FvWRKY48 binds to the pectate lyase FvPLA promoter to control fruit softening in Fragaria vesca

Author:

Zhang Wei-Wei123,Zhao Shuai-Qi1,Gu Si1,Cao Xiao-Yan1,Zhang Yu1,Niu Jun-Fang1,Liu Lu1,Li An-Ran1,Jia Wen-Suo2ORCID,Qi Bao-Xiu14,Xing Yu1ORCID

Affiliation:

1. College of Plant Science and Technology, Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Key Laboratory for Agricultural Application and New Technique, Beijing University of Agriculture , China

2. College of Horticulture, China Agricultural University , Beijing, China

3. Beijing Bei Nong Enterprise Management Co. Ltd , Beijing, 102206, China

4. Pharmacy and Biomolecular Science, Liverpool John Moores University , Liverpool, UK

Abstract

Abstract The regulatory mechanisms that link WRKY gene expression to fruit ripening are largely unknown. Using transgenic approaches, we showed that a WRKY gene from wild strawberry (Fragaria vesca), FvWRKY48, may be involved in fruit softening and ripening. We showed that FvWRKY48 is localized to the nucleus and that degradation of the pectin cell wall polymer homogalacturonan, which is present in the middle lamella and tricellular junction zones of the fruit, was greater in FvWRKY48-OE (overexpressing) fruits than in empty vector (EV)-transformed fruits and less substantial in FvWRKY48-RNAi (RNA interference) fruits. Transcriptomic analysis indicated that the expression of pectate lyase A (FvPLA) was significantly downregulated in the FvWRKY48-RNAi receptacle. We determined that FvWRKY48 bound to the FvPLA promoter via a W-box element through yeast one-hybrid, electrophoretic mobility shift, and chromatin immunoprecipitation quantitative polymerase chain reaction experiments, and β-glucosidase activity assays suggested that this binding promotes pectate lyase activity. In addition, softening and pectin degradation were more intense in FvPLA-OE fruit than in EV fruit, and the middle lamella and tricellular junction zones were denser in FvPLA-RNAi fruit than in EV fruit. We speculated that FvWRKY48 maybe increase the expression of FvPLA, resulting in pectin degradation and fruit softening.

Funder

National Natural Science Foundation of China

Beijing advanced innovation center

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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