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Utilization of transcription factors for controlling floral morphogenesis in horticultural plants

机译:利用转录因子控制园艺植物花卉形态发生

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摘要

Transcription factors play important roles not only in the development of floral organs but also in the formation of floral characteristics in various plant species. Therefore, transcription factors are reasonable targets for modifying these floral traits and generating new flower cultivars. However, it has been difficult to control the functions of transcription factors because most plant genes, including those encoding transcription factors, exhibit redundancy. In particular, it has been difficult to understand the functions of these redundant genes by genetic analysis. Thus, a breakthrough silencing method called chimeric repressor gene silencing technology (CRES-T) was developed specifically for plant transcription factors. This method transforms transcriptional activators into dominant repressors, and the artificial chimeric repressors suppress the function of transcription factors regardless of their redundancy. Among these chimeric repressors, some were found to be inappropriate for expression throughout the plant body because they resulted in deformities. For these chimeric repressors, utilization of floral organ-specific promoters overcomes this problem by avoiding expression throughout the plant body. In contrast, attachment of viral activation domain VP16 to transcriptional repressors effectively alters into transcriptional activators. This review presents the importance of transcription factors for characterizing floral traits, describes techniques for controlling the functions of transcription factors.
机译:转录因子不仅在花器官的发育中而且在各种植物物种的花特征的形成中都起重要作用。因此,转录因子是修饰这些花性状和产生新花品种的合理靶标。然而,由于大多数植物基因,包括编码转录因子的那些植物,都表现出冗余性,因此很难控制转录因子的功能。特别地,通过遗传分析难以理解这些冗余基因的功能。因此,专门针对植物转录因子开发了一种突破性的沉默方法,称为嵌合阻遏基因沉默技术(CRES-T)。此方法将转录激活因子转化为显性阻遏物,而人工嵌合阻遏物则抑制转录因子的功能,而不管其是否冗余。在这些嵌合阻遏物中,发现某些不适合在整个植物体内表达,因为它们导致畸形。对于这些嵌合阻抑物,通过避免在整个植物体内表达,利用花器官特异性启动子克服了这个问题。相反,病毒激活结构域VP16与转录阻遏物的连接有效地转变为转录激活物。这篇综述提出了转录因子表征花卉性状的重要性,描述了控制转录因子功能的技术。

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