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QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions

High seed vigor is important for agricultural production due to the associated potential for increased growth and productivity. However, a better understanding of the underlying molecular mechanisms is required because the genetic basis for seed vigor remains unknown. We used single-nucleotide polym...

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Autores principales: Han, Zanping, Ku, Lixia, Zhang, Zhenzhen, Zhang, Jun, Guo, ShuLei, Liu, Haiying, Zhao, Ruifang, Ren, Zhenzhen, Zhang, Liangkun, Su, Huihui, Dong, Lei, Chen, Yanhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3961396/
https://www.ncbi.nlm.nih.gov/pubmed/24651614
http://dx.doi.org/10.1371/journal.pone.0092535
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author Han, Zanping
Ku, Lixia
Zhang, Zhenzhen
Zhang, Jun
Guo, ShuLei
Liu, Haiying
Zhao, Ruifang
Ren, Zhenzhen
Zhang, Liangkun
Su, Huihui
Dong, Lei
Chen, Yanhui
author_facet Han, Zanping
Ku, Lixia
Zhang, Zhenzhen
Zhang, Jun
Guo, ShuLei
Liu, Haiying
Zhao, Ruifang
Ren, Zhenzhen
Zhang, Liangkun
Su, Huihui
Dong, Lei
Chen, Yanhui
author_sort Han, Zanping
collection PubMed
description High seed vigor is important for agricultural production due to the associated potential for increased growth and productivity. However, a better understanding of the underlying molecular mechanisms is required because the genetic basis for seed vigor remains unknown. We used single-nucleotide polymorphism (SNP) markers to map quantitative trait loci (QTLs) for four seed vigor traits in two connected recombinant inbred line (RIL) maize populations under four treatment conditions during seed germination. Sixty-five QTLs distributed between the two populations were identified and a meta-analysis was used to integrate genetic maps. Sixty-one initially identified QTLs were integrated into 18 meta-QTLs (mQTLs). Initial QTLs with contribution to phenotypic variation values of R(2)>10% were integrated into mQTLs. Twenty-three candidate genes for association with seed vigor traits coincided with 13 mQTLs. The candidate genes had functions in the glycolytic pathway and in protein metabolism. QTLs with major effects (R(2)>10%) were identified under at least one treatment condition for mQTL2, mQTL3-2, and mQTL3-4. Candidate genes included a calcium-dependent protein kinase gene (302810918) involved in signal transduction that mapped in the mQTL3-2 interval associated with germination energy (GE) and germination percentage (GP), and an hsp20/alpha crystallin family protein gene (At5g51440) that mapped in the mQTL3-4 interval associated with GE and GP. Two initial QTLs with a major effect under at least two treatment conditions were identified for mQTL5-2. A cucumisin-like Ser protease gene (At5g67360) mapped in the mQTL5-2 interval associated with GP. The chromosome regions for mQTL2, mQTL3-2, mQTL3-4, and mQTL5-2 may be hot spots for QTLs related to seed vigor traits. The mQTLs and candidate genes identified in this study provide valuable information for the identification of additional quantitative trait genes.
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spelling pubmed-39613962014-03-24 QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions Han, Zanping Ku, Lixia Zhang, Zhenzhen Zhang, Jun Guo, ShuLei Liu, Haiying Zhao, Ruifang Ren, Zhenzhen Zhang, Liangkun Su, Huihui Dong, Lei Chen, Yanhui PLoS One Research Article High seed vigor is important for agricultural production due to the associated potential for increased growth and productivity. However, a better understanding of the underlying molecular mechanisms is required because the genetic basis for seed vigor remains unknown. We used single-nucleotide polymorphism (SNP) markers to map quantitative trait loci (QTLs) for four seed vigor traits in two connected recombinant inbred line (RIL) maize populations under four treatment conditions during seed germination. Sixty-five QTLs distributed between the two populations were identified and a meta-analysis was used to integrate genetic maps. Sixty-one initially identified QTLs were integrated into 18 meta-QTLs (mQTLs). Initial QTLs with contribution to phenotypic variation values of R(2)>10% were integrated into mQTLs. Twenty-three candidate genes for association with seed vigor traits coincided with 13 mQTLs. The candidate genes had functions in the glycolytic pathway and in protein metabolism. QTLs with major effects (R(2)>10%) were identified under at least one treatment condition for mQTL2, mQTL3-2, and mQTL3-4. Candidate genes included a calcium-dependent protein kinase gene (302810918) involved in signal transduction that mapped in the mQTL3-2 interval associated with germination energy (GE) and germination percentage (GP), and an hsp20/alpha crystallin family protein gene (At5g51440) that mapped in the mQTL3-4 interval associated with GE and GP. Two initial QTLs with a major effect under at least two treatment conditions were identified for mQTL5-2. A cucumisin-like Ser protease gene (At5g67360) mapped in the mQTL5-2 interval associated with GP. The chromosome regions for mQTL2, mQTL3-2, mQTL3-4, and mQTL5-2 may be hot spots for QTLs related to seed vigor traits. The mQTLs and candidate genes identified in this study provide valuable information for the identification of additional quantitative trait genes. Public Library of Science 2014-03-20 /pmc/articles/PMC3961396/ /pubmed/24651614 http://dx.doi.org/10.1371/journal.pone.0092535 Text en © 2014 Han et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Han, Zanping
Ku, Lixia
Zhang, Zhenzhen
Zhang, Jun
Guo, ShuLei
Liu, Haiying
Zhao, Ruifang
Ren, Zhenzhen
Zhang, Liangkun
Su, Huihui
Dong, Lei
Chen, Yanhui
QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions
title QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions
title_full QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions
title_fullStr QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions
title_full_unstemmed QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions
title_short QTLs for Seed Vigor-Related Traits Identified in Maize Seeds Germinated under Artificial Aging Conditions
title_sort qtls for seed vigor-related traits identified in maize seeds germinated under artificial aging conditions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3961396/
https://www.ncbi.nlm.nih.gov/pubmed/24651614
http://dx.doi.org/10.1371/journal.pone.0092535
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