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Characterization of a Citrus R2R3-MYB Transcription Factor that Regulates the Flavonol and Hydroxycinnamic Acid Biosynthesis

Identifieur interne : 000298 ( Main/Exploration ); précédent : 000297; suivant : 000299

Characterization of a Citrus R2R3-MYB Transcription Factor that Regulates the Flavonol and Hydroxycinnamic Acid Biosynthesis

Auteurs : Chaoyang Liu [République populaire de Chine] ; Jianmei Long [République populaire de Chine] ; Kaijie Zhu [République populaire de Chine] ; Linlin Liu [République populaire de Chine] ; Wei Yang [République populaire de Chine] ; Hongyan Zhang [République populaire de Chine] ; Li Li [États-Unis] ; Qiang Xu [République populaire de Chine] ; Xiuxin Deng [République populaire de Chine]

Source :

RBID : PMC:4861916

Abstract

Flavonols and hydroxycinnamic acids are important phenylpropanoid metabolites in plants. In this study, we isolated and characterized a citrus R2R3-MYB transcription factor CsMYBF1, encoding a protein belonging to the flavonol-specific MYB subgroup. Ectopic expression of CsMYBF1 in tomato led to an up-regulation of a series of genes involved in primary metabolism and the phenylpropanoid pathway, and induced a strong accumulation of hydroxycinnamic acid compounds but not the flavonols. The RNAi suppression of CsMYBF1 in citrus callus caused a down-regulation of many phenylpropanoid pathway genes and reduced the contents of hydroxycinnamic acids and flavonols. Transactivation assays indicated that CsMYBF1 activated several promoters of phenylpropanoid pathway genes in tomato and citrus. Interestingly, CsMYBF1 could activate the CHS gene promoter in citrus, but not in tomato. Further examinations revealed that the MYBPLANT cis-elements were essential for CsMYBF1 in activating phenylpropanoid pathway genes. In summary, our data indicated that CsMYBF1 possessed the function in controlling the flavonol and hydroxycinnamic acid biosynthesis, and the regulatory differences in the target metabolite accumulation between two species may be due to the differential activation of CHS promoters by CsMYBF1. Therefore, CsMYBF1 constitutes an important gene source for the engineering of specific phenylpropanoid components.


Url:
DOI: 10.1038/srep25352
PubMed: 27162196
PubMed Central: 4861916


Affiliations:


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Le document en format XML

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<p>Flavonols and hydroxycinnamic acids are important phenylpropanoid metabolites in plants. In this study, we isolated and characterized a citrus R2R3-MYB transcription factor
<italic>CsMYBF1</italic>
, encoding a protein belonging to the flavonol-specific MYB subgroup. Ectopic expression of
<italic>CsMYBF1</italic>
in tomato led to an up-regulation of a series of genes involved in primary metabolism and the phenylpropanoid pathway, and induced a strong accumulation of hydroxycinnamic acid compounds but not the flavonols. The RNAi suppression of
<italic>CsMYBF1</italic>
in citrus callus caused a down-regulation of many phenylpropanoid pathway genes and reduced the contents of hydroxycinnamic acids and flavonols. Transactivation assays indicated that CsMYBF1 activated several promoters of phenylpropanoid pathway genes in tomato and citrus. Interestingly, CsMYBF1 could activate the
<italic>CHS</italic>
gene promoter in citrus, but not in tomato. Further examinations revealed that the MYBPLANT cis-elements were essential for CsMYBF1 in activating phenylpropanoid pathway genes. In summary, our data indicated that CsMYBF1 possessed the function in controlling the flavonol and hydroxycinnamic acid biosynthesis, and the regulatory differences in the target metabolite accumulation between two species may be due to the differential activation of
<italic>CHS</italic>
promoters by CsMYBF1. Therefore,
<italic>CsMYBF1</italic>
constitutes an important gene source for the engineering of specific phenylpropanoid components.</p>
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<li>États-Unis</li>
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