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Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice

BACKGROUND: Grain size is a key determinant of grain weight and a trait having critical influence on grain quality in rice. While increasing evidences are shown for the importance of minor-effect QTL in controlling complex traits, the attention has not been given to grain size until recently. In pre...

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Autores principales: Dong, Qing, Zhang, Zhen-Hua, Wang, Lin-Lin, Zhu, Yu-Jun, Fan, Ye-Yang, Mou, Tong-Min, Ma, Liang-Yong, Zhuang, Jie-Yun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6081826/
https://www.ncbi.nlm.nih.gov/pubmed/30073424
http://dx.doi.org/10.1186/s12284-018-0236-z
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author Dong, Qing
Zhang, Zhen-Hua
Wang, Lin-Lin
Zhu, Yu-Jun
Fan, Ye-Yang
Mou, Tong-Min
Ma, Liang-Yong
Zhuang, Jie-Yun
author_facet Dong, Qing
Zhang, Zhen-Hua
Wang, Lin-Lin
Zhu, Yu-Jun
Fan, Ye-Yang
Mou, Tong-Min
Ma, Liang-Yong
Zhuang, Jie-Yun
author_sort Dong, Qing
collection PubMed
description BACKGROUND: Grain size is a key determinant of grain weight and a trait having critical influence on grain quality in rice. While increasing evidences are shown for the importance of minor-effect QTL in controlling complex traits, the attention has not been given to grain size until recently. In previous studies, five QTL having small effects for grain size were resolved on the long arm of chromosome 1 using populations derived from indica rice cross Zhenshan 97///Zhenshan 97//Zhenshan 97/Milyang 46. One of them, qTGW1.2c that was located in a 2.1-Mb region, was targeted for fine-mapping in the present study. RESULTS: Firstly, the qTGW1.2c region was narrowed down into 1.1 Mb by determining genotypes of the cross-over regions using polymorphic markers newly developed. Then, one BC(2)F(9) plant that was only heterozygous in the updated QTL region was identified. A total of 12 populations in generations from BC(2)F(11:12) to BC(2)F(15:16) were derived and used for QTL mapping. Two QTL linked in a 460-kb region were separated. The qGS1-35.2 was delimited into a 57.7-kb region, containing six annotated genes of which five showed nucleotide polymorphisms between the two parental lines. Quantitative real-time PCR detected expression differences between near isogenic lines for qGS1-35.2 at three of the six annotated genes. This QTL affected grain length and width with opposite allelic directions, exhibiting significant effect on ratio of grain length to width but showing little influence on yield traits. The other QTL, qGW1-35.5, was located within a 125.5-kb region and found to primarily control grain width and consequently affect grain weight. CONCLUSIONS: Our work lays a foundation for cloning of two minor QTL for grain size that have potential application in rice breeding. The qGS1-35.2 could be used to modify grain appearance quality without yield penalty because it affects grain shape but hardly influences grain yield, while qGW1-35.5 offers a new gene recourse for enhancing grain yield since it contributes to grain size and grain weight simultaneously. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12284-018-0236-z) contains supplementary material, which is available to authorized users.
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spelling pubmed-60818262018-09-11 Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice Dong, Qing Zhang, Zhen-Hua Wang, Lin-Lin Zhu, Yu-Jun Fan, Ye-Yang Mou, Tong-Min Ma, Liang-Yong Zhuang, Jie-Yun Rice (N Y) Original Article BACKGROUND: Grain size is a key determinant of grain weight and a trait having critical influence on grain quality in rice. While increasing evidences are shown for the importance of minor-effect QTL in controlling complex traits, the attention has not been given to grain size until recently. In previous studies, five QTL having small effects for grain size were resolved on the long arm of chromosome 1 using populations derived from indica rice cross Zhenshan 97///Zhenshan 97//Zhenshan 97/Milyang 46. One of them, qTGW1.2c that was located in a 2.1-Mb region, was targeted for fine-mapping in the present study. RESULTS: Firstly, the qTGW1.2c region was narrowed down into 1.1 Mb by determining genotypes of the cross-over regions using polymorphic markers newly developed. Then, one BC(2)F(9) plant that was only heterozygous in the updated QTL region was identified. A total of 12 populations in generations from BC(2)F(11:12) to BC(2)F(15:16) were derived and used for QTL mapping. Two QTL linked in a 460-kb region were separated. The qGS1-35.2 was delimited into a 57.7-kb region, containing six annotated genes of which five showed nucleotide polymorphisms between the two parental lines. Quantitative real-time PCR detected expression differences between near isogenic lines for qGS1-35.2 at three of the six annotated genes. This QTL affected grain length and width with opposite allelic directions, exhibiting significant effect on ratio of grain length to width but showing little influence on yield traits. The other QTL, qGW1-35.5, was located within a 125.5-kb region and found to primarily control grain width and consequently affect grain weight. CONCLUSIONS: Our work lays a foundation for cloning of two minor QTL for grain size that have potential application in rice breeding. The qGS1-35.2 could be used to modify grain appearance quality without yield penalty because it affects grain shape but hardly influences grain yield, while qGW1-35.5 offers a new gene recourse for enhancing grain yield since it contributes to grain size and grain weight simultaneously. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12284-018-0236-z) contains supplementary material, which is available to authorized users. Springer US 2018-08-02 /pmc/articles/PMC6081826/ /pubmed/30073424 http://dx.doi.org/10.1186/s12284-018-0236-z Text en © The Author(s). 2018 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
Dong, Qing
Zhang, Zhen-Hua
Wang, Lin-Lin
Zhu, Yu-Jun
Fan, Ye-Yang
Mou, Tong-Min
Ma, Liang-Yong
Zhuang, Jie-Yun
Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice
title Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice
title_full Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice
title_fullStr Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice
title_full_unstemmed Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice
title_short Dissection and fine-mapping of two QTL for grain size linked in a 460-kb region on chromosome 1 of rice
title_sort dissection and fine-mapping of two qtl for grain size linked in a 460-kb region on chromosome 1 of rice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6081826/
https://www.ncbi.nlm.nih.gov/pubmed/30073424
http://dx.doi.org/10.1186/s12284-018-0236-z
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