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The Citrus transcription factor, CitERF13, regulates citric acid accumulation via a protein-protein interaction with the vacuolar proton pump, CitVHA-c4

Identifieur interne : 000036 ( Main/Exploration ); précédent : 000035; suivant : 000037

The Citrus transcription factor, CitERF13, regulates citric acid accumulation via a protein-protein interaction with the vacuolar proton pump, CitVHA-c4

Auteurs : Shao-Jia Li ; Xue-Ren Yin ; Xiu-Lan Xie ; Andrew C. Allan [Nouvelle-Zélande] ; Hang Ge ; Shu-Ling Shen ; Kun-Song Chen

Source :

RBID : PMC:4738278

Abstract

Organic acids are essential to fruit flavor. The vacuolar H+ transporting adenosine triphosphatase (V-ATPase) plays an important role in organic acid transport and accumulation. However, less is known of V-ATPase interacting proteins and their relationship with organic acid accumulation. The relationship between V-ATPase and citric acid was investigated, using the citrus tangerine varieties ‘Ordinary Ponkan (OPK)’ and an early maturing mutant ‘Zaoshu Ponkan (ZPK)’. Five V-ATPase genes (CitVHA) were predicted as important to citric acid accumulation. Among the genes, CitVHA-c4 was observed, using a yeast two-hybrid screen, to interact at the protein level with an ethylene response factor, CitERF13. This was verified using bimolecular fluorescence complementation assays. A similar interaction was also observed between Arabidopsis AtERF017 (a CitERF13 homolog) and AtVHA-c4 (a CitVHA-c4 homolog). A synergistic effect on citric acid levels was observed between V-ATPase proteins and interacting ERFs when analyzed using transient over-expression in tobacco and Arabidopsis mutants. Furthermore, the transcript abundance of CitERF13 was concomitant with CitVHA-c4. CitERF13 or AtERF017 over-expression leads to significant citric acid accumulation. This accumulation was abolished in an AtVHA-c4 mutant background. ERF-VHA interactions appear to be involved in citric acid accumulation, which was observed in both citrus and Arabidopsis.


Url:
DOI: 10.1038/srep20151
PubMed: 26837571
PubMed Central: 4738278


Affiliations:


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Le document en format XML

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<title xml:lang="en" level="a" type="main">The Citrus transcription factor, CitERF13, regulates citric acid accumulation via a protein-protein interaction with the vacuolar proton pump, CitVHA-c4</title>
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<name sortKey="Li, Shao Jia" sort="Li, Shao Jia" uniqKey="Li S" first="Shao-Jia" last="Li">Shao-Jia Li</name>
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<name sortKey="Allan, Andrew C" sort="Allan, Andrew C" uniqKey="Allan A" first="Andrew C." last="Allan">Andrew C. Allan</name>
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<institution>New Zealand Institute for Plant & Food Research Limited</institution>
, Private Bag 92169, Auckland,
<country>New Zealand</country>
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<country xml:lang="fr">Nouvelle-Zélande</country>
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<name sortKey="Ge, Hang" sort="Ge, Hang" uniqKey="Ge H" first="Hang" last="Ge">Hang Ge</name>
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<institution>College of Agriculture & Biotechnology, Zhejiang University, Zijingang Campus</institution>
, Hangzhou 310058,
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<institution>College of Agriculture & Biotechnology, Zhejiang University, Zijingang Campus</institution>
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<country>P.R. China</country>
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<wicri:noCountry code="nlm country">P.R. China</wicri:noCountry>
</affiliation>
<affiliation>
<nlm:aff id="a3">
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<div type="abstract" xml:lang="en">
<p>Organic acids are essential to fruit flavor. The vacuolar H
<sup>+</sup>
transporting adenosine triphosphatase (V-ATPase) plays an important role in organic acid transport and accumulation. However, less is known of V-ATPase interacting proteins and their relationship with organic acid accumulation. The relationship between V-ATPase and citric acid was investigated, using the citrus tangerine varieties ‘Ordinary Ponkan (OPK)’ and an early maturing mutant ‘Zaoshu Ponkan (ZPK)’. Five V-ATPase genes (
<italic>CitVHA</italic>
) were predicted as important to citric acid accumulation. Among the genes,
<italic>CitVHA-c4</italic>
was observed, using a yeast two-hybrid screen, to interact at the protein level with an ethylene response factor, CitERF13. This was verified using bimolecular fluorescence complementation assays. A similar interaction was also observed between
<italic>Arabidopsis</italic>
AtERF017 (a CitERF13 homolog) and AtVHA-c4 (a CitVHA-c4 homolog). A synergistic effect on citric acid levels was observed between V-ATPase proteins and interacting ERFs when analyzed using transient over-expression in tobacco and
<italic>Arabidopsis</italic>
mutants. Furthermore, the transcript abundance of
<italic>CitERF13</italic>
was concomitant with
<italic>CitVHA-c4. CitERF13</italic>
or
<italic>AtERF017</italic>
over-expression leads to significant citric acid accumulation. This accumulation was abolished in an
<italic>AtVHA-c4</italic>
mutant background. ERF-VHA interactions appear to be involved in citric acid accumulation, which was observed in both citrus and
<italic>Arabidopsis</italic>
.</p>
</div>
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<name sortKey="Li, Shao Jia" sort="Li, Shao Jia" uniqKey="Li S" first="Shao-Jia" last="Li">Shao-Jia Li</name>
<name sortKey="Shen, Shu Ling" sort="Shen, Shu Ling" uniqKey="Shen S" first="Shu-Ling" last="Shen">Shu-Ling Shen</name>
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<name sortKey="Yin, Xue Ren" sort="Yin, Xue Ren" uniqKey="Yin X" first="Xue-Ren" last="Yin">Xue-Ren Yin</name>
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