genes from weedy rice germplasms, we constructed a genetic map based on w-hole-genome sequencing of a F(2) population derived from the cross between LM8 and a cultivated rice variety. We further identified 31 QTLs associated with 12 important agronomic traits and revealed that ORUFILM03g000095 gene may play an important role in grain length regulation and participate in grain formation. To clarify the genomic characteristics from weedy rice germplasms of LM8, we generated a high-quality genome assembly using single-molecule sequencing, Bionano optical mapping, and Hi-C technologies. The genome harbored a total size of 375.8 Mb, a scaffold N50 of 24.1 Mb, and originated approximately 0.32 million years ago (Mya) and was more closely related to Oryza sativa ssp. japonica. and contained 672 unique genes. It is related to the formation of grain shape, heading date and tillering. This study generated a high-quality reference genome of weedy rice and high-density genetic map that would benefit the analysis of genome evolution for related species and suggested an effective way to identify genes related to important agronomic traits for further rice breeding.
format Online
Article
Text
id pubmed-8639688
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-86396882021-12-04 High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice Li, Fei Han, Zhenyun Qiao, Weihua Wang, Junrui Song, Yue Cui, Yongxia Li, Jiaqi Ge, Jinyue Lou, Danjing Fan, Weiya Li, Danting Nong, Baoxuan Zhang, Zongqiong Cheng, Yunlian Zhang, Lifang Zheng, Xiaoming Yang, Qingwen Front Plant Sci Plant Science Genes have been lost or weakened from cultivated rice during rice domestication and breeding. Weedy rice (Oryza sativa f. spontanea) is usually recognized as the progeny between cultivated rice and wild rice and is also known to harbor an gene pool for rice breeding. Therefore, identifying genes from weedy rice germplasms is an important way to break the bottleneck of rice breeding. To discover genes from weedy rice germplasms, we constructed a genetic map based on w-hole-genome sequencing of a F(2) population derived from the cross between LM8 and a cultivated rice variety. We further identified 31 QTLs associated with 12 important agronomic traits and revealed that ORUFILM03g000095 gene may play an important role in grain length regulation and participate in grain formation. To clarify the genomic characteristics from weedy rice germplasms of LM8, we generated a high-quality genome assembly using single-molecule sequencing, Bionano optical mapping, and Hi-C technologies. The genome harbored a total size of 375.8 Mb, a scaffold N50 of 24.1 Mb, and originated approximately 0.32 million years ago (Mya) and was more closely related to Oryza sativa ssp. japonica. and contained 672 unique genes. It is related to the formation of grain shape, heading date and tillering. This study generated a high-quality reference genome of weedy rice and high-density genetic map that would benefit the analysis of genome evolution for related species and suggested an effective way to identify genes related to important agronomic traits for further rice breeding. Frontiers Media S.A. 2021-11-19 /pmc/articles/PMC8639688/ /pubmed/34868173 http://dx.doi.org/10.3389/fpls.2021.775051 Text en Copyright © 2021 Li, Han, Qiao, Wang, Song, Cui, Li, Ge, Lou, Fan, Li, Nong, Zhang, Cheng, Zhang, Zheng and Yang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Li, Fei
Han, Zhenyun
Qiao, Weihua
Wang, Junrui
Song, Yue
Cui, Yongxia
Li, Jiaqi
Ge, Jinyue
Lou, Danjing
Fan, Weiya
Li, Danting
Nong, Baoxuan
Zhang, Zongqiong
Cheng, Yunlian
Zhang, Lifang
Zheng, Xiaoming
Yang, Qingwen
High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice
title High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice
title_full High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice
title_fullStr High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice
title_full_unstemmed High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice
title_short High-Quality Genomes and High-Density Genetic Map Facilitate the Identification of Genes From a Weedy Rice
title_sort high-quality genomes and high-density genetic map facilitate the identification of genes from a weedy rice
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8639688/
https://www.ncbi.nlm.nih.gov/pubmed/34868173
http://dx.doi.org/10.3389/fpls.2021.775051
work_keys_str_mv AT lifei highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT hanzhenyun highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT qiaoweihua highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT wangjunrui highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT songyue highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT cuiyongxia highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT lijiaqi highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT gejinyue highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT loudanjing highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT fanweiya highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT lidanting highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT nongbaoxuan highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT zhangzongqiong highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT chengyunlian highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT zhanglifang highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT zhengxiaoming highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice
AT yangqingwen highqualitygenomesandhighdensitygeneticmapfacilitatetheidentificationofgenesfromaweedyrice