Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population
Molecular characterization of a given set of maize germplasm could be useful for understanding the use of the assembled germplasm for further improvement in a breeding program, such as analyzing genetic diversity, selecting a parental line, assigning heterotic groups, creating a core set of germplasm and/or performing association analysis for traits of interest. In this study, we used single nucleotide polymorphism (SNP) markers to assess the genetic variability in a set of doubled haploid (DH) lines derived from the unselected Iowa Stiff Stalk Synthetic (BSSS) maize population, denoted as C0 (BSSS(R)C0), the seventeenth cycle of reciprocal recurrent selection in BSSS (BSSS(R)C17), denoted as C17 and the cross between BSSS(R)C0 and BSSS(R)C17 denoted as C0/C17. With the aim to explore if we have potentially lost diversity from C0 to C17 derived DH lines and observe whether useful genetic variation in C0 was left behind during the selection process since C0 could be a reservoir of genetic diversity that could be untapped using DH technology. Additionally, we quantify the contribution of the BSSS progenitors in each set of DH lines. The molecular characterization analysis confirmed the apparent separation and the loss of genetic variability from C0 to C17 through the recurrent selection process. Which was observed by the degree of differentiation between the C0_DHL versus C17_DHL groups by Wright’s F-statistics (FST). Similarly for the population structure based on principal component analysis (PCA) revealed a clear separation among groups of DH lines. Some of the progenitors had a higher genetic contribution in C0 compared with C0/C17 and C17 derived DH lines. Although genetic drift can explain most of the genetic structure genome-wide, phenotypic data provide evidence that selection has altered favorable allele frequencies in the BSSS maize population through the reciprocal recurrent selection program.
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Frontiers Media S.A.
2023
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Subjects: | AGRICULTURAL SCIENCES AND BIOTECHNOLOGY, Homozygous Lines, GENETIC DIVERSITY (AS RESOURCE), GENETIC RESOURCES, ZEA MAYS, GENOTYPING, DOUBLED HAPLOIDS, SINGLE NUCLEOTIDE POLYMORPHISMS, Genetic Resources, |
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dig-cimmyt-10883-226942023-09-04T15:44:59Z Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population Ledesma, A. Sales Ribeiro, F.A. Uberti, A. Edwards, J. Hearne, S. Frei, U.K. Lübberstedt, T. AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Homozygous Lines GENETIC DIVERSITY (AS RESOURCE) GENETIC RESOURCES ZEA MAYS GENOTYPING DOUBLED HAPLOIDS SINGLE NUCLEOTIDE POLYMORPHISMS Genetic Resources Molecular characterization of a given set of maize germplasm could be useful for understanding the use of the assembled germplasm for further improvement in a breeding program, such as analyzing genetic diversity, selecting a parental line, assigning heterotic groups, creating a core set of germplasm and/or performing association analysis for traits of interest. In this study, we used single nucleotide polymorphism (SNP) markers to assess the genetic variability in a set of doubled haploid (DH) lines derived from the unselected Iowa Stiff Stalk Synthetic (BSSS) maize population, denoted as C0 (BSSS(R)C0), the seventeenth cycle of reciprocal recurrent selection in BSSS (BSSS(R)C17), denoted as C17 and the cross between BSSS(R)C0 and BSSS(R)C17 denoted as C0/C17. With the aim to explore if we have potentially lost diversity from C0 to C17 derived DH lines and observe whether useful genetic variation in C0 was left behind during the selection process since C0 could be a reservoir of genetic diversity that could be untapped using DH technology. Additionally, we quantify the contribution of the BSSS progenitors in each set of DH lines. The molecular characterization analysis confirmed the apparent separation and the loss of genetic variability from C0 to C17 through the recurrent selection process. Which was observed by the degree of differentiation between the C0_DHL versus C17_DHL groups by Wright’s F-statistics (FST). Similarly for the population structure based on principal component analysis (PCA) revealed a clear separation among groups of DH lines. Some of the progenitors had a higher genetic contribution in C0 compared with C0/C17 and C17 derived DH lines. Although genetic drift can explain most of the genetic structure genome-wide, phenotypic data provide evidence that selection has altered favorable allele frequencies in the BSSS maize population through the reciprocal recurrent selection program. 2023-08-31T20:10:13Z 2023-08-31T20:10:13Z 2023 Article Published Version https://hdl.handle.net/10883/22694 10.3389/fpls.2023.1226072 English https://doi.org/10.25380/iastate.22893878.v1 CIMMYT manages Intellectual Assets as International Public Goods. The user is free to download, print, store and share this work. In case you want to translate or create any other derivative work and share or distribute such translation/derivative work, please contact CIMMYT-Knowledge-Center@cgiar.org indicating the work you want to use and the kind of use you intend; CIMMYT will contact you with the suitable license for that purpose Open Access Switzerland Frontiers Media S.A. 14 1664-462X Frontiers in Plant Science 1226072 |
