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Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS

BACKGROUND: Rice blast caused by Magnaporthe oryzae (M. oryzae) is one of the most destructive diseases in rice production. Development of resistant varieties through pyramiding of resistant (R) genes is considered as an effective strategy to cope with the disease. However, is it really essential to...

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Autores principales: Xiao, Wuming, Yang, Qiyun, Huang, Ming, Guo, Tao, Liu, Yongzhu, Wang, Jiafeng, Yang, Guili, Zhou, Jiyong, Yang, Jianyuan, Zhu, Xiaoyuan, Chen, Zhiqiang, Wang, Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6828908/
https://www.ncbi.nlm.nih.gov/pubmed/31686256
http://dx.doi.org/10.1186/s12284-019-0336-4
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author Xiao, Wuming
Yang, Qiyun
Huang, Ming
Guo, Tao
Liu, Yongzhu
Wang, Jiafeng
Yang, Guili
Zhou, Jiyong
Yang, Jianyuan
Zhu, Xiaoyuan
Chen, Zhiqiang
Wang, Hui
author_facet Xiao, Wuming
Yang, Qiyun
Huang, Ming
Guo, Tao
Liu, Yongzhu
Wang, Jiafeng
Yang, Guili
Zhou, Jiyong
Yang, Jianyuan
Zhu, Xiaoyuan
Chen, Zhiqiang
Wang, Hui
author_sort Xiao, Wuming
collection PubMed
description BACKGROUND: Rice blast caused by Magnaporthe oryzae (M. oryzae) is one of the most destructive diseases in rice production. Development of resistant varieties through pyramiding of resistant (R) genes is considered as an effective strategy to cope with the disease. However, is it really essential to pyramid more R genes in a specific ecological regions? To answer this question, a set of rice improved lines were developed in this study. Afterwards, the blast disease resistance and agronomic traits of the recurrent parent (RP), donor parents (DPs) and improved lines were investigated. RESULTS: We developed seven improved lines, comprising three monogenic lines, three two-gene pyramids and one three-gene pyramid, by introgression of R gene(s) into a common genetic background using marker-assisted backcross breeding (MABB). Based on 302 SSR markers, the recurrent genome of the seven improved lines reached a range of 89.1 to 95.5%, with the average genome recovery of 92.9%. The pathogenicity assays inoculated with 32 different blast isolates under artificial conditions showed that the resistance spectrum of all the improved lines was significantly broadened. The assays further showed that the two-gene pyramids and the three-gene pyramid exhibited wider resistance spectrum than the monogenic lines. At natural nurseries, the three monogenic lines still showed high ratios of infected panicles, whereas the two-gene pyramids and the three-gene pyramid showed high level of panicle blast resistance. However, the two-gene pyramid R504 reached the similar resistance effect of the three-gene pyramid R507 considering resistance spectrum under artificial conditions and panicle blast resistance under field conditions. Generally, the improved lines showed comparable agronomic traits compared with the recurrent parent (RP), but the three-gene pyramid showed reduced grain yield per plant. CONCLUSIONS: All the improved lines conferred wider resistance spectrum compared with the RP. Yet, the three monogenic lines did not work under field conditions of the two nurseries. Given the similar performances on the main agronomic traits as the RP, the two-gene pyramids have achieved the breeding goals of broad resistance spectrum and effective panicle blast resistance. Whereas, the three-gene pyramid harboring Pi2, Pi46 and Pita seems superfluous considering its reduced yield, although it also showed displayed high level of blast resistance. Thus, rational use of R genes rather than stacking more R genes is recommended to control the disease.
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spelling pubmed-68289082019-11-20 Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS Xiao, Wuming Yang, Qiyun Huang, Ming Guo, Tao Liu, Yongzhu Wang, Jiafeng Yang, Guili Zhou, Jiyong Yang, Jianyuan Zhu, Xiaoyuan Chen, Zhiqiang Wang, Hui Rice (N Y) Original Article BACKGROUND: Rice blast caused by Magnaporthe oryzae (M. oryzae) is one of the most destructive diseases in rice production. Development of resistant varieties through pyramiding of resistant (R) genes is considered as an effective strategy to cope with the disease. However, is it really essential to pyramid more R genes in a specific ecological regions? To answer this question, a set of rice improved lines were developed in this study. Afterwards, the blast disease resistance and agronomic traits of the recurrent parent (RP), donor parents (DPs) and improved lines were investigated. RESULTS: We developed seven improved lines, comprising three monogenic lines, three two-gene pyramids and one three-gene pyramid, by introgression of R gene(s) into a common genetic background using marker-assisted backcross breeding (MABB). Based on 302 SSR markers, the recurrent genome of the seven improved lines reached a range of 89.1 to 95.5%, with the average genome recovery of 92.9%. The pathogenicity assays inoculated with 32 different blast isolates under artificial conditions showed that the resistance spectrum of all the improved lines was significantly broadened. The assays further showed that the two-gene pyramids and the three-gene pyramid exhibited wider resistance spectrum than the monogenic lines. At natural nurseries, the three monogenic lines still showed high ratios of infected panicles, whereas the two-gene pyramids and the three-gene pyramid showed high level of panicle blast resistance. However, the two-gene pyramid R504 reached the similar resistance effect of the three-gene pyramid R507 considering resistance spectrum under artificial conditions and panicle blast resistance under field conditions. Generally, the improved lines showed comparable agronomic traits compared with the recurrent parent (RP), but the three-gene pyramid showed reduced grain yield per plant. CONCLUSIONS: All the improved lines conferred wider resistance spectrum compared with the RP. Yet, the three monogenic lines did not work under field conditions of the two nurseries. Given the similar performances on the main agronomic traits as the RP, the two-gene pyramids have achieved the breeding goals of broad resistance spectrum and effective panicle blast resistance. Whereas, the three-gene pyramid harboring Pi2, Pi46 and Pita seems superfluous considering its reduced yield, although it also showed displayed high level of blast resistance. Thus, rational use of R genes rather than stacking more R genes is recommended to control the disease. Springer US 2019-11-04 /pmc/articles/PMC6828908/ /pubmed/31686256 http://dx.doi.org/10.1186/s12284-019-0336-4 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Xiao, Wuming
Yang, Qiyun
Huang, Ming
Guo, Tao
Liu, Yongzhu
Wang, Jiafeng
Yang, Guili
Zhou, Jiyong
Yang, Jianyuan
Zhu, Xiaoyuan
Chen, Zhiqiang
Wang, Hui
Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS
title Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS
title_full Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS
title_fullStr Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS
title_full_unstemmed Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS
title_short Improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through MAS
title_sort improvement of rice blast resistance by developing monogenic lines, two-gene pyramids and three-gene pyramid through mas
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6828908/
https://www.ncbi.nlm.nih.gov/pubmed/31686256
http://dx.doi.org/10.1186/s12284-019-0336-4
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