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拟南芥 HUA 增强子 4 通过上调 MADS 盒阻遏基因 FLC 和 MAF4 来延迟开花。

Arabidopsis HUA ENHANCER 4 delays flowering by upregulating the MADS-box repressor genes FLC and MAF4.

机构信息

Area de Genética, Universidad Miguel Hernández, Campus de Sant Joan, Alicante, 03550, Spain.

R+D+i Department, Atlántica Agrícola S. A., Corredera 33, Villena, 03400, Spain.

出版信息

Sci Rep. 2019 Feb 6;9(1):1478. doi: 10.1038/s41598-018-38327-3.

Abstract

The adaptive success of flowering plants is largely due to their ability to align floral production with optimal conditions. In Arabidopsis thaliana, MADS-box repressors of the FLC/MAF-clade prevent flowering under non-inductive conditions, although the role of some members is not yet clearly defined. Using a genetic strategy, we identified the KH-domain gene HEN4, previously shown to be involved in MADS-box floral homeotic gene regulation, as a modulator of flowering time. Loss-of-function hen4 mutants are early-flowering, and their response to low growth-temperature (16 °C) and day-length is altered. Interestingly, hen4 plants showed dramatic reduction of FLC and MAF4 transcripts, whereas other flowering repressors of the same clade (FLM, MAF2, MAF3, MAF5) remained unaltered. We also determined that hen4, partly due to loss of FLC, accelerates the vegetative phase-change. This report provides insight into flowering time control and highlights the potential of versatile regulators such as HEN4 to coordinate the juvenile-to-adult transition and floral timing.

摘要

开花植物的适应性成功在很大程度上归因于它们将花卉生产与最佳条件相协调的能力。在拟南芥中,FLC/MAF 簇的 MADS 框抑制剂在非诱导条件下阻止开花,尽管一些成员的作用尚未明确界定。使用遗传策略,我们确定了 KH 结构域基因 HEN4,以前被证明参与 MADS 框花同源基因调控,是开花时间的调节剂。功能丧失的 hen4 突变体是早开花的,它们对低温(16°C)和长日的反应发生改变。有趣的是,hen4 植物表现出 FLC 和 MAF4 转录本的显著减少,而同一簇的其他开花抑制剂(FLM、MAF2、MAF3、MAF5)则没有变化。我们还确定,部分由于 FLC 的丧失,hen4 加速了营养期向生殖期的转变。本报告提供了对开花时间控制的深入了解,并强调了像 HEN4 这样的多功能调节剂协调幼年期到成年期过渡和开花时间的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17f1/6365585/e426f7c1af67/41598_2018_38327_Fig1_HTML.jpg

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