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Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis

Soybean with enriched nutrients has emerged as a prominent source of edible oil and protein. In the present study, a meta-analysis was performed by integrating quantitative trait loci (QTLs) information, region-specific association and transcriptomic analysis. Analysis of about a thousand QTLs previ...

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Autores principales: Kumar, Virender, Goyal, Vinod, Mandlik, Rushil, Kumawat, Surbhi, Sudhakaran, Sreeja, Padalkar, Gunashri, Rana, Nitika, Deshmukh, Rupesh, Roy, Joy, Sharma, Tilak Raj, Sonah, Humira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9818467/
https://www.ncbi.nlm.nih.gov/pubmed/36611890
http://dx.doi.org/10.3390/cells12010097
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author Kumar, Virender
Goyal, Vinod
Mandlik, Rushil
Kumawat, Surbhi
Sudhakaran, Sreeja
Padalkar, Gunashri
Rana, Nitika
Deshmukh, Rupesh
Roy, Joy
Sharma, Tilak Raj
Sonah, Humira
author_facet Kumar, Virender
Goyal, Vinod
Mandlik, Rushil
Kumawat, Surbhi
Sudhakaran, Sreeja
Padalkar, Gunashri
Rana, Nitika
Deshmukh, Rupesh
Roy, Joy
Sharma, Tilak Raj
Sonah, Humira
author_sort Kumar, Virender
collection PubMed
description Soybean with enriched nutrients has emerged as a prominent source of edible oil and protein. In the present study, a meta-analysis was performed by integrating quantitative trait loci (QTLs) information, region-specific association and transcriptomic analysis. Analysis of about a thousand QTLs previously identified in soybean helped to pinpoint 14 meta-QTLs for oil and 16 meta-QTLs for protein content. Similarly, region-specific association analysis using whole genome re-sequenced data was performed for the most promising meta-QTL on chromosomes 6 and 20. Only 94 out of 468 genes related to fatty acid and protein metabolic pathways identified within the meta-QTL region were found to be expressed in seeds. Allele mining and haplotyping of these selected genes were performed using whole genome resequencing data. Interestingly, a significant haplotypic association of some genes with oil and protein content was observed, for instance, in the case of FAD2-1B gene, an average seed oil content of 20.22% for haplotype 1 compared to 15.52% for haplotype 5 was observed. In addition, the mutation S86F in the FAD2-1B gene produces a destabilizing effect of (ΔΔG Stability) −0.31 kcal/mol. Transcriptomic analysis revealed the tissue-specific expression of candidate genes. Based on their higher expression in seed developmental stages, genes such as sugar transporter, fatty acid desaturase (FAD), lipid transporter, major facilitator protein and amino acid transporter can be targeted for functional validation. The approach and information generated in the present study will be helpful in the map-based cloning of regulatory genes, as well as for marker-assisted breeding in soybean.
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spelling pubmed-98184672023-01-07 Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis Kumar, Virender Goyal, Vinod Mandlik, Rushil Kumawat, Surbhi Sudhakaran, Sreeja Padalkar, Gunashri Rana, Nitika Deshmukh, Rupesh Roy, Joy Sharma, Tilak Raj Sonah, Humira Cells Article Soybean with enriched nutrients has emerged as a prominent source of edible oil and protein. In the present study, a meta-analysis was performed by integrating quantitative trait loci (QTLs) information, region-specific association and transcriptomic analysis. Analysis of about a thousand QTLs previously identified in soybean helped to pinpoint 14 meta-QTLs for oil and 16 meta-QTLs for protein content. Similarly, region-specific association analysis using whole genome re-sequenced data was performed for the most promising meta-QTL on chromosomes 6 and 20. Only 94 out of 468 genes related to fatty acid and protein metabolic pathways identified within the meta-QTL region were found to be expressed in seeds. Allele mining and haplotyping of these selected genes were performed using whole genome resequencing data. Interestingly, a significant haplotypic association of some genes with oil and protein content was observed, for instance, in the case of FAD2-1B gene, an average seed oil content of 20.22% for haplotype 1 compared to 15.52% for haplotype 5 was observed. In addition, the mutation S86F in the FAD2-1B gene produces a destabilizing effect of (ΔΔG Stability) −0.31 kcal/mol. Transcriptomic analysis revealed the tissue-specific expression of candidate genes. Based on their higher expression in seed developmental stages, genes such as sugar transporter, fatty acid desaturase (FAD), lipid transporter, major facilitator protein and amino acid transporter can be targeted for functional validation. The approach and information generated in the present study will be helpful in the map-based cloning of regulatory genes, as well as for marker-assisted breeding in soybean. MDPI 2022-12-26 /pmc/articles/PMC9818467/ /pubmed/36611890 http://dx.doi.org/10.3390/cells12010097 Text en © 2022 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
Kumar, Virender
Goyal, Vinod
Mandlik, Rushil
Kumawat, Surbhi
Sudhakaran, Sreeja
Padalkar, Gunashri
Rana, Nitika
Deshmukh, Rupesh
Roy, Joy
Sharma, Tilak Raj
Sonah, Humira
Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis
title Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis
title_full Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis
title_fullStr Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis
title_full_unstemmed Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis
title_short Pinpointing Genomic Regions and Candidate Genes Associated with Seed Oil and Protein Content in Soybean through an Integrative Transcriptomic and QTL Meta-Analysis
title_sort pinpointing genomic regions and candidate genes associated with seed oil and protein content in soybean through an integrative transcriptomic and qtl meta-analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9818467/
https://www.ncbi.nlm.nih.gov/pubmed/36611890
http://dx.doi.org/10.3390/cells12010097
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