4.7 Article

Mitogen-activated protein kinase 14-mediated phosphorylation of MaMYB4 negatively regulates banana fruit ripening

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HORTICULTURE RESEARCH
卷 10, 期 1, 页码 -

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OXFORD UNIV PRESS INC
DOI: 10.1093/hr/uhac243

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In this study, the researchers found that MAPK/MPK cascades play important roles in plant growth, development, immune response, and stress tolerance. They demonstrated that MaMPK14 and MaMYB4 negatively regulate banana fruit ripening. MaMYB4 inhibits the expression of genes associated with ethylene biosynthesis and fruit softening, while MaMPK14 phosphorylates MaMYB4 at Ser160 to enhance its transcriptional inhibition, binding strength, protein stability, and repression of fruit ripening.
Mitogen-activated protein kinase (MAPK/MPK) cascades play crucial parts in plant growth, development processes, immune ability, and stress responses; however, the regulatory mechanism by which MAPK affects fruit ripening remains largely unexplored. Here, we reported that MaMPK14 cooperated with MaMYB4 to mediate postharvest banana fruit ripening. Transient overexpression of individual MaMPK14 and MaMYB4 in banana fruit delayed fruit ripening, confirming the negative roles in the ripening. The ripening negative regulator MaMYB4 could repress the transcription of genes associated with ethylene biosynthesis and fruit softening, such as MaACS1, MaXTH5, MaPG3, and MaEXPA15. Furthermore, MaMPK14 phosphorylated MaMYB4 at Ser160 via a direct interaction. Mutation at Ser160 of MaMYB4 reduced its interaction with MaMPK14 but did not affect its subcellular localization. Importantly, phosphorylation of MaMYB4 by MaMPK14 enhanced the MaMYB4-mediated transcriptional inhibition, binding strength, protein stability, and the repression of fruit ripening. Taken together, our results delineated the regulation pathway of MAPK module during banana fruit ripening, which involved the phosphorylation modification of MaMYB4 mediated by MaMPK14.

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