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CBL1/CIPK23使液泡膜糖转运蛋白TST2磷酸化,以增强甜橙(Citrus sinensis)中的糖分积累。

CBL1/CIPK23 phosphorylates tonoplast sugar transporter TST2 to enhance sugar accumulation in sweet orange (Citrus sinensis).

作者信息

Li Mengdi, Mao Zuolin, Zhao Zeqi, Gao Siyang, Luo Yanrou, Liu Ziyan, Sheng Xiawei, Zhai Xiawan, Liu Ji-Hong, Li Chunlong

机构信息

National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China.

Hubei Hongshan Laboratory, Wuhan, 430070, China.

出版信息

J Integr Plant Biol. 2025 Feb;67(2):327-344. doi: 10.1111/jipb.13812. Epub 2024 Nov 29.

Abstract

Fruit taste quality is greatly influenced by the content of soluble sugars, which are predominantly stored in the vacuolar lumen. However, the accumulation and regulation mechanisms of sugars in most fruits remain unclear. Recently, we established the citrus fruit vacuole proteome and discovered the major transporters localized in the vacuole membrane. Here, we demonstrated that the expression of tonoplast sugar transporter 2 (CsTST2) is closely associated with sugar accumulation during sweet orange (Citrus sinensis) ripening. It was further demonstrated that CsTST2 had the function of transporting hexose and sucrose into the vacuole. Overexpression of CsTST2 resulted in an elevation of sugar content in citrus juice sac, calli, and tomato fruit, whereas the downregulation of its expression led to the reduction in sugar levels. CsTST2 was identified as interacting with CsCIPK23, which binds to the upstream calcium signal sensor protein CsCBL1. The phosphorylation of the three serine residues (Ser277, Ser337, and Ser354) in the loop region of CsTST2 by CsCIPK23 is crucial for maintaining the sugar transport activity of CsTST2. Additionally, the expression of CsCIPK23 is positively correlated with sugar content. Genetic evidence further confirmed that calcium and CsCIPK23-mediated increase in sugar accumulation depends on CsTST2 and its phosphorylation level. These findings not only unveil the functional mechanism of CsTST2 in sugar accumulation, but also explore a vital calcium signal regulation module of CsCBL1/CIPK23 for citrus sweetness quality.

摘要

果实的风味品质在很大程度上受可溶性糖含量的影响,而可溶性糖主要储存在液泡腔内。然而,大多数果实中糖的积累和调控机制仍不清楚。最近,我们建立了柑橘果实液泡蛋白质组,并发现了位于液泡膜上的主要转运蛋白。在此,我们证明了液泡膜糖转运蛋白2(CsTST2)的表达与甜橙(Citrus sinensis)成熟过程中的糖积累密切相关。进一步证明,CsTST2具有将己糖和蔗糖转运到液泡中的功能。CsTST2的过表达导致柑橘汁囊、愈伤组织和番茄果实中糖含量升高,而其表达下调则导致糖水平降低。CsTST2被鉴定为与CsCIPK23相互作用,CsCIPK23与上游钙信号传感器蛋白CsCBL1结合。CsCIPK23对CsTST2环区三个丝氨酸残基(Ser277、Ser337和Ser354)的磷酸化对于维持CsTST2的糖转运活性至关重要。此外,CsCIPK23的表达与糖含量呈正相关。遗传学证据进一步证实,钙和CsCIPK23介导的糖积累增加依赖于CsTST2及其磷酸化水平。这些发现不仅揭示了CsTST2在糖积累中的功能机制,还探索了CsCBL1/CIPK23对柑橘甜味品质至关重要的钙信号调节模块。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1805/11814916/c05802ea68c8/JIPB-67-327-g006.jpg

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