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The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease

Rice blast (the causative agent the fungus Magnaporthe oryzae) represents a major constraint on the productivity of one of the world’s most important staple food crops. Genes encoding resistance have been identified in both the Xian and Geng subspecies genepools, and combining these within new culti...

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Autores principales: Chai, Ruipeng, Wang, Jinyan, Wang, Xing, Wen, Jianqiang, Liang, Zhijian, Ye, Xuemei, Zhang, Yaling, Yao, Yongxiang, Zhang, Jianfu, Zhang, Yihua, Wang, Ling, Pan, Qinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9141787/
https://www.ncbi.nlm.nih.gov/pubmed/35627276
http://dx.doi.org/10.3390/genes13050891
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author Chai, Ruipeng
Wang, Jinyan
Wang, Xing
Wen, Jianqiang
Liang, Zhijian
Ye, Xuemei
Zhang, Yaling
Yao, Yongxiang
Zhang, Jianfu
Zhang, Yihua
Wang, Ling
Pan, Qinghua
author_facet Chai, Ruipeng
Wang, Jinyan
Wang, Xing
Wen, Jianqiang
Liang, Zhijian
Ye, Xuemei
Zhang, Yaling
Yao, Yongxiang
Zhang, Jianfu
Zhang, Yihua
Wang, Ling
Pan, Qinghua
author_sort Chai, Ruipeng
collection PubMed
description Rice blast (the causative agent the fungus Magnaporthe oryzae) represents a major constraint on the productivity of one of the world’s most important staple food crops. Genes encoding resistance have been identified in both the Xian and Geng subspecies genepools, and combining these within new cultivars represents a rational means of combating the pathogen. In this research, deeper allele mining was carried out on Pid2, Pid3, and Pid4 via each comprehensive FNP marker set in three panels consisting of 70 Xian and 58 Geng cultivars. Within Pid2, three functional and one non-functional alleles were identified; the former were only identified in Xian type entries. At Pid3, four functional and one non-functional alleles were identified; once again, all of the former were present in Xian type entries. However, the pattern of variation at Pid4 was rather different: here, the five functional alleles uncovered were dispersed across the Geng type germplasm. Among all the twelve candidate functional alleles, both Pid2-ZS and Pid3-ZS were predominant. Furthermore, the resistance functions of both Pid2-ZS and Pid3-ZS were assured by transformation test. Profiting from the merits of three comprehensive FNP marker sets, the study has validated all three members of the Pid family as having been strictly diverged into Xian and Geng subspecies: Pid2 and Pid3 were defined as Xian type resistance genes, and Pid4 as Geng type. Rather limited genotypes of the Pid family have been effective in both Xian and Geng rice groups, of which Pid2-ZS_Pid3-ZS has been central to the Chinese rice population.
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spelling pubmed-91417872022-05-28 The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease Chai, Ruipeng Wang, Jinyan Wang, Xing Wen, Jianqiang Liang, Zhijian Ye, Xuemei Zhang, Yaling Yao, Yongxiang Zhang, Jianfu Zhang, Yihua Wang, Ling Pan, Qinghua Genes (Basel) Article Rice blast (the causative agent the fungus Magnaporthe oryzae) represents a major constraint on the productivity of one of the world’s most important staple food crops. Genes encoding resistance have been identified in both the Xian and Geng subspecies genepools, and combining these within new cultivars represents a rational means of combating the pathogen. In this research, deeper allele mining was carried out on Pid2, Pid3, and Pid4 via each comprehensive FNP marker set in three panels consisting of 70 Xian and 58 Geng cultivars. Within Pid2, three functional and one non-functional alleles were identified; the former were only identified in Xian type entries. At Pid3, four functional and one non-functional alleles were identified; once again, all of the former were present in Xian type entries. However, the pattern of variation at Pid4 was rather different: here, the five functional alleles uncovered were dispersed across the Geng type germplasm. Among all the twelve candidate functional alleles, both Pid2-ZS and Pid3-ZS were predominant. Furthermore, the resistance functions of both Pid2-ZS and Pid3-ZS were assured by transformation test. Profiting from the merits of three comprehensive FNP marker sets, the study has validated all three members of the Pid family as having been strictly diverged into Xian and Geng subspecies: Pid2 and Pid3 were defined as Xian type resistance genes, and Pid4 as Geng type. Rather limited genotypes of the Pid family have been effective in both Xian and Geng rice groups, of which Pid2-ZS_Pid3-ZS has been central to the Chinese rice population. MDPI 2022-05-17 /pmc/articles/PMC9141787/ /pubmed/35627276 http://dx.doi.org/10.3390/genes13050891 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chai, Ruipeng
Wang, Jinyan
Wang, Xing
Wen, Jianqiang
Liang, Zhijian
Ye, Xuemei
Zhang, Yaling
Yao, Yongxiang
Zhang, Jianfu
Zhang, Yihua
Wang, Ling
Pan, Qinghua
The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease
title The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease
title_full The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease
title_fullStr The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease
title_full_unstemmed The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease
title_short The Pid Family Has Been Diverged into Xian and Geng Type Resistance Genes against Rice Blast Disease
title_sort pid family has been diverged into xian and geng type resistance genes against rice blast disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9141787/
https://www.ncbi.nlm.nih.gov/pubmed/35627276
http://dx.doi.org/10.3390/genes13050891
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