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一个新的开花调控机制:由桂花同工型竞争所引起。

A new mechanism of flowering regulation by the competition of isoforms in Osmanthus fragrans.

机构信息

College of Life Science, Henan Agricultural University, Zhengzhou 450046, China.

College of Life Science and Technology, Inner Mongolia Normal University, Huhehaote 010022, China.

出版信息

Ann Bot. 2023 Dec 5;132(6):1089-1102. doi: 10.1093/aob/mcad133.

Abstract

The regulation of flowering time is typically governed by transcription factors or epigenetic modifications. Transcript isoforms can play important roles in flowering regulation. Recently, transcript isoforms were discovered in the key genes, OfAP1 and OfTFL1, of the flowering regulatory network in Osmanthus fragrans. OfAP1-b generates a full-length isoform of OfAP1-b1 as well as an isoform of OfAP1-b2 that lacks the C-terminal domain. Although OfAP1-b2 does not possess an activation domain, it has a complete K domain that allows it to form heterodimers. OfAP1-b2 competes with OfAP1-b1 by binding with OfAGL24 to create non-functional and functional heterodimers. As a result, OfAP1-b1 promotes flowering while OfAP1-b2 delays flowering. OfTFL1 produces two isoforms located in different areas: OfTFL1-1 in the cytoplasm and OfTFL1-2 in the nucleus. When combined with OfFD, OfTFL1-1 does not enter the nucleus to repress AP1 expression, leading to early flowering. Conversely, when combined with OfFD, OfTFL1-2 enters the nucleus to repress AP1 expression, resulting in later flowering. Tissue-specific expression and functional conservation testing of OfAP1 and OfTFL1 support the new model's effectiveness in regulating flowering. Overall, this study provides new insights into regulating flowering time by the competition of isoforms.

摘要

开花时间的调控通常由转录因子或表观遗传修饰来控制。转录本异构体在开花调控中可以发挥重要作用。最近,在桂花开花调控网络的关键基因 OfAP1 和 OfTFL1 中发现了转录本异构体。OfAP1-b 生成全长的 OfAP1-b1 异构体以及缺乏 C 末端结构域的 OfAP1-b2 异构体。虽然 OfAP1-b2 没有激活结构域,但它具有完整的 K 结构域,使其能够形成异二聚体。OfAP1-b2 通过与 OfAGL24 结合与 OfAP1-b1 竞争,形成非功能性和功能性异二聚体。因此,OfAP1-b1 促进开花,而 OfAP1-b2 延迟开花。OfTFL1 产生两种位于不同区域的异构体:细胞质中的 OfTFL1-1 和核中的 OfTFL1-2。当与 OfFD 结合时,OfTFL1-1 不会进入细胞核抑制 AP1 的表达,导致早期开花。相反,当与 OfFD 结合时,OfTFL1-2 进入细胞核抑制 AP1 的表达,导致后期开花。OfAP1 和 OfTFL1 的组织特异性表达和功能保守性测试支持该新模型在调控开花时间方面的有效性。总的来说,这项研究为通过异构体的竞争来调节开花时间提供了新的见解。

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