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甘薯NAC转录因子IbNAC1通过结合抗机械损伤和草食动物攻击的SWRE基序上调sporamin基因的表达。

Sweet potato NAC transcription factor, IbNAC1, upregulates sporamin gene expression by binding the SWRE motif against mechanical wounding and herbivore attack.

作者信息

Chen Shi-Peng, Lin I Winnie, Chen Xuanyang, Huang Yin-Hao, Chang Shiao-Chi, Lo Hui-Shan, Lu Hseuh-Han, Yeh Kai-Wun

机构信息

Institute of Plant Biology, National Taiwan University, Taipei, 106, Taiwan.

College of Crop Science, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.

出版信息

Plant J. 2016 May;86(3):234-48. doi: 10.1111/tpj.13171. Epub 2016 Apr 18.

Abstract

Sporamin is a tuberous storage protein with trypsin inhibitory activity in sweet potato (Ipomoea batatas Lam.), which accounts for 85% of the soluble protein in tubers. It is constitutively expressed in tuberous roots but is expressed in leaves only after wounding. Thus far, its wound-inducible signal transduction mechanisms remain unclear. In the present work, a 53-bp DNA region, sporamin wound-response cis-element (SWRE), was identified in the sporamin promoter and was determined to be responsible for the wounding response. Using yeast one-hybrid screening, a NAC domain protein, IbNAC1, that specifically bound to the 5'-TACAATATC-3' sequence in SWRE was isolated from a cDNA library from wounded leaves. IbNAC1 was constitutively expressed in root tissues and was induced earlier than sporamin following the wounding of leaves. Transgenic sweet potato plants overexpressing IbNAC1 had greatly increased sporamin expression, increased trypsin inhibitory activity, and elevated resistance against Spodoptera litura. We further demonstrated that IbNAC1 has multiple biological functions in the jasmonic acid (JA) response, including the inhibition of root formation, accumulation of anthocyanin, regulation of aging processes, reduction of abiotic tolerance, and overproduction of reactive oxygen species (ROS). Thus, IbNAC1 is a core transcription factor that reprograms the transcriptional response to wounding via the JA-mediated pathway in sweet potato.

摘要

sporamin是甘薯(Ipomoea batatas Lam.)中一种具有胰蛋白酶抑制活性的块茎贮藏蛋白,占块茎中可溶性蛋白的85%。它在块根中组成型表达,但仅在受伤后在叶片中表达。迄今为止,其伤口诱导信号转导机制仍不清楚。在本研究中,在sporamin启动子中鉴定出一个53bp的DNA区域,即sporamin伤口反应顺式元件(SWRE),并确定其负责伤口反应。通过酵母单杂交筛选,从受伤叶片的cDNA文库中分离出一种与SWRE中5'-TACAATATC-3'序列特异性结合的NAC结构域蛋白IbNAC1。IbNAC1在根组织中组成型表达,在叶片受伤后比sporamin更早被诱导。过表达IbNAC1的转基因甘薯植株中sporamin表达大幅增加,胰蛋白酶抑制活性增强,对斜纹夜蛾的抗性提高。我们进一步证明,IbNAC1在茉莉酸(JA)反应中具有多种生物学功能,包括抑制根的形成、花青素的积累、衰老过程的调控、非生物耐受性的降低以及活性氧(ROS)的过量产生。因此,IbNAC1是一个核心转录因子,通过甘薯中JA介导的途径重新编程对伤口的转录反应。

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