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首页> 外文期刊>Plant physiology >THI1, a Thiamine Thiazole Synthase, Interacts with Ca2+-Dependent Protein Kinase CPK33 and Modulates the S-Type Anion Channels and Stomatal Closure in Arabidopsis
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THI1, a Thiamine Thiazole Synthase, Interacts with Ca2+-Dependent Protein Kinase CPK33 and Modulates the S-Type Anion Channels and Stomatal Closure in Arabidopsis

机译:THI1,一种硫胺素噻唑合酶,与Ca2 +依赖性蛋白激酶CPK33相互作用并调节拟南芥中的S型阴离子通道和气孔关闭。

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摘要

Thiamine is required for both plant growth and development. Here, the involvement of a thiamine thiazole synthase, THI1, has been demonstrated in both guard cell abscisic acid (ABA) signaling and the drought response in Arabidopsis (Arabidopsis thaliana). THI1 overexpressors proved to be more sensitive to ABA than the wild type with respect to both the activation of guard cell slow type anion channels and stomatal closure; this effectively reduced the rate of water loss from the plant and thereby enhanced its level of drought tolerance. A yeast two-hybrid strategy was used to screen a cDNA library from epidermal strips of leaves for THI1 regulatory factors, and identified CPK33, a Ca2+-dependent protein kinase, as interactor with THI1 in a plasma membrane-delimited manner. Loss-of-function cpk33 mutants were hypersensitive to ABA activation of slow type anion channels and ABA-induced stomatal closure, while the CPK33 overexpression lines showed opposite phenotypes. CPK33 kinase activity was essential for ABA-induced stomatal closure. Consistent with their contrasting regulatory role over stomatal closure, THI1 suppressed CPK33 kinase activity in vitro. Together, our data reveal a novel regulatory role of thiamine thiazole synthase to kinase activity in guard cell signaling.
机译:硫胺素对于植物生长和发育都是必需的。在这里,硫胺素噻唑合酶THI1参与了保卫细胞脱落酸(ABA)信号传导和拟南芥(Arabidopsis thaliana)的干旱反应。在保卫细胞慢型阴离子通道的激活和气孔关闭方面,THI1过表达者被证明对ABA的敏感性高于野生型。这有效地降低了植物的水分流失率,从而提高了植物的耐旱水平。酵母双杂交策略用于从叶的表皮条上筛选THI1调节因子的cDNA文库,并确定CPK33(一种Ca2 +依赖性蛋白激酶)以质膜定界的方式与THI1相互作用。功能丧失的cpk33突变体对慢速型阴离子通道的ABA活化和ABA诱导的气孔关闭高度敏感,而CPK33过表达系表现出相反的表型。 CPK33激酶活性对于ABA诱导的气孔关闭至关重要。与其在气孔关闭方面相反的调节作用相一致,THI1在体外抑制了CPK33激酶活性。总之,我们的数据揭示了硫胺素噻唑合酶对保卫细胞信号传导中激酶活性的新型调节作用。

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