首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >NAC domain transcription factor ATAF1 interacts with SNF1-related kinases and silencing of its subfamily causes severe developmental defects in Arabidopsis
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NAC domain transcription factor ATAF1 interacts with SNF1-related kinases and silencing of its subfamily causes severe developmental defects in Arabidopsis

机译:NAC域转录因子ATAF1与SNF1相关激酶相互作用,其亚家族的沉默导致拟南芥中严重的发育缺陷

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摘要

ATAF1, a member of the plant-specific NAC transcription factor family in Arabidopsis thaliana, was identified in two-hybrid and in vitro binding assays as interacting partner of SNF1-related protein kinase (SnRK1) catalytic subunits. SnRK1s represent essential factors in stress and glucose signal transduction, and are involved in coordinate regulation of metabolic, hormonal and developmental signaling pathways. Transcription profiles of ATAF1 and closely related NACs indicate that their expression is co-regulated in various organs and by wounding, methyl jasmonate, hydrogen peroxide, pathogen infection, abscisic acid, cold, drought, salt and osmotic stress. Transgenic Arabidopsis carrying a 35S::ATAF1 construct developed fast senescing curly leaves and showed various grades of dwarfism leading to growth arrest and subsequent seedling death. RT-PCR analysis exhibited a silencing effect of the overexpression construct that down-regulated transcription of endogenous ATAF family members in plants showing severe developmental defects. These results together with the analysis of T-DNA insertion mutants suggest that the ATAF subfamily members perform redundant functions and act as positive regulators of plant development.
机译:ATAF1是拟南芥中植物特异性NAC转录因子家族的成员,在两次杂交和体外结合试验中被确定为SNF1相关蛋白激酶(SnRK1)催化亚基的相互作用伴侣。 SnRK1s代表压力和葡萄糖信号转导中的重要因素,并参与代谢,激素和发育信号通路的协调调控。 ATAF1和密切相关的NAC的转录谱表明,它们的表达在各种器官中受到共同调节,并且受到创伤,茉莉酸甲酯,过氧化氢,病原体感染,脱落酸,寒冷,干旱,盐和渗透胁迫的共同调节。携带35S :: ATAF1构建体的转基因拟南芥产生了快速衰老的卷曲叶片,并显示出各种等级的侏儒症,导致生长停滞和随后的幼苗死亡。 RT-PCR分析显示了过表达构建体的沉默作用,该构建体下调了显示严重发育缺陷的植物中内源性ATAF家族成员的转录。这些结果以及对T-DNA插入突变体的分析表明,ATAF亚家族成员具有多余的功能并充当植物发育的正向调节剂。

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