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Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development

Neohesperidosides are disaccharides that are present in some flavonoids and impart a bitter taste, which can significantly affect the commercial value of citrus fruits. In this study, we identified three flavonoid-7-O-di-glucosyltransferase (dGlcT) genes closely related to 1,2-rhamnosyltransferase (...

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Autores principales: Chen, Jiajing, Yuan, Ziyu, Zhang, Haipeng, Li, Wenyun, Shi, Meiyan, Peng, Zhaoxin, Li, Mingyue, Tian, Jing, Deng, Xiuxin, Cheng, Yunjiang, Deng, Cecilia Hong, Xie, Zongzhou, Zeng, Jiwu, Yao, Jia-Long, Xu, Juan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506761/
https://www.ncbi.nlm.nih.gov/pubmed/30840066
http://dx.doi.org/10.1093/jxb/erz081
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author Chen, Jiajing
Yuan, Ziyu
Zhang, Haipeng
Li, Wenyun
Shi, Meiyan
Peng, Zhaoxin
Li, Mingyue
Tian, Jing
Deng, Xiuxin
Cheng, Yunjiang
Deng, Cecilia Hong
Xie, Zongzhou
Zeng, Jiwu
Yao, Jia-Long
Xu, Juan
author_facet Chen, Jiajing
Yuan, Ziyu
Zhang, Haipeng
Li, Wenyun
Shi, Meiyan
Peng, Zhaoxin
Li, Mingyue
Tian, Jing
Deng, Xiuxin
Cheng, Yunjiang
Deng, Cecilia Hong
Xie, Zongzhou
Zeng, Jiwu
Yao, Jia-Long
Xu, Juan
author_sort Chen, Jiajing
collection PubMed
description Neohesperidosides are disaccharides that are present in some flavonoids and impart a bitter taste, which can significantly affect the commercial value of citrus fruits. In this study, we identified three flavonoid-7-O-di-glucosyltransferase (dGlcT) genes closely related to 1,2-rhamnosyltransferase (1,2RhaT) in citrus genomes. However, only 1,2RhaT was directly linked to the accumulation of neohesperidoside, as demonstrated by association analysis of 50 accessions and co-segregation analysis of an F(1) population derived from Citrus reticulata × Poncirus trifoliata. In transgenic tobacco BY2 cells, over-expression of CitdGlcTs resulted in flavonoid-7-O-glucosides being catalysed into bitterless flavonoid-7-O-di-glucosides, whereas over-expression of Cit1,2RhaT converted the same substrate into bitter-tasting flavonoid-7-O-neohesperidoside. Unlike 1,2RhaT, during citrus fruit development the dGlcTs showed an opposite expression pattern to CHS and CHI, two genes encoding rate-limiting enzymes of flavonoid biosynthesis. An uncoupled availability of dGlcTs and substrates might result in trace accumulation of flavonoid-7-O-di-glucosides in the fruit of C. maxima (pummelo). Past human selection of the deletion and functional mutation of 1,2RhaT has led step-by-step to the evolution of the flavor-related metabolic network in citrus. Our research provides the basis for potentially improving the taste in citrus fruit through manipulation of the network by knocking-out 1,2RhaT or by enhancing the expression of dGlcT using genetic transformation.
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spelling pubmed-65067612019-05-13 Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development Chen, Jiajing Yuan, Ziyu Zhang, Haipeng Li, Wenyun Shi, Meiyan Peng, Zhaoxin Li, Mingyue Tian, Jing Deng, Xiuxin Cheng, Yunjiang Deng, Cecilia Hong Xie, Zongzhou Zeng, Jiwu Yao, Jia-Long Xu, Juan J Exp Bot Research Papers Neohesperidosides are disaccharides that are present in some flavonoids and impart a bitter taste, which can significantly affect the commercial value of citrus fruits. In this study, we identified three flavonoid-7-O-di-glucosyltransferase (dGlcT) genes closely related to 1,2-rhamnosyltransferase (1,2RhaT) in citrus genomes. However, only 1,2RhaT was directly linked to the accumulation of neohesperidoside, as demonstrated by association analysis of 50 accessions and co-segregation analysis of an F(1) population derived from Citrus reticulata × Poncirus trifoliata. In transgenic tobacco BY2 cells, over-expression of CitdGlcTs resulted in flavonoid-7-O-glucosides being catalysed into bitterless flavonoid-7-O-di-glucosides, whereas over-expression of Cit1,2RhaT converted the same substrate into bitter-tasting flavonoid-7-O-neohesperidoside. Unlike 1,2RhaT, during citrus fruit development the dGlcTs showed an opposite expression pattern to CHS and CHI, two genes encoding rate-limiting enzymes of flavonoid biosynthesis. An uncoupled availability of dGlcTs and substrates might result in trace accumulation of flavonoid-7-O-di-glucosides in the fruit of C. maxima (pummelo). Past human selection of the deletion and functional mutation of 1,2RhaT has led step-by-step to the evolution of the flavor-related metabolic network in citrus. Our research provides the basis for potentially improving the taste in citrus fruit through manipulation of the network by knocking-out 1,2RhaT or by enhancing the expression of dGlcT using genetic transformation. Oxford University Press 2019-05-01 2019-03-06 /pmc/articles/PMC6506761/ /pubmed/30840066 http://dx.doi.org/10.1093/jxb/erz081 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Papers
Chen, Jiajing
Yuan, Ziyu
Zhang, Haipeng
Li, Wenyun
Shi, Meiyan
Peng, Zhaoxin
Li, Mingyue
Tian, Jing
Deng, Xiuxin
Cheng, Yunjiang
Deng, Cecilia Hong
Xie, Zongzhou
Zeng, Jiwu
Yao, Jia-Long
Xu, Juan
Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development
title Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development
title_full Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development
title_fullStr Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development
title_full_unstemmed Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development
title_short Cit1,2RhaT and two novel CitdGlcTs participate in flavor-related flavonoid metabolism during citrus fruit development
title_sort cit1,2rhat and two novel citdglcts participate in flavor-related flavonoid metabolism during citrus fruit development
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506761/
https://www.ncbi.nlm.nih.gov/pubmed/30840066
http://dx.doi.org/10.1093/jxb/erz081
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