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Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants

Glucosinolates (GSLs) are secondary metabolites providing defense against pathogens and herbivores in plants, and anti-carcinogenic activity against human cancer cells. Profiles of GSLs vary greatly among members of genus Brassica. In this study, we found that a reference line of Chinese cabbage (B....

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Autores principales: Kim, Jin A., Moon, Heewon, Kim, Hyang Suk, Choi, Dasom, Kim, Nan-Sun, Jang, Juna, Lee, Sang Woo, Baskoro Dwi Nugroho, Adji, Kim, Dong-Hwan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891538/
https://www.ncbi.nlm.nih.gov/pubmed/36743533
http://dx.doi.org/10.3389/fpls.2022.1067508
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author Kim, Jin A.
Moon, Heewon
Kim, Hyang Suk
Choi, Dasom
Kim, Nan-Sun
Jang, Juna
Lee, Sang Woo
Baskoro Dwi Nugroho, Adji
Kim, Dong-Hwan
author_facet Kim, Jin A.
Moon, Heewon
Kim, Hyang Suk
Choi, Dasom
Kim, Nan-Sun
Jang, Juna
Lee, Sang Woo
Baskoro Dwi Nugroho, Adji
Kim, Dong-Hwan
author_sort Kim, Jin A.
collection PubMed
description Glucosinolates (GSLs) are secondary metabolites providing defense against pathogens and herbivores in plants, and anti-carcinogenic activity against human cancer cells. Profiles of GSLs vary greatly among members of genus Brassica. In this study, we found that a reference line of Chinese cabbage (B. rapa ssp. pekinensis), ‘Chiifu’ contains significantly lower amounts of total GSLs than the oilseed-type B. rapa (B. rapa ssp. trilocularis) line ‘LP08’. This study aimed to identify the key regulators of the high accumulation of GSLs in Brassica rapa plants using transcriptomic and linkage mapping approaches. Comparative transcriptome analysis showed that, in total, 8,276 and 9,878 genes were differentially expressed between ‘Chiifu’ and ‘LP08’ under light and dark conditions, respectively. Among 162 B. rapa GSL pathway genes, 79 were related to GSL metabolism under light conditions. We also performed QTL analysis using a single nucleotide polymorphism-based linkage map constructed using 151 F(5) individuals derived from a cross between the ‘Chiifu’ and ‘LP08’ inbred lines. Two major QTL peaks were successfully identified on chromosome 3 using high-performance liquid chromatography to obtain GSL profiles from 97 F(5) recombinant inbred lines. The MYB-domain transcription factor gene BrMYB28.1 (Bra012961) was found in the highest QTL peak region. The second highest peak was located near the 2-oxoacid-dependent dioxygenase gene BrGSL-OH.1 (Bra022920). This study identified major genes responsible for differing profiles of GSLs between ‘Chiifu’ and ‘LP08’. Thus, our study provides molecular insights into differences in GSL profiles between vegetative- and oilseed-type B. rapa plants.
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spelling pubmed-98915382023-02-02 Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants Kim, Jin A. Moon, Heewon Kim, Hyang Suk Choi, Dasom Kim, Nan-Sun Jang, Juna Lee, Sang Woo Baskoro Dwi Nugroho, Adji Kim, Dong-Hwan Front Plant Sci Plant Science Glucosinolates (GSLs) are secondary metabolites providing defense against pathogens and herbivores in plants, and anti-carcinogenic activity against human cancer cells. Profiles of GSLs vary greatly among members of genus Brassica. In this study, we found that a reference line of Chinese cabbage (B. rapa ssp. pekinensis), ‘Chiifu’ contains significantly lower amounts of total GSLs than the oilseed-type B. rapa (B. rapa ssp. trilocularis) line ‘LP08’. This study aimed to identify the key regulators of the high accumulation of GSLs in Brassica rapa plants using transcriptomic and linkage mapping approaches. Comparative transcriptome analysis showed that, in total, 8,276 and 9,878 genes were differentially expressed between ‘Chiifu’ and ‘LP08’ under light and dark conditions, respectively. Among 162 B. rapa GSL pathway genes, 79 were related to GSL metabolism under light conditions. We also performed QTL analysis using a single nucleotide polymorphism-based linkage map constructed using 151 F(5) individuals derived from a cross between the ‘Chiifu’ and ‘LP08’ inbred lines. Two major QTL peaks were successfully identified on chromosome 3 using high-performance liquid chromatography to obtain GSL profiles from 97 F(5) recombinant inbred lines. The MYB-domain transcription factor gene BrMYB28.1 (Bra012961) was found in the highest QTL peak region. The second highest peak was located near the 2-oxoacid-dependent dioxygenase gene BrGSL-OH.1 (Bra022920). This study identified major genes responsible for differing profiles of GSLs between ‘Chiifu’ and ‘LP08’. Thus, our study provides molecular insights into differences in GSL profiles between vegetative- and oilseed-type B. rapa plants. Frontiers Media S.A. 2023-01-18 /pmc/articles/PMC9891538/ /pubmed/36743533 http://dx.doi.org/10.3389/fpls.2022.1067508 Text en Copyright © 2023 Kim, Moon, Kim, Choi, Kim, Jang, Lee, Baskoro Dwi Nugroho and Kim https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Kim, Jin A.
Moon, Heewon
Kim, Hyang Suk
Choi, Dasom
Kim, Nan-Sun
Jang, Juna
Lee, Sang Woo
Baskoro Dwi Nugroho, Adji
Kim, Dong-Hwan
Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants
title Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants
title_full Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants
title_fullStr Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants
title_full_unstemmed Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants
title_short Transcriptome and QTL mapping analyses of major QTL genes controlling glucosinolate contents in vegetable- and oilseed-type Brassica rapa plants
title_sort transcriptome and qtl mapping analyses of major qtl genes controlling glucosinolate contents in vegetable- and oilseed-type brassica rapa plants
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891538/
https://www.ncbi.nlm.nih.gov/pubmed/36743533
http://dx.doi.org/10.3389/fpls.2022.1067508
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