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光信号组分 SPA1 和 MYC2 对拟南芥含 Z- 和 G-框启动子的调控。

The regulation of the Z- and G-box containing promoters by light signaling components, SPA1 and MYC2, in Arabidopsis.

机构信息

National Institute of Technology, Durgapur, India.

出版信息

PLoS One. 2013 Apr 30;8(4):e62194. doi: 10.1371/journal.pone.0062194. Print 2013.

Abstract

Although many transcription factors and regulatory proteins have been identified and functionally characterized in light signaling pathways, photoperception to transcription remains largely fragmented. The Z-box is one of the LREs (Light responsive elements) that plays important role in the regulation of transcription during light-controlled Arabidopsis seedling development. The involvement of photoreceptors in the modulation of the activity of the Z-box containing promoters has been demonstrated. However, the role of downstream signaling components such as SPA1 and MYC2/ZBF1, which are functionally interrelated, remains unknown. In this study, we have investigated the regulation of the Z-box containing synthetic and native promoters by SPA1 and MYC2 by using stable transgenic lines. Our studies suggest that SPA1 negatively regulates the expression of CAB1 native promoter. MYC2 negatively regulates the activity of Z- and/or G-box containing synthetic as well as native promoters irrespective of light quality. Moreover, MYC2 negatively regulates the expression of Z/G-NOS101-GUS even in the darkness. Furthermore, analyses of tissue specific expression in adult plants suggest that MYC2 strongly regulates the activity of Z- and G-box containing promoters specifically in leaves and stems. In roots, whereas MYC2 positively regulates the activity of the Z-box containing synthetic promoter, it does not seem to control the activity of the G-box containing promoters. Taken together, these results provide insights into SPA1- and MYC2-mediated transcriptional regulation of the Z- and G-box containing promoters in light signaling pathways.

摘要

尽管已经鉴定出许多转录因子和调节蛋白,并对其在光信号通路中的功能进行了描述,但光信号到转录的感知仍然很大程度上是碎片化的。Z 盒是 LRE(光响应元件)之一,在光控拟南芥幼苗发育过程中对转录的调控中起着重要作用。已经证明了光受体在含有 Z 盒的启动子的活性的调节中的参与。然而,SPA1 和 MYC2/ZBF1 等功能上相互关联的下游信号转导成分的作用仍然未知。在这项研究中,我们使用稳定的转基因系研究了 SPA1 和 MYC2 对含 Z 盒的合成和天然启动子的调节。我们的研究表明,SPA1 负调控 CAB1 天然启动子的表达。MYC2 负调控 Z-和/或 G-盒合成以及天然启动子的活性,而与光质无关。此外,即使在黑暗中,MYC2 也负调控 Z/G-NOS101-GUS 的表达。此外,对成年植物组织特异性表达的分析表明,MYC2 强烈调节含 Z 和 G-盒启动子的活性,特别是在叶片和茎中。在根中,尽管 MYC2 正调控含 Z 盒的合成启动子的活性,但它似乎不控制含 G 盒的启动子的活性。总之,这些结果提供了 SPA1 和 MYC2 介导的光信号通路中含 Z 和 G 盒启动子转录调节的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3971/3639979/eab9f0d1a628/pone.0062194.g001.jpg

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