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AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Homozygous Lines GENETIC DIVERSITY (AS RESOURCE) GENETIC RESOURCES ZEA MAYS GENOTYPING DOUBLED HAPLOIDS SINGLE NUCLEOTIDE POLYMORPHISMS Genetic Resources AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Homozygous Lines GENETIC DIVERSITY (AS RESOURCE) GENETIC RESOURCES ZEA MAYS GENOTYPING DOUBLED HAPLOIDS SINGLE NUCLEOTIDE POLYMORPHISMS Genetic Resources |
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AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Homozygous Lines GENETIC DIVERSITY (AS RESOURCE) GENETIC RESOURCES ZEA MAYS GENOTYPING DOUBLED HAPLOIDS SINGLE NUCLEOTIDE POLYMORPHISMS Genetic Resources AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Homozygous Lines GENETIC DIVERSITY (AS RESOURCE) GENETIC RESOURCES ZEA MAYS GENOTYPING DOUBLED HAPLOIDS SINGLE NUCLEOTIDE POLYMORPHISMS Genetic Resources Ledesma, A. Sales Ribeiro, F.A. Uberti, A. Edwards, J. Hearne, S. Frei, U.K. Lübberstedt, T. Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population |
description |
Molecular characterization of a given set of maize germplasm could be useful for understanding the use of the assembled germplasm for further improvement in a breeding program, such as analyzing genetic diversity, selecting a parental line, assigning heterotic groups, creating a core set of germplasm and/or performing association analysis for traits of interest. In this study, we used single nucleotide polymorphism (SNP) markers to assess the genetic variability in a set of doubled haploid (DH) lines derived from the unselected Iowa Stiff Stalk Synthetic (BSSS) maize population, denoted as C0 (BSSS(R)C0), the seventeenth cycle of reciprocal recurrent selection in BSSS (BSSS(R)C17), denoted as C17 and the cross between BSSS(R)C0 and BSSS(R)C17 denoted as C0/C17. With the aim to explore if we have potentially lost diversity from C0 to C17 derived DH lines and observe whether useful genetic variation in C0 was left behind during the selection process since C0 could be a reservoir of genetic diversity that could be untapped using DH technology. Additionally, we quantify the contribution of the BSSS progenitors in each set of DH lines. The molecular characterization analysis confirmed the apparent separation and the loss of genetic variability from C0 to C17 through the recurrent selection process. Which was observed by the degree of differentiation between the C0_DHL versus C17_DHL groups by Wright’s F-statistics (FST). Similarly for the population structure based on principal component analysis (PCA) revealed a clear separation among groups of DH lines. Some of the progenitors had a higher genetic contribution in C0 compared with C0/C17 and C17 derived DH lines. Although genetic drift can explain most of the genetic structure genome-wide, phenotypic data provide evidence that selection has altered favorable allele frequencies in the BSSS maize population through the reciprocal recurrent selection program. |
format |
Article |
topic_facet |
AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Homozygous Lines GENETIC DIVERSITY (AS RESOURCE) GENETIC RESOURCES ZEA MAYS GENOTYPING DOUBLED HAPLOIDS SINGLE NUCLEOTIDE POLYMORPHISMS Genetic Resources |
author |
Ledesma, A. Sales Ribeiro, F.A. Uberti, A. Edwards, J. Hearne, S. Frei, U.K. Lübberstedt, T. |
author_facet |
Ledesma, A. Sales Ribeiro, F.A. Uberti, A. Edwards, J. Hearne, S. Frei, U.K. Lübberstedt, T. |
author_sort |
Ledesma, A. |
title |
Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population |
title_short |
Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population |
title_full |
Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population |
title_fullStr |
Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population |
title_full_unstemmed |
Molecular characterization of doubled haploid lines derived from different cycles of the Iowa Stiff Stalk Synthetic (BSSS) maize population |
title_sort |
molecular characterization of doubled haploid lines derived from different cycles of the iowa stiff stalk synthetic (bsss) maize population |
publisher |
Frontiers Media S.A. |
publishDate |
2023 |
url |
https://hdl.handle.net/10883/22694 |
work_keys_str_mv |
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