Cargando…

Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System

Puccinia triticina, which is the causative agent of wheat leaf rust, is widely spread in China and most other wheat-planting countries around the globe. Cultivating resistant wheat cultivars is the most economical, effective, and environmentally friendly method for controlling leaf rust-caused yield...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Lin, Zhao, Xuefang, Liu, Jingxian, Wang, Xiaolu, Gong, Wenping, Zhang, Quanguo, Liu, Yuping, Yan, Hongfei, Meng, Qingfang, Liu, Daqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9645796/
https://www.ncbi.nlm.nih.gov/pubmed/36388507
http://dx.doi.org/10.3389/fpls.2022.1054673
_version_ 1784827028639318016
author Zhang, Lin
Zhao, Xuefang
Liu, Jingxian
Wang, Xiaolu
Gong, Wenping
Zhang, Quanguo
Liu, Yuping
Yan, Hongfei
Meng, Qingfang
Liu, Daqun
author_facet Zhang, Lin
Zhao, Xuefang
Liu, Jingxian
Wang, Xiaolu
Gong, Wenping
Zhang, Quanguo
Liu, Yuping
Yan, Hongfei
Meng, Qingfang
Liu, Daqun
author_sort Zhang, Lin
collection PubMed
description Puccinia triticina, which is the causative agent of wheat leaf rust, is widely spread in China and most other wheat-planting countries around the globe. Cultivating resistant wheat cultivars is the most economical, effective, and environmentally friendly method for controlling leaf rust-caused yield damage. Exploring the source of resistance is very important in wheat resistance breeding programs. In order to explore more effective resistance sources for wheat leaf rust, the resistance of 112 wheat accessions introduced from the U.S. National Plant Germplasm System were identified using a mixture of pathogenic isolates of THTT, THTS, PHTT, THJT and THJS which are the most predominant races in China. As a result, all of these accessions showed high resistance at seedling stage, of which, ninety-nine accessions exhibited resistance at adult plant stage. Eleven molecular markers of eight effective leaf rust resistance genes in China were used to screen the 112 accessions. Seven effective leaf rust resistance genes Lr9, Lr19, Lr24, Lr28, Lr29, Lr38 and Lr45 were detected, except Lr47. Twenty-three accessions had only one of those seven effective leaf rust resistance gene. Eleven accessions carried Lr24+Lr38, and 7 accessions carried Lr9+Lr24+Lr38, Lr24+Lr38+Lr45, Lr24+Lr29+Lr38 and Lr19+Lr38+Lr45 respectively. The remaining seventy-one accessions had none of those eight effective leaf rust resistance genes. This study will provide theoretical guidance for rational utilization of these introduted wheat accessions directly or for breeding the resistant wheat cultivars.
format Online
Article
Text
id pubmed-9645796
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-96457962022-11-15 Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System Zhang, Lin Zhao, Xuefang Liu, Jingxian Wang, Xiaolu Gong, Wenping Zhang, Quanguo Liu, Yuping Yan, Hongfei Meng, Qingfang Liu, Daqun Front Plant Sci Plant Science Puccinia triticina, which is the causative agent of wheat leaf rust, is widely spread in China and most other wheat-planting countries around the globe. Cultivating resistant wheat cultivars is the most economical, effective, and environmentally friendly method for controlling leaf rust-caused yield damage. Exploring the source of resistance is very important in wheat resistance breeding programs. In order to explore more effective resistance sources for wheat leaf rust, the resistance of 112 wheat accessions introduced from the U.S. National Plant Germplasm System were identified using a mixture of pathogenic isolates of THTT, THTS, PHTT, THJT and THJS which are the most predominant races in China. As a result, all of these accessions showed high resistance at seedling stage, of which, ninety-nine accessions exhibited resistance at adult plant stage. Eleven molecular markers of eight effective leaf rust resistance genes in China were used to screen the 112 accessions. Seven effective leaf rust resistance genes Lr9, Lr19, Lr24, Lr28, Lr29, Lr38 and Lr45 were detected, except Lr47. Twenty-three accessions had only one of those seven effective leaf rust resistance gene. Eleven accessions carried Lr24+Lr38, and 7 accessions carried Lr9+Lr24+Lr38, Lr24+Lr38+Lr45, Lr24+Lr29+Lr38 and Lr19+Lr38+Lr45 respectively. The remaining seventy-one accessions had none of those eight effective leaf rust resistance genes. This study will provide theoretical guidance for rational utilization of these introduted wheat accessions directly or for breeding the resistant wheat cultivars. Frontiers Media S.A. 2022-10-26 /pmc/articles/PMC9645796/ /pubmed/36388507 http://dx.doi.org/10.3389/fpls.2022.1054673 Text en Copyright © 2022 Zhang, Zhao, Liu, Wang, Gong, Zhang, Liu, Yan, Meng and Liu 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
Zhang, Lin
Zhao, Xuefang
Liu, Jingxian
Wang, Xiaolu
Gong, Wenping
Zhang, Quanguo
Liu, Yuping
Yan, Hongfei
Meng, Qingfang
Liu, Daqun
Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System
title Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System
title_full Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System
title_fullStr Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System
title_full_unstemmed Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System
title_short Evaluation of the resistance to Chinese predominant races of Puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the U.S. National Plant Germplasm System
title_sort evaluation of the resistance to chinese predominant races of puccinia triticina and analysis of effective leaf rust resistance genes in wheat accessions from the u.s. national plant germplasm system
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9645796/
https://www.ncbi.nlm.nih.gov/pubmed/36388507
http://dx.doi.org/10.3389/fpls.2022.1054673
work_keys_str_mv AT zhanglin evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT zhaoxuefang evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT liujingxian evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT wangxiaolu evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT gongwenping evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT zhangquanguo evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT liuyuping evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT yanhongfei evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT mengqingfang evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem
AT liudaqun evaluationoftheresistancetochinesepredominantracesofpucciniatriticinaandanalysisofeffectiveleafrustresistancegenesinwheataccessionsfromtheusnationalplantgermplasmsystem