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HvNAC6转录因子:大麦和拟南芥中抗穿透性的正向调节因子。

The HvNAC6 transcription factor: a positive regulator of penetration resistance in barley and Arabidopsis.

作者信息

Jensen Michael Krogh, Rung Jesper Henrik, Gregersen Per Langkjaer, Gjetting Torben, Fuglsang Anja Thoe, Hansen Michael, Joehnk Nina, Lyngkjaer Michael Foged, Collinge David B

机构信息

Department of Plant Biology, Faculty of Life Sciences, University of Copenhagen, Thorvaldsensvej 40, Frederiksberg C, Denmark.

出版信息

Plant Mol Biol. 2007 Sep;65(1-2):137-50. doi: 10.1007/s11103-007-9204-5. Epub 2007 Jul 6.

Abstract

Pathogens induce the expression of many genes encoding plant transcription factors, though specific knowledge of the biological function of individual transcription factors remains scarce. NAC transcription factors are encoded in plants by a gene family with proposed functions in both abiotic and biotic stress adaptation, as well as in developmental processes. In this paper, we provide convincing evidence that a barley NAC transcription factor has a direct role in regulating basal defence. The gene transcript was isolated by differential display from barley leaves infected with the biotrophic powdery mildew fungus, Blumeria graminis f.sp. hordei (Bgh). The full-length cDNA clone was obtained using 5'-RACE and termed HvNAC6, due to its high similarity to the rice homologue, OsNAC6. Gene silencing of HvNAC6 during Bgh inoculation compromises penetration resistance in barley epidermal cells towards virulent Bgh. Complementing the effect of HvNAC6 gene silencing, transient overexpression of HvNAC6 increases the occurrence of penetration resistant cells towards Bgh attack. Quantitative RT-PCR shows the early and transient induction of HvNAC6 in barley epidermis upon Bgh infection. Additionally, our results show that the Arabidopsis HvNAC6 homologue ATAF1 is also induced by Bgh and the ataf1-1 mutant line shows decreased penetration resistance to this non-host pathogen. Collectively, these data suggest a conserved role of HvNAC6 and ATAF1 in the regulation of penetration resistance in monocots and dicots, respectively.

摘要

病原体可诱导许多编码植物转录因子的基因表达,不过对于单个转录因子生物学功能的具体了解仍然有限。NAC转录因子由植物中的一个基因家族编码,该家族在非生物和生物胁迫适应以及发育过程中都具有假定的功能。在本文中,我们提供了令人信服的证据,证明大麦NAC转录因子在调节基础防御中具有直接作用。通过差异显示从感染活体营养型白粉病菌(禾本科布氏白粉菌大麦专化型,Bgh)的大麦叶片中分离出该基因转录本。使用5'-RACE获得了全长cDNA克隆,并将其命名为HvNAC6,因为它与水稻同源物OsNAC6高度相似。在接种Bgh期间对HvNAC6进行基因沉默会损害大麦表皮细胞对毒性Bgh的穿透抗性。补充HvNAC6基因沉默的效果,HvNAC6的瞬时过表达增加了对Bgh攻击的穿透抗性细胞的发生率。定量RT-PCR显示在Bgh感染后大麦表皮中HvNAC6的早期和瞬时诱导。此外,我们的结果表明,拟南芥HvNAC6同源物ATAF1也被Bgh诱导,ataf1-1突变株系对这种非寄主病原体的穿透抗性降低。总体而言,这些数据表明HvNAC6和ATAF1分别在单子叶植物和双子叶植物的穿透抗性调节中具有保守作用。

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