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Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice

Rice breeders are now developing new varieties with semi-high or even high plant height to further increase the grain yield, and the problem of lodging has re-appeared. We identified a major quantitative trait locus (QTL), qSCM4, for resistance to lodging by using an F(2) segregant population and a...

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Autores principales: Yang, Xianli, Lai, Yongcai, Wang, Lizhi, Zhao, Minghui, Wang, Jiayu, Li, Mingxian, Chi, Liyong, Lv, Guoyi, Liu, Youhong, Cui, Zhibo, Li, Rui, Wu, Liren, Sun, Bing, Zhang, Xijuan, Jiang, Shukun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9821088/
https://www.ncbi.nlm.nih.gov/pubmed/36614255
http://dx.doi.org/10.3390/ijms24010812
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author Yang, Xianli
Lai, Yongcai
Wang, Lizhi
Zhao, Minghui
Wang, Jiayu
Li, Mingxian
Chi, Liyong
Lv, Guoyi
Liu, Youhong
Cui, Zhibo
Li, Rui
Wu, Liren
Sun, Bing
Zhang, Xijuan
Jiang, Shukun
author_facet Yang, Xianli
Lai, Yongcai
Wang, Lizhi
Zhao, Minghui
Wang, Jiayu
Li, Mingxian
Chi, Liyong
Lv, Guoyi
Liu, Youhong
Cui, Zhibo
Li, Rui
Wu, Liren
Sun, Bing
Zhang, Xijuan
Jiang, Shukun
author_sort Yang, Xianli
collection PubMed
description Rice breeders are now developing new varieties with semi-high or even high plant height to further increase the grain yield, and the problem of lodging has re-appeared. We identified a major quantitative trait locus (QTL), qSCM4, for resistance to lodging by using an F(2) segregant population and a recombinant self-incompatible line population from the cross between Shennong265 (SN265) and Lijiangxintuanheigu (LTH) after multiple years and multiple environments. Then, the residual heterozygous derived segregant population which consisted of 1781 individual plants, and the BC(3)F(2) segregant population which consisted of 3216 individual plants, were used to shorten the physical interval of qSCM4 to 58.5 kb including 11 genes. DNA sequencing revealed the most likely candidate gene for qSCM4 was Os04g0615000, which encoded a functional protein with structural domains of serine and cysteine. There were 13 DNA sequence changes in LTH compared to SN265 in this gene, including a fragment deletion, two base changes in the 3′ UTR region, six base changes in the exons, and four base changes in the introns. A near-isogenic line carrying qSCM4 showed that it improved the lodging resistance through increasing stem thickness by 25.3% and increasing stem folding resistance by 20.3%. Furthermore, it was also discovered that qSCM4 enhanced the primary branch per panicle by 16.7%, secondary branch by per panicle 9.9%, and grain number per panicle by 14.7%. All the above results will give us a valuable genetic resource for concurrently boosting culm strength and lodging resistance, and they will also provide a basis for further research on the lodging resistance mechanism of rice.
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spelling pubmed-98210882023-01-07 Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice Yang, Xianli Lai, Yongcai Wang, Lizhi Zhao, Minghui Wang, Jiayu Li, Mingxian Chi, Liyong Lv, Guoyi Liu, Youhong Cui, Zhibo Li, Rui Wu, Liren Sun, Bing Zhang, Xijuan Jiang, Shukun Int J Mol Sci Article Rice breeders are now developing new varieties with semi-high or even high plant height to further increase the grain yield, and the problem of lodging has re-appeared. We identified a major quantitative trait locus (QTL), qSCM4, for resistance to lodging by using an F(2) segregant population and a recombinant self-incompatible line population from the cross between Shennong265 (SN265) and Lijiangxintuanheigu (LTH) after multiple years and multiple environments. Then, the residual heterozygous derived segregant population which consisted of 1781 individual plants, and the BC(3)F(2) segregant population which consisted of 3216 individual plants, were used to shorten the physical interval of qSCM4 to 58.5 kb including 11 genes. DNA sequencing revealed the most likely candidate gene for qSCM4 was Os04g0615000, which encoded a functional protein with structural domains of serine and cysteine. There were 13 DNA sequence changes in LTH compared to SN265 in this gene, including a fragment deletion, two base changes in the 3′ UTR region, six base changes in the exons, and four base changes in the introns. A near-isogenic line carrying qSCM4 showed that it improved the lodging resistance through increasing stem thickness by 25.3% and increasing stem folding resistance by 20.3%. Furthermore, it was also discovered that qSCM4 enhanced the primary branch per panicle by 16.7%, secondary branch by per panicle 9.9%, and grain number per panicle by 14.7%. All the above results will give us a valuable genetic resource for concurrently boosting culm strength and lodging resistance, and they will also provide a basis for further research on the lodging resistance mechanism of rice. MDPI 2023-01-03 /pmc/articles/PMC9821088/ /pubmed/36614255 http://dx.doi.org/10.3390/ijms24010812 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
Yang, Xianli
Lai, Yongcai
Wang, Lizhi
Zhao, Minghui
Wang, Jiayu
Li, Mingxian
Chi, Liyong
Lv, Guoyi
Liu, Youhong
Cui, Zhibo
Li, Rui
Wu, Liren
Sun, Bing
Zhang, Xijuan
Jiang, Shukun
Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice
title Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice
title_full Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice
title_fullStr Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice
title_full_unstemmed Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice
title_short Isolation of a Novel QTL, qSCM4, Associated with Strong Culm Affects Lodging Resistance and Panicle Branch Number in Rice
title_sort isolation of a novel qtl, qscm4, associated with strong culm affects lodging resistance and panicle branch number in rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9821088/
https://www.ncbi.nlm.nih.gov/pubmed/36614255
http://dx.doi.org/10.3390/ijms24010812
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