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CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower

Background: Flavonoids with various structures play a vital role in plant acclimatization to varying environments as well as in plant growth, development, and reproduction. Exogenous applications of ethylene and 1-aminocyclopropane carboxylic acid (ACC), could affect the accumulation of flavonoids....

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Autores principales: Tu, Yanhua, He, Beixuan, Gao, Songyan, Guo, Dandan, Jia, Xinlei, Dong, Xin, Guo, Meili
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471848/
https://www.ncbi.nlm.nih.gov/pubmed/30901924
http://dx.doi.org/10.3390/molecules24061128
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author Tu, Yanhua
He, Beixuan
Gao, Songyan
Guo, Dandan
Jia, Xinlei
Dong, Xin
Guo, Meili
author_facet Tu, Yanhua
He, Beixuan
Gao, Songyan
Guo, Dandan
Jia, Xinlei
Dong, Xin
Guo, Meili
author_sort Tu, Yanhua
collection PubMed
description Background: Flavonoids with various structures play a vital role in plant acclimatization to varying environments as well as in plant growth, development, and reproduction. Exogenous applications of ethylene and 1-aminocyclopropane carboxylic acid (ACC), could affect the accumulation of flavonoids. Very few attempts have been made to investigate the effect of 1-aminocyclopropane carboxylic acid oxidase (ACO), a unique enzyme that catalyzes ACC to ethylene, on genes and metabolites in the flavonoid biosynthetic pathway. In this study, two ACOs in safflower (CtACOs) were cloned, and then transgenic safflower with overexpressed CtACO1 was generated through the Agrobacterium-mediated floral dipping method. Results: CtACO1 and CtACO2 were both characterized by the 2-oxoglutarate binding domain RxS and the ferrous iron binding site HxDxnH as ACOs from other plants. However, the transcript levels of CtACO1 in flowers at stages I, II, III, and IV were all higher than those of CtACO2. At the cellular level, by using electroporation transformation, CtACO1 was found to be localized at the cytomembrane in onion epidermal cells. CtACO1 overexpression had varying effects on genes involved in the ethylene and flavonoid biosynthetic pathways. The metabolites analysis showed that CtACO1 overexpression lines had a higher accumulation of quercetin and its glycosylated derivatives (quercetin 3-β-d-glucoside and rutin). In contrast, the accumulation of quinochalcones (hydroxysafflor yellow A and carthamin), kaempferol glycosylated derivatives (kaempferol-3-O-β-rutinoside and kaempferol-3-O-β-d-glucoside), apigenin, and luteolin in CtACO1 overexpression lines were decreased. Conclusion: This study confirmed the feasibility of applying the floral dipping method to safflower and showed a novel regulatory effect of CtACO1 in the flavonoid biosynthetic pathway. It provides hypothetical and practical groundwork for further research on regulating the overall metabolic flux of flavonoids in safflower, particularly hydroxysafflor yellow A and other quinochalcones, by using appropriate genetic engineering strategies.
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spelling pubmed-64718482019-04-26 CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower Tu, Yanhua He, Beixuan Gao, Songyan Guo, Dandan Jia, Xinlei Dong, Xin Guo, Meili Molecules Article Background: Flavonoids with various structures play a vital role in plant acclimatization to varying environments as well as in plant growth, development, and reproduction. Exogenous applications of ethylene and 1-aminocyclopropane carboxylic acid (ACC), could affect the accumulation of flavonoids. Very few attempts have been made to investigate the effect of 1-aminocyclopropane carboxylic acid oxidase (ACO), a unique enzyme that catalyzes ACC to ethylene, on genes and metabolites in the flavonoid biosynthetic pathway. In this study, two ACOs in safflower (CtACOs) were cloned, and then transgenic safflower with overexpressed CtACO1 was generated through the Agrobacterium-mediated floral dipping method. Results: CtACO1 and CtACO2 were both characterized by the 2-oxoglutarate binding domain RxS and the ferrous iron binding site HxDxnH as ACOs from other plants. However, the transcript levels of CtACO1 in flowers at stages I, II, III, and IV were all higher than those of CtACO2. At the cellular level, by using electroporation transformation, CtACO1 was found to be localized at the cytomembrane in onion epidermal cells. CtACO1 overexpression had varying effects on genes involved in the ethylene and flavonoid biosynthetic pathways. The metabolites analysis showed that CtACO1 overexpression lines had a higher accumulation of quercetin and its glycosylated derivatives (quercetin 3-β-d-glucoside and rutin). In contrast, the accumulation of quinochalcones (hydroxysafflor yellow A and carthamin), kaempferol glycosylated derivatives (kaempferol-3-O-β-rutinoside and kaempferol-3-O-β-d-glucoside), apigenin, and luteolin in CtACO1 overexpression lines were decreased. Conclusion: This study confirmed the feasibility of applying the floral dipping method to safflower and showed a novel regulatory effect of CtACO1 in the flavonoid biosynthetic pathway. It provides hypothetical and practical groundwork for further research on regulating the overall metabolic flux of flavonoids in safflower, particularly hydroxysafflor yellow A and other quinochalcones, by using appropriate genetic engineering strategies. MDPI 2019-03-21 /pmc/articles/PMC6471848/ /pubmed/30901924 http://dx.doi.org/10.3390/molecules24061128 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tu, Yanhua
He, Beixuan
Gao, Songyan
Guo, Dandan
Jia, Xinlei
Dong, Xin
Guo, Meili
CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower
title CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower
title_full CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower
title_fullStr CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower
title_full_unstemmed CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower
title_short CtACO1 Overexpression Resulted in the Alteration of the Flavonoids Profile of Safflower
title_sort ctaco1 overexpression resulted in the alteration of the flavonoids profile of safflower
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471848/
https://www.ncbi.nlm.nih.gov/pubmed/30901924
http://dx.doi.org/10.3390/molecules24061128
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