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在调控毛竹开花时间和非生物胁迫响应中的多功能作用()。

Multifaceted Role of in the Regulation of Flowering Time and Abiotic Stress Responses in Moso Bamboo ().

机构信息

International Center for Bamboo and Rattan, Key Laboratory of Bamboo and Rattan Science and Technology, State Forestry Administration, Beijing 100102, China.

出版信息

Int J Mol Sci. 2019 Jan 19;20(2):424. doi: 10.3390/ijms20020424.

Abstract

DNA binding with one finger (Dof) proteins, forming an important transcriptional factor family, are involved in gene transcriptional regulation, development, stress responses, and flowering responses in annual plants. However, knowledge of Dofs in perennial and erratically flowering moso bamboo is limited. In view of this, a Dof gene, PheDof12-1, was isolated from moso bamboo. PheDof12-1 is located in the nucleus and has the highest expression in palea and the lowest in bract. Moreover, expression is high in flowering leaves, then declines during flower development. The transcription level of is highly induced by cold, drought, salt, and gibberellin A3 (GA₃) stresses. The functional characteristics of are researched for the first time in Arabidopsis, and the results show that transgenic Arabidopsis overexpressing shows early flowering under long-day (LD) conditions but there is no effect on flowering time under short-day (SD) conditions; the transcription levels of , , and are upregulated; and and are downregulated. exhibits a strong diurnal rhythm, inhibited by light treatment and induced in dark. Yeast one-hybrid (Y1H) assay shows that can bind to the promoter sequence of . Taken together, these results indicate that might be involved in abiotic stress and flowering time, which makes it an important candidate gene for studying the molecular regulation mechanisms of moso bamboo flowering.

摘要

DNA 结合单指(Dof)蛋白是一个重要的转录因子家族,参与了一年生植物的基因转录调控、发育、应激响应和开花响应。然而,多年生和开花不规律的毛竹中的 Dof 知识有限。鉴于此,从毛竹中分离出一个 Dof 基因 PheDof12-1。PheDof12-1 位于细胞核内,在颖片中表达量最高,在苞片中表达量最低。此外,在开花叶中表达量较高,随后在花发育过程中下降。 转录水平受冷、干旱、盐和赤霉素 A3(GA₃)胁迫的高度诱导。首次在拟南芥中研究了 的功能特征,结果表明,过表达 的转基因拟南芥在长日照(LD)条件下表现出早花,但在短日照(SD)条件下对开花时间没有影响;上调了 、 和 的转录水平;下调了 和 。 表现出很强的昼夜节律,受光照处理抑制,黑暗诱导。酵母单杂交(Y1H)试验表明 可以与 的启动子序列结合。综上所述,这些结果表明 可能参与非生物胁迫和开花时间,使其成为研究毛竹开花分子调控机制的重要候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd68/6358834/74c222f5b9a2/ijms-20-00424-g001.jpg

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