Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice

The identification of loci and markers associated with milled grain appearance traits is essential for breeding high-yielding and good-quality rice variety. To detect stable loci for these characteristics, grain length (GL), grain width (GW), grain length/width (GLW), chalkiness degree (CD), chalky-...

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Autores principales: Xiaoxiang, Li, Jindong, Liu, Liang, Guo, Xiucai, Wei, Yamei, Wang, Xiaowu, Pan, Zheng, Dong, Wenqiang, Liu, Licheng, Liu, Jun, Min, Sanxiong, Liu, Ye, Guoyou, Yongchao, Li
Formato: Journal Article
Lenguaje:Inglés
Publicado: Elsevier 2023
Acceso en línea:https://hdl.handle.net/10568/163907
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author Xiaoxiang, Li
Jindong, Liu
Liang, Guo
Xiucai, Wei
Yamei, Wang
Xiaowu, Pan
Zheng, Dong
Wenqiang, Liu
Licheng, Liu
Jun, Min
Sanxiong, Liu
Ye, Guoyou
Yongchao, Li
author_browse Jindong, Liu
Jun, Min
Liang, Guo
Licheng, Liu
Sanxiong, Liu
Wenqiang, Liu
Xiaowu, Pan
Xiaoxiang, Li
Xiucai, Wei
Yamei, Wang
Ye, Guoyou
Yongchao, Li
Zheng, Dong
author_facet Xiaoxiang, Li
Jindong, Liu
Liang, Guo
Xiucai, Wei
Yamei, Wang
Xiaowu, Pan
Zheng, Dong
Wenqiang, Liu
Licheng, Liu
Jun, Min
Sanxiong, Liu
Ye, Guoyou
Yongchao, Li
author_sort Xiaoxiang, Li
collection Repository of Agricultural Research Outputs (CGSpace)
description The identification of loci and markers associated with milled grain appearance traits is essential for breeding high-yielding and good-quality rice variety. To detect stable loci for these characteristics, grain length (GL), grain width (GW), grain length/width (GLW), chalkiness degree (CD), chalky-grain rate (CR) and translucency degree (TD) of 378 rice lines were evaluated in three seasons. These lines were derived from a multi-parent advanced generation intercross (MAGIC) population, and genotyped using genotyping-by-sequencing, which identified 52 503 single nucleotide polymorphism (SNP) markers for genome-wide association study (GWAS). A total of 24 loci for milled grain appearance traits were detected, explaining 3.6%–27.7% of the phenotypic variations, among which, 10 were identified in the similar locations to known genes or QTLs, while 14 were believed to be novel. In addition, 15 loci exhibited effects across two or more traits, and 18 loci were stable across two or more seasons. Further, we identified four candidate genes possibly involved in signal transduction pathways of plant hormones and starch synthesis for milled rice using qRT-PCR validation. This study provides novel insights into the genetic basis underlying milled rice, and the significantly associated SNP markers and accessions with a larger number of favorable alleles could prove useful in improving grain yield and quality through breeding efforts.
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spelling CGSpace1639072025-05-14T10:24:22Z Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice Xiaoxiang, Li Jindong, Liu Liang, Guo Xiucai, Wei Yamei, Wang Xiaowu, Pan Zheng, Dong Wenqiang, Liu Licheng, Liu Jun, Min Sanxiong, Liu Ye, Guoyou Yongchao, Li The identification of loci and markers associated with milled grain appearance traits is essential for breeding high-yielding and good-quality rice variety. To detect stable loci for these characteristics, grain length (GL), grain width (GW), grain length/width (GLW), chalkiness degree (CD), chalky-grain rate (CR) and translucency degree (TD) of 378 rice lines were evaluated in three seasons. These lines were derived from a multi-parent advanced generation intercross (MAGIC) population, and genotyped using genotyping-by-sequencing, which identified 52 503 single nucleotide polymorphism (SNP) markers for genome-wide association study (GWAS). A total of 24 loci for milled grain appearance traits were detected, explaining 3.6%–27.7% of the phenotypic variations, among which, 10 were identified in the similar locations to known genes or QTLs, while 14 were believed to be novel. In addition, 15 loci exhibited effects across two or more traits, and 18 loci were stable across two or more seasons. Further, we identified four candidate genes possibly involved in signal transduction pathways of plant hormones and starch synthesis for milled rice using qRT-PCR validation. This study provides novel insights into the genetic basis underlying milled rice, and the significantly associated SNP markers and accessions with a larger number of favorable alleles could prove useful in improving grain yield and quality through breeding efforts. 2023-09 2024-12-19T12:53:11Z 2024-12-19T12:53:11Z Journal Article https://hdl.handle.net/10568/163907 en Open Access Elsevier Xiaoxiang, Li; Jindong, Liu; Liang, Guo; Xiucai, Wei; Yamei, Wang; Xiaowu, Pan; Zheng, Dong; Wenqiang, Liu; Licheng, Liu; Jun, Min; Sanxiong, Liu; Guoyou, Ye and Yongchao, Li. 2023. Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice. Rice Science, Volume 30 no. 5 p. 364-368
spellingShingle Xiaoxiang, Li
Jindong, Liu
Liang, Guo
Xiucai, Wei
Yamei, Wang
Xiaowu, Pan
Zheng, Dong
Wenqiang, Liu
Licheng, Liu
Jun, Min
Sanxiong, Liu
Ye, Guoyou
Yongchao, Li
Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice
title Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice
title_full Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice
title_fullStr Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice
title_full_unstemmed Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice
title_short Genome-wide association study for milled grain appearance traits using multi-parent advanced generation intercross population in rice
title_sort genome wide association study for milled grain appearance traits using multi parent advanced generation intercross population in rice
url https://hdl.handle.net/10568/163907
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