CsABF3-activated CsSUT1 pathway is implicated in pre-harvest water deficit inducing sucrose accumulation in citrus fruit

IF 5.7 1区 农林科学 Q1 HORTICULTURE Horticultural Plant Journal Pub Date : 2024-01-01 DOI:10.1016/j.hpj.2023.07.001
Xiaochuan Ma , Yuanyuan Chang , Feifei Li , Junfeng Yang , Li Ye , Tie Zhou , Yan Jin , Ling Sheng , Xiaopeng Lu
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Abstract

Pre-harvest water deficit (PHWD) plays an important role in sugar accumulation of citrus fruit. However, the mechanism is not known well. Here, it was confirmed that PHWD promoted sucrose accumulation of citrus fruit, but had limited effect on fructose, glucose and total acid. A sucrose transporter, CsSUT1, which localizes to the plasma membrane, was demonstrated to function in sucrose transport induced by PHWD. Compared to wild-type, CsSUT1 overexpression in citrus calli stimulated sucrose, fructose and glucose accumulation, while its silencing in juice sacs reduced sucrose accumulation. Increased sugar accumulation in transgenic lines enhanced plant drought tolerance, and resulted in decreased electrolyte leakage, malondialdehyde and hydrogen peroxide contents, as well as increased superoxide dismutase activity and proline contents. An abscisic acid (ABA)-responsive transcription factor, CsABF3, was found with a same expression pattern with CsSUT1 under PHWD. Yeast one-hybrid, electrophoretic mobility shift assay and dual-luciferase assays all revealed that CsABF3 directly bound with the CsSUT1 promoter by ABA responsive elements. When CsABF3 was overexpressed in citrus calli, the sucrose, fructose and glucose concentration increased correspondingly. Further, transgenic studies demonstrated that CsABF3 could affect sucrose accumulation by regulating CsSUT1. Overall, this study revealed a regulation of CsABF3 promoting CsSUT1 expression and sucrose accumulation in response to PHWD. Our results provide a detail insight into the quality formation of citrus fruit.

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CsABF3 激活的 CsSUT1 通路与柑橘果实采收前缺水诱导蔗糖积累有关
采前水分亏缺(PHWD)对柑橘果实的糖分积累起着重要作用。然而,其机理尚不清楚。本文证实,PHWD 促进了柑橘果实的蔗糖积累,但对果糖、葡萄糖和总酸的影响有限。研究证明,定位于质膜的蔗糖转运体 CsSUT1 在 PHWD 诱导的蔗糖转运过程中发挥作用。与野生型相比,CsSUT1 在柑橘胼胝体中的过表达刺激了蔗糖、果糖和葡萄糖的积累,而在果汁囊中的沉默则减少了蔗糖的积累。转基因品系中糖积累的增加增强了植物的耐旱性,并导致电解质渗漏、丙二醛和过氧化氢含量的降低,以及超氧化物歧化酶活性和脯氨酸含量的增加。在 PHWD 条件下,一个脱落酸(ABA)响应转录因子 CsABF3 与 CsSUT1 具有相同的表达模式。酵母单杂交、电泳迁移检测和双荧光素酶检测均发现,CsABF3通过ABA响应元件直接与CsSUT1启动子结合。当 CsABF3 在柑橘胼胝体中过表达时,蔗糖、果糖和葡萄糖浓度相应增加。此外,转基因研究表明,CsABF3 可通过调控 CsSUT1 影响蔗糖的积累。总之,本研究揭示了 CsABF3 促进 CsSUT1 表达和蔗糖积累对 PHWD 的调控作用。我们的研究结果为柑橘果实品质的形成提供了详细的见解。
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来源期刊
Horticultural Plant Journal
Horticultural Plant Journal Environmental Science-Ecology
CiteScore
9.60
自引率
14.00%
发文量
293
审稿时长
33 weeks
期刊介绍: Horticultural Plant Journal (HPJ) is an OPEN ACCESS international journal. HPJ publishes research related to all horticultural plants, including fruits, vegetables, ornamental plants, tea plants, and medicinal plants, etc. The journal covers all aspects of horticultural crop sciences, including germplasm resources, genetics and breeding, tillage and cultivation, physiology and biochemistry, ecology, genomics, biotechnology, plant protection, postharvest processing, etc. Article types include Original research papers, Reviews, and Short communications.
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