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Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae

Triticeae species, including wheat, barley, and rye, are critical for global food security. Mapping agronomically important genes is crucial for elucidating molecular mechanisms and improving crops. However, Triticeae includes many wild relatives with desirable agronomic traits, and frequent introgr...

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Detalles Bibliográficos
Autores principales: Zhao, Fei, Tian, Shilong, Wu, Qiuhong, Li, Zijuan, Ye, Luhuan, Zhuang, Yili, Wang, Meiyue, Xie, Yilin, Zou, Shenghao, Teng, Wan, Tong, Yiping, Tang, Dingzhong, Mahato, Ajay Kumar, Benhamed, Moussa, Liu, Zhiyong, Zhang, Yijing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9284283/
https://www.ncbi.nlm.nih.gov/pubmed/35605195
http://dx.doi.org/10.1016/j.xplc.2022.100304
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author Zhao, Fei
Tian, Shilong
Wu, Qiuhong
Li, Zijuan
Ye, Luhuan
Zhuang, Yili
Wang, Meiyue
Xie, Yilin
Zou, Shenghao
Teng, Wan
Tong, Yiping
Tang, Dingzhong
Mahato, Ajay Kumar
Benhamed, Moussa
Liu, Zhiyong
Zhang, Yijing
author_facet Zhao, Fei
Tian, Shilong
Wu, Qiuhong
Li, Zijuan
Ye, Luhuan
Zhuang, Yili
Wang, Meiyue
Xie, Yilin
Zou, Shenghao
Teng, Wan
Tong, Yiping
Tang, Dingzhong
Mahato, Ajay Kumar
Benhamed, Moussa
Liu, Zhiyong
Zhang, Yijing
author_sort Zhao, Fei
collection PubMed
description Triticeae species, including wheat, barley, and rye, are critical for global food security. Mapping agronomically important genes is crucial for elucidating molecular mechanisms and improving crops. However, Triticeae includes many wild relatives with desirable agronomic traits, and frequent introgressions occurred during Triticeae evolution and domestication. Thus, Triticeae genomes are generally large and complex, making the localization of genes or functional elements that control agronomic traits challenging. Here, we developed Triti-Map, which contains a suite of user-friendly computational packages specifically designed and optimized to overcome the obstacles of gene mapping in Triticeae, as well as a web interface integrating multi-omics data from Triticeae for the efficient mining of genes or functional elements that control particular traits. The Triti-Map pipeline accepts both DNA and RNA bulk-segregated sequencing data as well as traditional QTL data as inputs for locating genes and elucidating their functions. We illustrate the usage of Triti-Map with a combination of bulk-segregated ChIP-seq data to detect a wheat disease-resistance gene with its promoter sequence that is absent from the reference genome and clarify its evolutionary process. We hope that Triti-Map will facilitate gene isolation and accelerate Triticeae breeding.
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spelling pubmed-92842832022-07-16 Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae Zhao, Fei Tian, Shilong Wu, Qiuhong Li, Zijuan Ye, Luhuan Zhuang, Yili Wang, Meiyue Xie, Yilin Zou, Shenghao Teng, Wan Tong, Yiping Tang, Dingzhong Mahato, Ajay Kumar Benhamed, Moussa Liu, Zhiyong Zhang, Yijing Plant Commun Resource Article Triticeae species, including wheat, barley, and rye, are critical for global food security. Mapping agronomically important genes is crucial for elucidating molecular mechanisms and improving crops. However, Triticeae includes many wild relatives with desirable agronomic traits, and frequent introgressions occurred during Triticeae evolution and domestication. Thus, Triticeae genomes are generally large and complex, making the localization of genes or functional elements that control agronomic traits challenging. Here, we developed Triti-Map, which contains a suite of user-friendly computational packages specifically designed and optimized to overcome the obstacles of gene mapping in Triticeae, as well as a web interface integrating multi-omics data from Triticeae for the efficient mining of genes or functional elements that control particular traits. The Triti-Map pipeline accepts both DNA and RNA bulk-segregated sequencing data as well as traditional QTL data as inputs for locating genes and elucidating their functions. We illustrate the usage of Triti-Map with a combination of bulk-segregated ChIP-seq data to detect a wheat disease-resistance gene with its promoter sequence that is absent from the reference genome and clarify its evolutionary process. We hope that Triti-Map will facilitate gene isolation and accelerate Triticeae breeding. Elsevier 2022-02-18 /pmc/articles/PMC9284283/ /pubmed/35605195 http://dx.doi.org/10.1016/j.xplc.2022.100304 Text en © 2022. 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
Zhao, Fei
Tian, Shilong
Wu, Qiuhong
Li, Zijuan
Ye, Luhuan
Zhuang, Yili
Wang, Meiyue
Xie, Yilin
Zou, Shenghao
Teng, Wan
Tong, Yiping
Tang, Dingzhong
Mahato, Ajay Kumar
Benhamed, Moussa
Liu, Zhiyong
Zhang, Yijing
Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae
title Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae
title_full Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae
title_fullStr Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae
title_full_unstemmed Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae
title_short Utility of Triti-Map for bulk-segregated mapping of causal genes and regulatory elements in Triticeae
title_sort utility of triti-map for bulk-segregated mapping of causal genes and regulatory elements in triticeae
topic Resource Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9284283/
https://www.ncbi.nlm.nih.gov/pubmed/35605195
http://dx.doi.org/10.1016/j.xplc.2022.100304
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