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籼稻激活标签鉴定与耐盐性相关的一个新的转录因子亚基 NF-YC13。

Activation-tagging in indica rice identifies a novel transcription factor subunit, NF-YC13 associated with salt tolerance.

机构信息

Department of Plant Sciences, University of Hyderabad, Hyderabad, 5000046, India.

Indian Institute of Rice Research, Rajendranagar, Hyderabad, 500030, India.

出版信息

Sci Rep. 2017 Aug 24;7(1):9341. doi: 10.1038/s41598-017-10022-9.

Abstract

Nuclear factor Y (NF-Y) is a heterotrimeric transcription factor with three distinct NF-YA, NF-YB and NF-YC subunits. It plays important roles in plant growth, development and stress responses. We have reported earlier on development of gain-of-function mutants in an indica rice cultivar, BPT-5204. Now, we screened 927 seeds from 70 Ac/Ds plants for salinity tolerance and identified one activation-tagged salt tolerant DS plant (DS-16, T generation) that showed enhanced expression of a novel 'histone-like transcription factor' belonging to rice NF-Y subfamily C and was named as OsNF-YC13. Localization studies using GFP-fusion showed that the protein is localized to nucleus and cytoplasm. Real time expression analysis confirmed upregulation of transcript levels of OsNF-YC13 during salt treatment in a tissue specific manner. Biochemical and physiological characterization of the DS-16 revealed enhanced K/Na ratio, proline content, chlorophyll content, enzymes with antioxidant activity etc. DS-16 also showed transcriptional up-regulation of genes that are involved in salinity tolerance. In-silico analysis of OsNF-YC13 promoter region evidenced the presence of various key stress-responsive cis-regulatory elements. OsNF-YC13 subunit alone does not appear to have the capacity for direct transcription activation, but appears to interact with the B- subunits in the process of transactivation.

摘要

核因子 Y(NF-Y)是一种三聚体转录因子,由三个不同的 NF-YA、NF-YB 和 NF-YC 亚基组成。它在植物生长、发育和应激反应中发挥重要作用。我们之前曾报道过在籼稻品种 BPT-5204 中开发功能获得性突变体的情况。现在,我们从 70 个 Ac/Ds 植株的 927 颗种子中筛选出耐盐性,并鉴定出一个激活标签的耐盐性 DS 植株(DS-16,T 代),该植株表现出新型“组蛋白样转录因子”的表达增强,属于水稻 NF-Y 亚家族 C,被命名为 OsNF-YC13。使用 GFP 融合进行的定位研究表明,该蛋白定位于细胞核和细胞质。实时表达分析证实,OsNF-YC13 的转录水平在盐处理时以组织特异性方式上调。DS-16 的生化和生理特性分析显示,K/Na 比、脯氨酸含量、叶绿素含量、具有抗氧化活性的酶等增强。DS-16 还表现出参与耐盐性的基因的转录上调。OsNF-YC13 启动子区域的计算机分析表明存在各种关键的应激反应顺式调控元件。单独的 OsNF-YC13 亚基似乎没有直接转录激活的能力,但似乎在转录激活过程中与 B 亚基相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d79/5570948/c23a9cc9a66c/41598_2017_10022_Fig1_HTML.jpg

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