4.7 Article

Type I H+-pyrophosphatase regulates the vacuolar storage of sucrose in citrus fruit

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 71, 期 19, 页码 5935-5947

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/eraa298

关键词

Citrus; pyrophosphate metabolism; sucrose storage; sucrose transporters; tonoplast; vacuolar pyrophosphatase proton pump

资金

  1. National Key Research & Development Program of China [2019YFD1000100]
  2. earmarked fund for China Agriculture Research System [CARS-26]

向作者/读者索取更多资源

The aim of this work was to evaluate the general role of the vacuolar pyrophosphatase proton pump (V-PPase) in sucrose accumulation in citrus species. First, three citrus V-PPase genes, designated CsVPP-1, CsVPP-2, and CsVPP-4, were identified in the citrus genome. CsVPP-1 and CsVPP-2 belonging to citrus type I V-PPase genes are targeted to the tonoplast, and CsVPP-4 belonging to citrus type II V-PPase genes is located in the Golgi bodies. Moreover, there was a significantly positive correlation between transcript levels of type I V-PPase genes and sucrose, rather than hexose, content in fruits of seven citrus cultivars. Drought and abscisic acid treatments significantly induced the CsVPP-1 and CsVPP-2 transcript levels, as well as the sucrose content. The overexpression of type I V-PPase genes significantly increased PPase activity, decreased pyrophosphate contents, and increased sucrose contents, whereas V-PPase inhibition produced the opposite effect in both citrus fruits and leaves. Furthermore, altering the expression levels of type I V-PPase genes significantly influenced the transcript levels of sucrose transporter genes. Taken together, this study demonstrated that CsVPP-1 and CsVPP-2 play key roles in sucrose storage in the vacuole by regulating pyrophosphate homeostasis, ultimately the sucrose biosynthesis and transcript levels of sucrose transport genes, providing a novel lead for engineering or breeding modified taste in citrus and other fruits.

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