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[芥菜中HDA9的突变体构建及其与开花整合因子SOC1和AGL24启动子的相互作用]

[Mutant construction of HDA9 and its interactions with promoters of flowering integrator SOC1 and AGL24 in Brassica juncea].

作者信息

Zhang Junli, Jiang Wei, Li Shengnan, Zhou Wenwen, Wang Zhimin, Wei Dayong, Wang Hebing, Tang Qinglin

机构信息

College of Horticulture and Landscape Architecture, Southwest University, Chongqing 400715, China.

Chongqing Academy of Agricultural Sciences, Chongqing 401329, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2020 Jun 25;36(6):1170-1180. doi: 10.13345/j.cjb.190417.

Abstract

HDA9, a member of the deacetylase family, plays a vital role in regulating plant flowering time through flowering integrator SOC1 and AGL24. However, it remains elusive how HDA9 interacts with SOC1 and AGL24 in flowering time control. Here, HDA9 was cloned in Brassica juncea and then its three active sites were separately replaced with Ala via overlap extension PCR. Thus, mutants of HDA9(D172A), HDA9(H174A) and HDA9(D261A) were constructed and fused into the pGADT7 vector. The yeast one-hybrid assays indicated that HDA9 mutants remained the interactions with the promoters of SOC1 and AGL24. Furthermore, the aforementioned results were confirmed in the dual luciferase assays. Interestingly, the DNA-protein interactions were weakened significantly due to the mutation in the three active sites of HDA9. It suggested that flowering signal integrator SOC1 and AGL24 were regulated by the key amino acid residues of 172th, 174th and 261th in HDA9. Our results provide valuable information for the in-depth study of the biological function and molecular regulation of HDA9 in Brassica juncea flowering time control.

摘要

组蛋白去乙酰化酶9(HDA9)是去乙酰化酶家族的一员,通过开花整合因子SOC1和AGL24在调控植物开花时间方面发挥着至关重要的作用。然而,HDA9在开花时间控制中如何与SOC1和AGL24相互作用仍不清楚。在此,从芥菜中克隆了HDA9,然后通过重叠延伸PCR将其三个活性位点分别替换为丙氨酸。由此构建了HDA9(D172A)、HDA9(H174A)和HDA9(D261A)突变体,并将其融合到pGADT7载体中。酵母单杂交试验表明,HDA9突变体与SOC1和AGL24的启动子仍存在相互作用。此外,双荧光素酶试验证实了上述结果。有趣的是,由于HDA9三个活性位点的突变,DNA-蛋白质相互作用显著减弱。这表明开花信号整合因子SOC1和AGL24受HDA9中第172、174和261位关键氨基酸残基的调控。我们的结果为深入研究HDA9在芥菜开花时间控制中的生物学功能和分子调控提供了有价值的信息。

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