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一个bZIP转录因子(CiFD)通过柑橘中的可变剪接调控干旱和低温诱导的开花。

A bZIP transcription factor (CiFD) regulates drought- and low-temperature-induced flowering by alternative splicing in citrus.

作者信息

Ye Li-Xia, Wu Yan-Mei, Zhang Jin-Xia, Zhang Jin-Xin, Zhou Huan, Zeng Ren-Fang, Zheng Wei-Xuan, Qiu Mei-Qi, Zhou Jing-Jing, Xie Zong-Zhou, Hu Chun-Gen, Zhang Jin-Zhi

机构信息

Key Laboratory of Horticultural Plant Biology (Ministry of Education), College of Horticulture and Forestry Science, Huazhong Agricultural University, Wuhan, 430070, China.

Institute of Fruit and Tea, Hubei Academy of Agricultural Sciences, Wuhan, 430064, China.

出版信息

J Integr Plant Biol. 2023 Mar;65(3):674-691. doi: 10.1111/jipb.13390. Epub 2022 Dec 31.

Abstract

Drought and low temperature are two key environmental factors that induce adult citrus flowering. However, the underlying regulation mechanism is poorly understood. The bZIP transcription factor FD is a key component of the florigen activation complex (FAC) which is composed of FLOWERING LOCUS T (FT), FD, and 14-3-3 proteins. In this study, isolation and characterization of CiFD in citrus found that there was alternative splicing (AS) of CiFD, forming two different proteins (CiFDα and CiFDβ). Further investigation found that their expression patterns were similar in different tissues of citrus, but the subcellular localization and transcriptional activity were different. Overexpression of the CiFD DNA sequence (CiFD-DNA), CiFDα, or CiFDβ in tobacco and citrus showed early flowering, and CiFD-DNA transgenic plants were the earliest, followed by CiFDβ and CiFDα. Interestingly, CiFDα and CiFDβ were induced by low temperature and drought, respectively. Further analysis showed that CiFDα can form a FAC complex with CiFT, Ci14-3-3, and then bind to the citrus APETALA1 (CiAP1) promoter and promote its expression. However, CiFDβ can directly bind to the CiAP1 promoter independently of CiFT and Ci14-3-3. These results showed that CiFDβ can form a more direct and simplified pathway that is independent of the FAC complex to regulate drought-induced flowering through AS. In addition, a bHLH transcription factor (CibHLH96) binds to CiFD promoter and promotes the expression of CiFD under drought condition. Transgenic analysis found that CibHLH96 can promote flowering in transgenic tobacco. These results suggest that CiFD is involved in drought- and low-temperature-induced citrus flowering through different regulatory patterns.

摘要

干旱和低温是诱导成年柑橘开花的两个关键环境因素。然而,其潜在的调控机制尚不清楚。bZIP转录因子FD是成花素激活复合体(FAC)的关键组成部分,该复合体由成花素(FT)、FD和14-3-3蛋白组成。在本研究中,对柑橘中CiFD的分离和表征发现,CiFD存在可变剪接(AS),形成两种不同的蛋白质(CiFDα和CiFDβ)。进一步研究发现,它们在柑橘不同组织中的表达模式相似,但亚细胞定位和转录活性不同。在烟草和柑橘中过表达CiFD DNA序列(CiFD-DNA)、CiFDα或CiFDβ均表现出早花现象,其中CiFD-DNA转基因植物最早开花,其次是CiFDβ和CiFDα。有趣的是,CiFDα和CiFDβ分别受低温和干旱诱导。进一步分析表明,CiFDα可与CiFT、Ci14-3-3形成FAC复合体,然后与柑橘APETALA1(CiAP1)启动子结合并促进其表达。然而,CiFDβ可独立于CiFT和Ci14-3-3直接与CiAP1启动子结合。这些结果表明,CiFDβ可通过可变剪接形成一条更直接、更简化的独立于FAC复合体的途径来调控干旱诱导的开花。此外,一个bHLH转录因子(CibHLH96)在干旱条件下与CiFD启动子结合并促进CiFD的表达。转基因分析发现,CibHLH96可促进转基因烟草开花。这些结果表明,CiFD通过不同的调控模式参与干旱和低温诱导的柑橘开花。

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