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首页> 外文期刊>Plant and cell physiology >Three Arabidopsis SnRK2 Protein Kinases, SRK2D/SnRK2.2, SRK2E/SnRK2.6/OST1 and SRK2I/SnRK2.3, Involved in ABA Signaling are Essential for the Control of Seed Development and Dormancy.
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Three Arabidopsis SnRK2 Protein Kinases, SRK2D/SnRK2.2, SRK2E/SnRK2.6/OST1 and SRK2I/SnRK2.3, Involved in ABA Signaling are Essential for the Control of Seed Development and Dormancy.

机译:参与ABA信号传导的三种拟南芥SnRK2蛋白激酶SRK2D / SnRK2.2,SRK2E / SnRK2.6 / OST1和SRK2I / SnRK2.3对种子发育和休眠控制至关重要。

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ABA is an important phytohormone regulating various plant processes, including stress tolerance, seed development and germination. SRK2D/SnRK2.2, SRK2E/SnRK2.6/OST1 and SRK2I/SnRK2.3 are redundant ABA-activated SNF1-related protein kinases 2 (SnRK2s) in Arabidopsis thaliana. We examined the role of these protein kinases in seed development and germination. These SnRK2 proteins were mainly expressed in the nucleus during seed development and germination. The triple mutant (srk2d srk2e srk2i) was sensitive to desiccation and showed severe growth defects during seed development. It exhibited a loss of dormancy and elevated seed ABA content relative to wild-type plants. The severity of these phenotypes was far stronger than that of any single or double SRK2D, SRK2E and SRK2I mutants, including the srk2d srk2i mutant. The triple mutant had greatly reduced phosphorylation activity in in-gel kinase experiments using basic leucine zipper (bZIP) transcription factors including ABI5. Microarray experiments revealed that 48 and 30% of the down-regulated genes in abi5 and abi3 seeds were suppressed in the triple mutant seeds, respectively. Moreover, disruption of the three protein kinases induced global changes in the up-regulation of ABA-repressive gene expression, as well as the down-regulation of ABA-inducible gene expression. These alterations in gene expression result in a loss of dormancy and severe growth defects during seed development. Collectively, these results indicate that SRK2D, SRK2E and SRK2I protein kinases involved in ABA signaling are essential for the control of seed development and dormancy through the extensive control of gene expression.
机译:ABA是一种重要的植物激素,可调节各种植物过程,包括胁迫耐受性,种子发育和发芽。 SRK2D / SnRK2.2,SRK2E / SnRK2.6 / OST1和SRK2I / SnRK2.3是拟南芥中多余的ABA激活的SNF1相关蛋白激酶2(SnRK2s)。我们检查了这些蛋白激酶在种子发育和发芽中的作用。这些SnRK2蛋白主要在种子发育和萌发过程中在细胞核中表达。三重突变体(srk2d srk2e srk2i)对干燥敏感,并在种子发育过程中显示出严重的生长缺陷。相对于野生型植物,它表现出休眠的丧失和种子ABA含量的升高。这些表型的严重性远强于任何单个或双重SRK2D,SRK2E和SRK2I突变体,包括srk2d srk2i突变体。在使用碱性亮氨酸拉链(bZIP)转录因子(包括ABI5)的凝胶激酶实验中,该三重突变体的磷酸化活性大大降低。基因芯片实验显示,在三重突变体种子中,abi5和abi3种子中分别有48%和30%的下调基因被抑制。此外,三种蛋白激酶的破坏导致ABA抑制性基因表达的上调以及ABA诱导型基因表达的下调的整体变化。基因表达的这些改变导致种子发育期间的休眠损失和严重的生长缺陷。总体而言,这些结果表明,参与ABA信号传导的SRK2D,SRK2E和SRK2I蛋白激酶对于通过广泛控制基因表达来控制种子发育和休眠至关重要。

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