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MaNAC19-MaXB3 调控模块介导香蕉果实成熟过程中的蔗糖合成。

MaNAC19-MaXB3 regulatory module mediates sucrose synthesis in banana fruit during ripening.

机构信息

Guangdong Provincial Key Laboratory of Postharvest Science of Fruits and Vegetables/Engineering Research Center of Southern Horticultural Products Preservation, Ministry of Education, College of Horticulture, South China Agricultural University, Guangzhou 510642, China.

Guangdong Provincial Key Laboratory of Postharvest Science of Fruits and Vegetables/Engineering Research Center of Southern Horticultural Products Preservation, Ministry of Education, College of Horticulture, South China Agricultural University, Guangzhou 510642, China.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 6):127144. doi: 10.1016/j.ijbiomac.2023.127144. Epub 2023 Oct 4.

Abstract

Sucrose, a predominant sweetener in banana (Musa acuminata) fruit, determines sweetness and consumer preferences. Although sucrose phosphate synthase (SPS) is known to catalyze starch conversion into sucrose in banana fruit during the ripening process, the SPS regulatory mechanism during ripening still demands investigation. Hence, this study discovered that the MaSPS1 expression was promoted during ethylene-mediated ripening in banana fruit. MaNAC19, recognized as the MaSPS1 putative binding protein using yeast one-hybrid screening, directly binds to the MaSPS1 promoter, thereby transcriptionally activating its expression, which was verified by transient overexpression experiments, where the sucrose synthesis was accelerated through MaNAC19-induced transcription of MaSPS1. Interestingly, MaXB3, an ethylene-inhibited E3 ligase, was found to ubiquitinate MaNAC19, making it prone to proteasomal degradation, inhibiting transactivation of MaNAC19 to MaSPS1, thereby attenuating MaNAC19-promoted sucrose accumulation. This study's findings collectively illustrated the mechanistic basis of a MaXB3-MaNAC19-MaSPS1 regulatory module controlling sucrose synthesis during banana fruit ripening. These outcomes have broadened our understanding of the regulation mechanisms that contributed to sucrose metabolism occurring in transcriptional and post-transcriptional stages, which might help develop molecular approaches for controlling ripening and improving fruit quality.

摘要

蔗糖是香蕉(Musa acuminata)果实中主要的甜味剂,决定了果实的甜度和消费者的偏好。尽管蔗糖磷酸合酶(SPS)已知在香蕉果实成熟过程中催化淀粉转化为蔗糖,但 SPS 在成熟过程中的调控机制仍需要研究。因此,本研究发现 MaSPS1 的表达在乙烯介导的香蕉果实成熟过程中受到促进。MaNAC19 是通过酵母单杂交筛选鉴定的 MaSPS1 假定结合蛋白,它直接与 MaSPS1 启动子结合,从而转录激活其表达,这通过瞬时过表达实验得到了验证,其中 MaNAC19 通过诱导 MaSPS1 的转录加速了蔗糖的合成。有趣的是,发现乙烯抑制的 E3 连接酶 MaXB3 泛素化 MaNAC19,使其易于被蛋白酶体降解,抑制 MaNAC19 对 MaSPS1 的反式激活,从而减弱 MaNAC19 促进的蔗糖积累。本研究的结果共同说明了 MaXB3-MaNAC19-MaSPS1 调控模块控制香蕉果实成熟过程中蔗糖合成的机制基础。这些结果拓宽了我们对转录和转录后阶段参与蔗糖代谢的调控机制的理解,这可能有助于开发控制成熟和改善果实品质的分子方法。

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