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Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa

Glucosinolates (GSLs) are sulfur-containing bioactive compounds usually present in Brassicaceae plants and are usually responsible for a pungent flavor and reduction of the nutritional values of seeds. Therefore, breeding rapeseed varieties with low GSL levels is an important breeding objective. Mos...

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Autores principales: Shang, Guoxia, Zhao, Huiyan, Tong, Linhui, Yin, Nengwen, Hu, Ran, Jiang, Haiyan, Kamal, Farah, Zhao, Zhi, Xu, Liang, Lu, Kun, Li, Jiana, Qu, Cunmin, Du, Dezhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104335/
https://www.ncbi.nlm.nih.gov/pubmed/35567275
http://dx.doi.org/10.3390/plants11091274
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author Shang, Guoxia
Zhao, Huiyan
Tong, Linhui
Yin, Nengwen
Hu, Ran
Jiang, Haiyan
Kamal, Farah
Zhao, Zhi
Xu, Liang
Lu, Kun
Li, Jiana
Qu, Cunmin
Du, Dezhi
author_facet Shang, Guoxia
Zhao, Huiyan
Tong, Linhui
Yin, Nengwen
Hu, Ran
Jiang, Haiyan
Kamal, Farah
Zhao, Zhi
Xu, Liang
Lu, Kun
Li, Jiana
Qu, Cunmin
Du, Dezhi
author_sort Shang, Guoxia
collection PubMed
description Glucosinolates (GSLs) are sulfur-containing bioactive compounds usually present in Brassicaceae plants and are usually responsible for a pungent flavor and reduction of the nutritional values of seeds. Therefore, breeding rapeseed varieties with low GSL levels is an important breeding objective. Most GSLs in Brassica rapa are derived from methionine or tryptophan, but two are derived from phenylalanine, one directly (benzylGSL) and one after a round of chain elongation (phenethylGSL). In the present study, two phenylalanine (Phe)-derived GSLs (benzylGSL and phenethylGSL) were identified and quantified in seeds by liquid chromatography and mass spectrometry (LC-MS) analysis. Levels of benzylGSL were low but differed among investigated low and high GSL genotypes. Levels of phenethylGSL (also known as 2-phenylethylGSL) were high but did not differ among GSL genotypes. Subsequently, a genome-wide association study (GWAS) was conducted using 159 B. rapa accessions to demarcate candidate regions underlying 43 and 59 QTNs associated with benzylGSL and phenethylGSL that were distributed on 10 chromosomes and 9 scaffolds, explaining 0.56% to 70.86% of phenotypic variations, respectively. Furthermore, we find that 15 and 18 known or novel candidate genes were identified for the biosynthesis of benzylGSL and phenethylGSL, including known regulators of GSL biosynthesis, such as BrMYB34, BrMYB51, BrMYB28, BrMYB29 and BrMYB122, and novel regulators or structural genes, such as BrMYB44/BrMYB77 and BrMYB60 for benzylGSL and BrCYP79B2 for phenethylGSL. Finally, we investigate the expression profiles of the biosynthetic genes for two Phe-derived GSLs by transcriptomic analysis. Our findings provide new insight into the complex machinery of Phe-derived GSLs in seeds of B. rapa and help to improve the quality of Brassicaceae plant breeding.
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spelling pubmed-91043352022-05-14 Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa Shang, Guoxia Zhao, Huiyan Tong, Linhui Yin, Nengwen Hu, Ran Jiang, Haiyan Kamal, Farah Zhao, Zhi Xu, Liang Lu, Kun Li, Jiana Qu, Cunmin Du, Dezhi Plants (Basel) Article Glucosinolates (GSLs) are sulfur-containing bioactive compounds usually present in Brassicaceae plants and are usually responsible for a pungent flavor and reduction of the nutritional values of seeds. Therefore, breeding rapeseed varieties with low GSL levels is an important breeding objective. Most GSLs in Brassica rapa are derived from methionine or tryptophan, but two are derived from phenylalanine, one directly (benzylGSL) and one after a round of chain elongation (phenethylGSL). In the present study, two phenylalanine (Phe)-derived GSLs (benzylGSL and phenethylGSL) were identified and quantified in seeds by liquid chromatography and mass spectrometry (LC-MS) analysis. Levels of benzylGSL were low but differed among investigated low and high GSL genotypes. Levels of phenethylGSL (also known as 2-phenylethylGSL) were high but did not differ among GSL genotypes. Subsequently, a genome-wide association study (GWAS) was conducted using 159 B. rapa accessions to demarcate candidate regions underlying 43 and 59 QTNs associated with benzylGSL and phenethylGSL that were distributed on 10 chromosomes and 9 scaffolds, explaining 0.56% to 70.86% of phenotypic variations, respectively. Furthermore, we find that 15 and 18 known or novel candidate genes were identified for the biosynthesis of benzylGSL and phenethylGSL, including known regulators of GSL biosynthesis, such as BrMYB34, BrMYB51, BrMYB28, BrMYB29 and BrMYB122, and novel regulators or structural genes, such as BrMYB44/BrMYB77 and BrMYB60 for benzylGSL and BrCYP79B2 for phenethylGSL. Finally, we investigate the expression profiles of the biosynthetic genes for two Phe-derived GSLs by transcriptomic analysis. Our findings provide new insight into the complex machinery of Phe-derived GSLs in seeds of B. rapa and help to improve the quality of Brassicaceae plant breeding. MDPI 2022-05-09 /pmc/articles/PMC9104335/ /pubmed/35567275 http://dx.doi.org/10.3390/plants11091274 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
Shang, Guoxia
Zhao, Huiyan
Tong, Linhui
Yin, Nengwen
Hu, Ran
Jiang, Haiyan
Kamal, Farah
Zhao, Zhi
Xu, Liang
Lu, Kun
Li, Jiana
Qu, Cunmin
Du, Dezhi
Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa
title Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa
title_full Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa
title_fullStr Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa
title_full_unstemmed Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa
title_short Genome-Wide Association Study of Phenylalanine Derived Glucosinolates in Brassica rapa
title_sort genome-wide association study of phenylalanine derived glucosinolates in brassica rapa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104335/
https://www.ncbi.nlm.nih.gov/pubmed/35567275
http://dx.doi.org/10.3390/plants11091274
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