Wang Zhuoyu, Rashotte Aaron M, Dane Fenny
Department of Horticulture, Auburn University, Auburn, AL, 36849, USA.
Plant Cell Rep. 2014 Oct;33(10):1673-86. doi: 10.1007/s00299-014-1646-z. Epub 2014 Jun 28.
Two novel NAC transcription factors from C itrullus colocynthis implicated in light and auxin signaling pathway. NAC transcription factors (NAM, ATAF1, 2, CUC2) have multiple functions in plant growth and development. Two NACs, CcNAC1 and CcNAC2, were recently identified in the highly drought-tolerant cucurbit species, Citrullus colocynthis. This study examines the functional role of these genes under different qualities of light based on the in silico analysis of the CcNAC1 and CcNAC2 promoters that revealed the presence of several light-associated motifs. The impact of both light and auxin on CcNAC1 and CcNAC2 expression was examined in C. colocynthis leaves, and using reporter (pCcNAC1, 2::GUS) lines in Arabidopsis. Furthermore, the effects of constitutive overexpression (OE-CcNAC1, 2) in Arabidopsis were also examined under a range of conditions to confirm reporter line linkages. White, blue, red, and far-red light treatments resulted in similar patterns of quantitative changes in CcNAC1and CcNAC2 expression in both species, with the highest transcript increases following red light. Photomorphogenic changes in Arabidopsis hypocotyls were correlated with gene transcript levels. In the absence of light, hypocotyls of OE-CcNAC1/CcNAC2 lines were significantly longer as compared to WT. The addition of exogenous auxin (+IAA) to growth medium also resulted in changes to the hypocotyl lengths of overexpression lines and spatiotemporal reporter line changes in seedlings. Our data suggest that CcNAC1, 2 might be functionally important in the light signaling pathway, and appear connected to the hormone auxin. This is the first study to indicate that NAC genes might play a role in both light and auxin signaling pathways.
来自苦西瓜的两个新的NAC转录因子与光和生长素信号通路有关。NAC转录因子(NAM、ATAF1、2、CUC2)在植物生长发育中具有多种功能。最近在高度耐旱的葫芦科植物苦西瓜中鉴定出两个NAC基因,即CcNAC1和CcNAC2。本研究基于对CcNAC1和CcNAC2启动子的电子分析,揭示了几个与光相关的基序,从而研究了这些基因在不同光质下的功能作用。在苦西瓜叶片中以及使用拟南芥中的报告基因系(pCcNAC1、2::GUS)研究了光和生长素对CcNAC1和CcNAC2表达的影响。此外,还在一系列条件下研究了拟南芥中组成型过表达(OE-CcNAC1、2)的影响,以确认报告基因系的联系。白光、蓝光、红光和远红光处理导致两个物种中CcNAC1和CcNAC2表达的定量变化模式相似,红光处理后转录本增加最多。拟南芥下胚轴的光形态建成变化与基因转录水平相关。在无光条件下,OE-CcNAC1/CcNAC2系的下胚轴比野生型长得多。向生长培养基中添加外源生长素(+IAA)也导致过表达系下胚轴长度的变化以及幼苗中报告基因系的时空变化。我们的数据表明,CcNAC1、2可能在光信号通路中具有重要功能,并且似乎与激素生长素有关。这是第一项表明NAC基因可能在光和生长素信号通路中都发挥作用的研究。