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A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley

Barley is a diploid species with a genome smaller than those of other members of the Triticeae tribe, making it an attractive model for genetic studies in Triticeae crops. The recent development of barley genomics has created a need for a high-throughput platform to identify genetically uniform muta...

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Autores principales: Jiang, Congcong, Lei, Miaomiao, Guo, Yu, Gao, Guangqi, Shi, Lijie, Jin, Yanlong, Cai, Yu, Himmelbach, Axel, Zhou, Shenghui, He, Qiang, Yao, Xuefeng, Kan, Jinhong, Haberer, Georg, Duan, Fengying, Li, Lihui, Liu, Jun, Zhang, Jing, Spannagl, Manuel, Liu, Chunming, Stein, Nils, Feng, Zongyun, Mascher, Martin, Yang, Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9284286/
https://www.ncbi.nlm.nih.gov/pubmed/35605197
http://dx.doi.org/10.1016/j.xplc.2022.100317
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author Jiang, Congcong
Lei, Miaomiao
Guo, Yu
Gao, Guangqi
Shi, Lijie
Jin, Yanlong
Cai, Yu
Himmelbach, Axel
Zhou, Shenghui
He, Qiang
Yao, Xuefeng
Kan, Jinhong
Haberer, Georg
Duan, Fengying
Li, Lihui
Liu, Jun
Zhang, Jing
Spannagl, Manuel
Liu, Chunming
Stein, Nils
Feng, Zongyun
Mascher, Martin
Yang, Ping
author_facet Jiang, Congcong
Lei, Miaomiao
Guo, Yu
Gao, Guangqi
Shi, Lijie
Jin, Yanlong
Cai, Yu
Himmelbach, Axel
Zhou, Shenghui
He, Qiang
Yao, Xuefeng
Kan, Jinhong
Haberer, Georg
Duan, Fengying
Li, Lihui
Liu, Jun
Zhang, Jing
Spannagl, Manuel
Liu, Chunming
Stein, Nils
Feng, Zongyun
Mascher, Martin
Yang, Ping
author_sort Jiang, Congcong
collection PubMed
description Barley is a diploid species with a genome smaller than those of other members of the Triticeae tribe, making it an attractive model for genetic studies in Triticeae crops. The recent development of barley genomics has created a need for a high-throughput platform to identify genetically uniform mutants for gene function investigations. In this study, we report an ethyl methanesulfonate (EMS)-mutagenized population consisting of 8525 M(3) lines in the barley landrace “Hatiexi” (HTX), which we complement with a high-quality de novo assembly of a reference genome for this genotype. The mutation rate within the population ranged from 1.51 to 4.09 mutations per megabase, depending on the treatment dosage of EMS and the mutation discrimination platform used for genotype analysis. We implemented a three-dimensional DNA pooling strategy combined with multiplexed amplicon sequencing to create a highly efficient and cost-effective TILLING (targeting induced locus lesion in genomes) platform in barley. Mutations were successfully identified from 72 mixed amplicons within a DNA pool containing 64 individual mutants and from 56 mixed amplicons within a pool containing 144 individuals. We discovered abundant allelic mutants for dozens of genes, including the barley Green Revolution contributor gene Brassinosteroid insensitive 1 (BRI1). As a proof of concept, we rapidly determined the causal gene responsible for a chlorotic mutant by following the MutMap strategy, demonstrating the value of this resource to support forward and reverse genetic studies in barley.
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spelling pubmed-92842862022-07-16 A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley Jiang, Congcong Lei, Miaomiao Guo, Yu Gao, Guangqi Shi, Lijie Jin, Yanlong Cai, Yu Himmelbach, Axel Zhou, Shenghui He, Qiang Yao, Xuefeng Kan, Jinhong Haberer, Georg Duan, Fengying Li, Lihui Liu, Jun Zhang, Jing Spannagl, Manuel Liu, Chunming Stein, Nils Feng, Zongyun Mascher, Martin Yang, Ping Plant Commun Resource Article Barley is a diploid species with a genome smaller than those of other members of the Triticeae tribe, making it an attractive model for genetic studies in Triticeae crops. The recent development of barley genomics has created a need for a high-throughput platform to identify genetically uniform mutants for gene function investigations. In this study, we report an ethyl methanesulfonate (EMS)-mutagenized population consisting of 8525 M(3) lines in the barley landrace “Hatiexi” (HTX), which we complement with a high-quality de novo assembly of a reference genome for this genotype. The mutation rate within the population ranged from 1.51 to 4.09 mutations per megabase, depending on the treatment dosage of EMS and the mutation discrimination platform used for genotype analysis. We implemented a three-dimensional DNA pooling strategy combined with multiplexed amplicon sequencing to create a highly efficient and cost-effective TILLING (targeting induced locus lesion in genomes) platform in barley. Mutations were successfully identified from 72 mixed amplicons within a DNA pool containing 64 individual mutants and from 56 mixed amplicons within a pool containing 144 individuals. We discovered abundant allelic mutants for dozens of genes, including the barley Green Revolution contributor gene Brassinosteroid insensitive 1 (BRI1). As a proof of concept, we rapidly determined the causal gene responsible for a chlorotic mutant by following the MutMap strategy, demonstrating the value of this resource to support forward and reverse genetic studies in barley. Elsevier 2022-03-12 /pmc/articles/PMC9284286/ /pubmed/35605197 http://dx.doi.org/10.1016/j.xplc.2022.100317 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Resource Article
Jiang, Congcong
Lei, Miaomiao
Guo, Yu
Gao, Guangqi
Shi, Lijie
Jin, Yanlong
Cai, Yu
Himmelbach, Axel
Zhou, Shenghui
He, Qiang
Yao, Xuefeng
Kan, Jinhong
Haberer, Georg
Duan, Fengying
Li, Lihui
Liu, Jun
Zhang, Jing
Spannagl, Manuel
Liu, Chunming
Stein, Nils
Feng, Zongyun
Mascher, Martin
Yang, Ping
A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley
title A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley
title_full A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley
title_fullStr A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley
title_full_unstemmed A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley
title_short A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley
title_sort reference-guided tilling by amplicon-sequencing platform supports forward and reverse genetics in barley
topic Resource Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9284286/
https://www.ncbi.nlm.nih.gov/pubmed/35605197
http://dx.doi.org/10.1016/j.xplc.2022.100317
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