首页> 外文期刊>Journal of Experimental Botany >HAHB10, a sunflower HD-Zip II transcription factor, participates in the induction of flowering and in the control of phytohormone-mediated responses to biotic stress
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HAHB10, a sunflower HD-Zip II transcription factor, participates in the induction of flowering and in the control of phytohormone-mediated responses to biotic stress

机译:HAHB10是向日葵的HD-Zip II转录因子,参与诱导开花并控制植物激素介导的对生物胁迫的反应

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The transcription factor HAHB10 belongs to the sunflower (Helianthus annuus) HD-Zip II subfamily and it has been previously associated with the induction of flowering. In this study it is shown that HAHB10 is expressed in sunflower leaves throughout the vegetative stage and in stamens during the reproductive stage. In short-day inductive conditions the expression of this gene is induced in shoot apexes together with the expression of the flowering genes HAFT and HAAP1. Transgenic Arabidopsis plants expressing HAHB10 cDNA under regulation either by its own promoter or by cauliflower mosaic virus (CaMV) 35S exhibited an early flowering phenotype. This phenotype was completely reverted in a non-inductive light regime, indicating a photoperiod-dependent action for this transcription factor. Gene expression profiling of Arabidopsis plants constitutively expressing HAHB10 indicated that specific flowering transition genes such as FT, FUL, and SEP3 were induced several fold, whereas genes related to biotic stress responses, such as PR1, PR2, ICS1, AOC1, EDS5, and PDF1-2a, were repressed. The expression of HAHB10 and of the flowering genes HASEP3 and HAFT was up-regulated by both salicylic acid (SA) treatment and infection with a virulent strain of Pseudomonas syringae. Basal SA and jasmonic acid (JA) levels in Arabidopsis plants ectopically expressing HAHB10 were similar to those of control plants; however, SA levels differentially increased in the transgenic plants after wounding and infection with P. syringae while JA levels differentially decreased. Taken together, the results indicated that HAHB10 participates in two different processes in plants: the transition from the vegetative to the flowering stage via the induction of specific flowering transition genes and the accumulation of phytohormones upon biotic stresses.
机译:转录因子HAHB10属于向日葵(Helianthus annuus)HD-Zip II子家族,先前与诱导开花有关。在这项研究中表明,HAHB10在整个营养阶段在向日葵叶片中表达,在生殖阶段在雄蕊中表达。在短期诱导条件下,该基因的表达与开花基因HAFT和HAAP1的表达一起在芽尖中被诱导。在其自身的启动子或花椰菜花叶病毒(CaMV)35S的调控下表达HAHB10 cDNA的转基因拟南芥植物表现出早期开花表型。该表型在非感应光下已完全还原,表明该转录因子具有光周期依赖性作用。组成型表达HAHB10的拟南芥植物的基因表达谱表明,特定的开花过渡基因(例如FT,FUL和SEP3)被诱导了数倍,而与生物胁迫响应相关的基因(例如PR1,PR2,ICS1,AOC1,EDS5和PDF1) -2a,被压抑。水杨酸(SA)处理和感染丁香假单胞菌的强毒株均会上调HAHB10的表达以及开花基因HASEP3和HAFT的表达。异位表达HAHB10的拟南芥植物的基础SA和茉莉酸(JA)水平与对照植物相似。但是,在丁香假单胞菌感染和感染后,转基因植物中的SA水平差异性增加,而JA水平差异性降低。两者合计,结果表明HAHB10参与了植物中的两个不同过程:通过诱导特定的开花过渡基因,从营养阶段到开花阶段的过渡,以及在生物胁迫下植物激素的积累。

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