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Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1

Grain length (GL) is one of the crucial determinants of rice yield and quality. However, there is still a shortage of knowledge on the major genes controlling the inheritance of GL in japonica rice, which severely limits the improvement of japonica rice yields. Here, we systemically measured the GL...

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Detalles Bibliográficos
Autores principales: Yang, Luomiao, Li, Peng, Wang, Jingguo, Liu, Hualong, Zheng, Hongliang, Xin, Wei, Zou, Detang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380290/
https://www.ncbi.nlm.nih.gov/pubmed/37511217
http://dx.doi.org/10.3390/ijms241411447
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author Yang, Luomiao
Li, Peng
Wang, Jingguo
Liu, Hualong
Zheng, Hongliang
Xin, Wei
Zou, Detang
author_facet Yang, Luomiao
Li, Peng
Wang, Jingguo
Liu, Hualong
Zheng, Hongliang
Xin, Wei
Zou, Detang
author_sort Yang, Luomiao
collection PubMed
description Grain length (GL) is one of the crucial determinants of rice yield and quality. However, there is still a shortage of knowledge on the major genes controlling the inheritance of GL in japonica rice, which severely limits the improvement of japonica rice yields. Here, we systemically measured the GL of 667 F(2) and 1570 BC(3)F(3) individuals derived from two cultivated rice cultivars, Pin20 and Songjing15, in order to identify the major genomic regions associated with GL. A novel major QTL, qGL9.1, was mapped on chromosome 9, which is associated with the GL, using whole-genome re-sequencing with bulked segregant analysis. Local QTL linkage analysis with F(2) and fine mapping with the recombinant plant revealed a 93-kb core region on qGL9.1 encoding 15 protein-coding genes. Only the expression level of LOC_Os09g26970 was significantly different between the two parents at different stages of grain development. Moreover, haplotype analysis revealed that the alleles of Pin20 contribute to the optimal GL (9.36 mm) and GL/W (3.31), suggesting that Pin20 is a cultivated species carrying the optimal GL variation of LOC_Os09g26970. Furthermore, a functional-type mutation (16398989-bp, G>A) located on an exon of LOC_Os09g26970 could be used as a molecular marker to distinguish between long and short grains. Our experiments identified LOC_Os09g26970 as a novel gene associated with GL in japonica rice. This result is expected to further the exploration of the genetic mechanism of rice GL and improve GL in rice japonica varieties by marker-assisted selection.
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spelling pubmed-103802902023-07-29 Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1 Yang, Luomiao Li, Peng Wang, Jingguo Liu, Hualong Zheng, Hongliang Xin, Wei Zou, Detang Int J Mol Sci Article Grain length (GL) is one of the crucial determinants of rice yield and quality. However, there is still a shortage of knowledge on the major genes controlling the inheritance of GL in japonica rice, which severely limits the improvement of japonica rice yields. Here, we systemically measured the GL of 667 F(2) and 1570 BC(3)F(3) individuals derived from two cultivated rice cultivars, Pin20 and Songjing15, in order to identify the major genomic regions associated with GL. A novel major QTL, qGL9.1, was mapped on chromosome 9, which is associated with the GL, using whole-genome re-sequencing with bulked segregant analysis. Local QTL linkage analysis with F(2) and fine mapping with the recombinant plant revealed a 93-kb core region on qGL9.1 encoding 15 protein-coding genes. Only the expression level of LOC_Os09g26970 was significantly different between the two parents at different stages of grain development. Moreover, haplotype analysis revealed that the alleles of Pin20 contribute to the optimal GL (9.36 mm) and GL/W (3.31), suggesting that Pin20 is a cultivated species carrying the optimal GL variation of LOC_Os09g26970. Furthermore, a functional-type mutation (16398989-bp, G>A) located on an exon of LOC_Os09g26970 could be used as a molecular marker to distinguish between long and short grains. Our experiments identified LOC_Os09g26970 as a novel gene associated with GL in japonica rice. This result is expected to further the exploration of the genetic mechanism of rice GL and improve GL in rice japonica varieties by marker-assisted selection. MDPI 2023-07-14 /pmc/articles/PMC10380290/ /pubmed/37511217 http://dx.doi.org/10.3390/ijms241411447 Text en © 2023 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, Luomiao
Li, Peng
Wang, Jingguo
Liu, Hualong
Zheng, Hongliang
Xin, Wei
Zou, Detang
Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1
title Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1
title_full Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1
title_fullStr Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1
title_full_unstemmed Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1
title_short Fine Mapping and Candidate Gene Analysis of Rice Grain Length QTL qGL9.1
title_sort fine mapping and candidate gene analysis of rice grain length qtl qgl9.1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380290/
https://www.ncbi.nlm.nih.gov/pubmed/37511217
http://dx.doi.org/10.3390/ijms241411447
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