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Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource

Twenty-six orthologs of the rice blast resistance gene Pid3 from cultivated varieties and wild rice accessions distributed in different areas were cloned by allele mining. Sequence analysis showed that while each of the orthologous genes from indica varieties and most wild accessions encodes a compl...

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Autores principales: Xu, Xiao, Lv, Qiming, Shang, Junjun, Pang, Zhiqian, Zhou, Zhuangzhi, Wang, Jing, Jiang, Guanghuai, Tao, Yong, Xu, Qian, Li, Xiaobing, Zhao, Xianfeng, Li, Shigui, Xu, Jichen, Zhu, Lihuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3969318/
https://www.ncbi.nlm.nih.gov/pubmed/24681716
http://dx.doi.org/10.1371/journal.pone.0093275
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author Xu, Xiao
Lv, Qiming
Shang, Junjun
Pang, Zhiqian
Zhou, Zhuangzhi
Wang, Jing
Jiang, Guanghuai
Tao, Yong
Xu, Qian
Li, Xiaobing
Zhao, Xianfeng
Li, Shigui
Xu, Jichen
Zhu, Lihuang
author_facet Xu, Xiao
Lv, Qiming
Shang, Junjun
Pang, Zhiqian
Zhou, Zhuangzhi
Wang, Jing
Jiang, Guanghuai
Tao, Yong
Xu, Qian
Li, Xiaobing
Zhao, Xianfeng
Li, Shigui
Xu, Jichen
Zhu, Lihuang
author_sort Xu, Xiao
collection PubMed
description Twenty-six orthologs of the rice blast resistance gene Pid3 from cultivated varieties and wild rice accessions distributed in different areas were cloned by allele mining. Sequence analysis showed that while each of the orthologous genes from indica varieties and most wild accessions encodes a complete NBS-LRR protein, each of the proteins encoded by those from japonica varieties and few wild rice accessions presents a premature termination. Eleven of the 26 orthologs were selected for blast resistance testing by transforming into the blast susceptible rice variety TP309, respectively. Inoculation of 23 M. oryzae strains collected from diverse regions of China to the respective transgenic plants revealed that 6 Pid3 orthologs showed susceptible to all the tested strains, while the other 5 orthologs showed differential resistance spectra in a gradually spectrum-widen order as Pid3-W3, Pid3-W4, Pid3-I3, Pid3-W5 and Pid3-I1. Amino acid sequences alignment of these orthologs indicated that the sequence diversities between the blast resistance orthologs were mostly located in the LRR domain such as the substitutions of Q694H,D856H,Q896R,D899E etc. However, the differences between the resistance orthologs and the susceptible ones were mostly located in the NBS domain. The present experiments provide an example of that the ortholog evaluation of plant R genes could be an efficient way to expand the rice blast resistance and some other plant disease resistance as well for breeding.
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spelling pubmed-39693182014-04-01 Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource Xu, Xiao Lv, Qiming Shang, Junjun Pang, Zhiqian Zhou, Zhuangzhi Wang, Jing Jiang, Guanghuai Tao, Yong Xu, Qian Li, Xiaobing Zhao, Xianfeng Li, Shigui Xu, Jichen Zhu, Lihuang PLoS One Research Article Twenty-six orthologs of the rice blast resistance gene Pid3 from cultivated varieties and wild rice accessions distributed in different areas were cloned by allele mining. Sequence analysis showed that while each of the orthologous genes from indica varieties and most wild accessions encodes a complete NBS-LRR protein, each of the proteins encoded by those from japonica varieties and few wild rice accessions presents a premature termination. Eleven of the 26 orthologs were selected for blast resistance testing by transforming into the blast susceptible rice variety TP309, respectively. Inoculation of 23 M. oryzae strains collected from diverse regions of China to the respective transgenic plants revealed that 6 Pid3 orthologs showed susceptible to all the tested strains, while the other 5 orthologs showed differential resistance spectra in a gradually spectrum-widen order as Pid3-W3, Pid3-W4, Pid3-I3, Pid3-W5 and Pid3-I1. Amino acid sequences alignment of these orthologs indicated that the sequence diversities between the blast resistance orthologs were mostly located in the LRR domain such as the substitutions of Q694H,D856H,Q896R,D899E etc. However, the differences between the resistance orthologs and the susceptible ones were mostly located in the NBS domain. The present experiments provide an example of that the ortholog evaluation of plant R genes could be an efficient way to expand the rice blast resistance and some other plant disease resistance as well for breeding. Public Library of Science 2014-03-28 /pmc/articles/PMC3969318/ /pubmed/24681716 http://dx.doi.org/10.1371/journal.pone.0093275 Text en © 2014 Xu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Xu, Xiao
Lv, Qiming
Shang, Junjun
Pang, Zhiqian
Zhou, Zhuangzhi
Wang, Jing
Jiang, Guanghuai
Tao, Yong
Xu, Qian
Li, Xiaobing
Zhao, Xianfeng
Li, Shigui
Xu, Jichen
Zhu, Lihuang
Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource
title Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource
title_full Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource
title_fullStr Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource
title_full_unstemmed Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource
title_short Excavation of Pid3 Orthologs with Differential Resistance Spectra to Magnaporthe oryzae in Rice Resource
title_sort excavation of pid3 orthologs with differential resistance spectra to magnaporthe oryzae in rice resource
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3969318/
https://www.ncbi.nlm.nih.gov/pubmed/24681716
http://dx.doi.org/10.1371/journal.pone.0093275
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