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大麦ERF型转录因子HvRAF赋予拟南芥增强的病原体抗性和耐盐性。

The barley ERF-type transcription factor HvRAF confers enhanced pathogen resistance and salt tolerance in Arabidopsis.

作者信息

Jung Jinwook, Won So Youn, Suh Seok Cheol, Kim HyeRan, Wing Rod, Jeong Yeonhwa, Hwang Ingyu, Kim Minkyun

机构信息

School of Agricultural Biotechnology, Seoul National University, Seoul 151-921, Republic of Korea.

出版信息

Planta. 2007 Feb;225(3):575-88. doi: 10.1007/s00425-006-0373-2. Epub 2006 Aug 26.

Abstract

We isolated HvRAF (Hordeum vulgare root abundant factor), a cDNA encoding a novel ethylene response factor (ERF)-type transcription factor, from young seedlings of barley. In addition to the most highly conserved APETALA2/ERF DNA-binding domain, the encoded protein contained an N-terminal MCGGAIL signature sequence, a putative nuclear localization sequence, and a C-terminal acidic transcription activation domain containing a novel mammalian hemopexin domain signature-like sequence. Their homologous sequences were found in AAK92635 from rice and RAP2.2 from Arabidopsis; the ERF proteins most closely related to HvRAF, reflecting their functional importance. RNA blot analyses revealed that HvRAF transcripts were more abundant in roots than in leaves. HvRAF expression was induced in barley seedlings by various treatment regimes such as salicylic acid, ethephon, methyl jasmonate, cellulase, and methyl viologen. In a subcellular localization assay, the HvRAF-GFP fusion protein was targeted to the nucleus. The fusion protein of HvRAF with the GAL4 DNA-binding domain strongly activated transcription in yeast. Various deletion mutants of HvRAF indicated that the transactivating activity was localized to the acidic domain of the C-terminal region, and that the hemopexin domain signature-like sequence was important for the activity. Overexpression of the HvRAF gene in Arabidopsis plants induced the activation of various stress-responsive genes, including PDF1.2, JR3, PR1, PR5, KIN2, and GSH1. Furthermore, the transgenic Arabidopsis plants showed enhanced resistance to Ralstonia solanacearum strain GMI1000, as well as seed germination and root growth tolerance to high salinity. These results collectively indicate that HvRAF is a transcription factor that plays dual regulatory roles in response to biotic and abiotic stresses in plants.

摘要

我们从大麦幼苗中分离出HvRAF(大麦根富集因子),这是一种编码新型乙烯反应因子(ERF)型转录因子的cDNA。除了高度保守的APETALA2/ERF DNA结合域外,该编码蛋白还包含一个N端MCGGAIL特征序列、一个假定的核定位序列以及一个C端酸性转录激活域,该激活域含有一个类似新型哺乳动物血红蛋白结合域特征的序列。在水稻的AAK92635和拟南芥的RAP2.2中发现了它们的同源序列;与HvRAF关系最密切的ERF蛋白,反映了它们的功能重要性。RNA印迹分析表明,HvRAF转录本在根中比在叶中更丰富。通过水杨酸、乙烯利、茉莉酸甲酯、纤维素酶和甲基紫精等各种处理方式诱导大麦幼苗中HvRAF的表达。在亚细胞定位分析中,HvRAF-GFP融合蛋白定位于细胞核。HvRAF与GAL4 DNA结合域的融合蛋白在酵母中强烈激活转录。HvRAF的各种缺失突变体表明,反式激活活性定位于C端区域的酸性结构域,并且血红蛋白结合域特征样序列对该活性很重要。在拟南芥植物中过表达HvRAF基因可诱导包括PDF1.2、JR3、PR1、PR5、KIN2和GSH1在内的各种胁迫响应基因的激活。此外,转基因拟南芥植物对青枯雷尔氏菌菌株GMI1000的抗性增强,对高盐度的种子萌发和根生长耐受性也增强。这些结果共同表明,HvRAF是一种在植物对生物和非生物胁迫的响应中起双重调节作用的转录因子。

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