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The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies

The tribe Triticeae provides important staple cereal crops and contains elite wild species with wide genetic diversity and high tolerance to abiotic stresses. Sea barleygrass (Hordeum marinum Huds.), a wild Triticeae species, thrives in saline marshlands and is well known for its high tolerance to s...

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Autores principales: Kuang, Liuhui, Shen, Qiufang, Chen, Liyang, Ye, Lingzhen, Yan, Tao, Chen, Zhong-Hua, Waugh, Robbie, Li, Qi, Huang, Lu, Cai, Shengguan, Fu, Liangbo, Xing, Pengwei, Wang, Kai, Shao, Jiari, Wu, Feibo, Jiang, Lixi, Wu, Dezhi, Zhang, Guoping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9482977/
https://www.ncbi.nlm.nih.gov/pubmed/35643085
http://dx.doi.org/10.1016/j.xplc.2022.100333
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author Kuang, Liuhui
Shen, Qiufang
Chen, Liyang
Ye, Lingzhen
Yan, Tao
Chen, Zhong-Hua
Waugh, Robbie
Li, Qi
Huang, Lu
Cai, Shengguan
Fu, Liangbo
Xing, Pengwei
Wang, Kai
Shao, Jiari
Wu, Feibo
Jiang, Lixi
Wu, Dezhi
Zhang, Guoping
author_facet Kuang, Liuhui
Shen, Qiufang
Chen, Liyang
Ye, Lingzhen
Yan, Tao
Chen, Zhong-Hua
Waugh, Robbie
Li, Qi
Huang, Lu
Cai, Shengguan
Fu, Liangbo
Xing, Pengwei
Wang, Kai
Shao, Jiari
Wu, Feibo
Jiang, Lixi
Wu, Dezhi
Zhang, Guoping
author_sort Kuang, Liuhui
collection PubMed
description The tribe Triticeae provides important staple cereal crops and contains elite wild species with wide genetic diversity and high tolerance to abiotic stresses. Sea barleygrass (Hordeum marinum Huds.), a wild Triticeae species, thrives in saline marshlands and is well known for its high tolerance to salinity and waterlogging. Here, a 3.82-Gb high-quality reference genome of sea barleygrass is assembled de novo, with 3.69 Gb (96.8%) of its sequences anchored onto seven chromosomes. In total, 41 045 high-confidence (HC) genes are annotated by homology, de novo prediction, and transcriptome analysis. Phylogenetics, non-synonymous/synonymous mutation ratios (Ka/Ks), and transcriptomic and functional analyses provide genetic evidence for the divergence in morphology and salt tolerance among sea barleygrass, barley, and wheat. The large variation in post-domestication genes (e.g. IPA1 and MOC1) may cause interspecies differences in plant morphology. The extremely high salt tolerance of sea barleygrass is mainly attributed to low Na(+) uptake and root-to-shoot translocation, which are mainly controlled by SOS1, HKT, and NHX transporters. Agrobacterium-mediated transformation and CRISPR/Cas9-mediated gene editing systems were developed for sea barleygrass to promote its utilization for exploration and functional studies of hub genes and for the genetic improvement of cereal crops.
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spelling pubmed-94829772022-09-20 The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies Kuang, Liuhui Shen, Qiufang Chen, Liyang Ye, Lingzhen Yan, Tao Chen, Zhong-Hua Waugh, Robbie Li, Qi Huang, Lu Cai, Shengguan Fu, Liangbo Xing, Pengwei Wang, Kai Shao, Jiari Wu, Feibo Jiang, Lixi Wu, Dezhi Zhang, Guoping Plant Commun Research Article The tribe Triticeae provides important staple cereal crops and contains elite wild species with wide genetic diversity and high tolerance to abiotic stresses. Sea barleygrass (Hordeum marinum Huds.), a wild Triticeae species, thrives in saline marshlands and is well known for its high tolerance to salinity and waterlogging. Here, a 3.82-Gb high-quality reference genome of sea barleygrass is assembled de novo, with 3.69 Gb (96.8%) of its sequences anchored onto seven chromosomes. In total, 41 045 high-confidence (HC) genes are annotated by homology, de novo prediction, and transcriptome analysis. Phylogenetics, non-synonymous/synonymous mutation ratios (Ka/Ks), and transcriptomic and functional analyses provide genetic evidence for the divergence in morphology and salt tolerance among sea barleygrass, barley, and wheat. The large variation in post-domestication genes (e.g. IPA1 and MOC1) may cause interspecies differences in plant morphology. The extremely high salt tolerance of sea barleygrass is mainly attributed to low Na(+) uptake and root-to-shoot translocation, which are mainly controlled by SOS1, HKT, and NHX transporters. Agrobacterium-mediated transformation and CRISPR/Cas9-mediated gene editing systems were developed for sea barleygrass to promote its utilization for exploration and functional studies of hub genes and for the genetic improvement of cereal crops. Elsevier 2022-05-05 /pmc/articles/PMC9482977/ /pubmed/35643085 http://dx.doi.org/10.1016/j.xplc.2022.100333 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Kuang, Liuhui
Shen, Qiufang
Chen, Liyang
Ye, Lingzhen
Yan, Tao
Chen, Zhong-Hua
Waugh, Robbie
Li, Qi
Huang, Lu
Cai, Shengguan
Fu, Liangbo
Xing, Pengwei
Wang, Kai
Shao, Jiari
Wu, Feibo
Jiang, Lixi
Wu, Dezhi
Zhang, Guoping
The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies
title The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies
title_full The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies
title_fullStr The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies
title_full_unstemmed The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies
title_short The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies
title_sort genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9482977/
https://www.ncbi.nlm.nih.gov/pubmed/35643085
http://dx.doi.org/10.1016/j.xplc.2022.100333
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