Ethylene enhances MdMAPK3-mediated phosphorylation of MdNAC72 to promote apple fruit softening

Author:

Wei Yun1234ORCID,Liu Zhi5ORCID,Lv Tianxing5ORCID,Xu Yaxiu1234ORCID,Wei Yajing1234ORCID,Liu Weiting1234ORCID,Liu Li1234ORCID,Wang Aide1234ORCID,Li Tong1234ORCID

Affiliation:

1. Key Laboratory of Fruit Postharvest Biology (Liaoning Province), Shenyang Agricultural University , Shenyang 110866 , China

2. Key Laboratory of Protected Horticulture (Ministry of Education), Shenyang Agricultural University , Shenyang 110866 , China

3. National & Local Joint Engineering Research Center of Northern Horticultural Facilities Design & Application Technology (Liaoning), Shenyang Agricultural University , Shenyang 110866 , China

4. College of Horticulture, Shenyang Agricultural University , Shenyang 110866 , China

5. Liaoning Institute of Pomology , Xiongyue 115009 , China

Abstract

Abstract The phytohormone ethylene plays an important role in promoting the softening of climacteric fruits, such as apples (Malus domestica); however, important aspects of the underlying regulatory mechanisms are not well understood. In this study, we identified apple MITOGEN-ACTIVATED PROTEIN KINASE 3 (MdMAPK3) as an important positive regulator of ethylene-induced apple fruit softening during storage. Specifically, we show that MdMAPK3 interacts with and phosphorylates the transcription factor NAM-ATAF1/2-CUC2 72 (MdNAC72), which functions as a transcriptional repressor of the cell wall degradation-related gene POLYGALACTURONASE1 (MdPG1). The increase in MdMAPK3 kinase activity was induced by ethylene, which promoted the phosphorylation of MdNAC72 by MdMAPK3. Additionally, MdPUB24 functions as an E3 ubiquitin ligase to ubiquitinate MdNAC72, resulting in its degradation via the 26S proteasome pathway, which was enhanced by ethylene-induced phosphorylation of MdNAC72 by MdMAPK3. The degradation of MdNAC72 increased the expression of MdPG1, which in turn promoted apple fruit softening. Notably, using variants of MdNAC72 that were mutated at specific phosphorylation sites, we observed that the phosphorylation state of MdNAC72 affected apple fruit softening during storage. This study thus reveals that the ethylene–MdMAPK3–MdNAC72–MdPUB24 module is involved in ethylene-induced apple fruit softening, providing insights into climacteric fruit softening.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of Liaoning Province

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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