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The Arabidopsis MYB96 Transcription Factor Is a Positive Regulator of ABSCISIC ACID-INSENSITIVE4 in the Control of Seed Germination

机译:拟南芥MYB96转录因子是ABSCISIC ACID-INSENSITIVE4在种子萌发控制中的正调控因子。

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摘要

Seed germination is a key developmental transition that initiates the plant life cycle. The timing of germination is determined by the coordinated action of two phytohormones, gibberellin and abscisic acid (). In particular, plays a key role in integrating environmental information and inhibiting the germination process. The utilization of embryonic lipid reserves contributes to seed germination by acting as an energy source, and suppresses lipid degradation to modulate the germination process. Here, we report that the -responsive R2R3-type MYB transcription factor MYB96, which is highly expressed in embryo, regulates seed germination by controlling the expression of ABSCISIC ACID-INSENSITIVE4 (ABI4) in Arabidopsis (Arabidopsis thaliana). In the presence of , germination was accelerated in MYB96-deficient myb96-1 seeds, whereas the process was significantly delayed in MYB96-overexpressing activation-tagging myb96-ox seeds. Consistently, myb96-1 seeds degraded a larger extent of lipid reserves even in the presence of , while reduced lipid mobilization was observed in myb96-ox seeds. MYB96 directly regulates ABI4, which acts as a repressor of lipid breakdown, to define its spatial and temporal expression. Genetic analysis further demonstrated that ABI4 is epistatic to MYB96 in the control of seed germination. Taken together, the MYB96-ABI4 module regulates lipid mobilization specifically in the embryo to ensure proper seed germination under suboptimal conditions.
机译:种子发芽是启动植物生命周期的关键发展过渡。发芽的时间取决于两种植物激素,赤霉素和脱落酸的协同作用。特别是,在整合环境信息和抑制发芽过程中起着关键作用。胚胎脂质储备的利用通过充当能源来促进种子发芽,并抑制脂质降解以调节发芽过程。在这里,我们报道,在胚胎中高度表达的-R2R3型MYB转录因子MYB96通过控制拟南芥(Arabidopsis thaliana)中ABSCISIC ACID-INSENSITIVE4(ABI4)的表达来调节种子发芽。存在时,MYB96缺陷型myb96-1种子的发芽会加速,而过表达MYB96的活化标签myb96-ox种子的过程则明显延迟。一致地,即使在存在的情况下,myb96-1种子也会降解更大范围的脂质储备,而在myb96-ox种子中观察到脂质动员减少。 MYB96直接调节作为脂质分解阻遏物的ABI4,以定义其空间和时间表达。遗传分析进一步表明,在种子萌发控制中,ABI4对MYB96具有上位性。两者合计,MYB96-ABI4模块专门调节胚胎中的脂质动员,以确保在次优条件下适当的种子发芽。

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