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Physical interaction between SnRK2 and PP2C is conserved in Populus trichocarpa

机译:SnRK2和PP2C之间的物理相互作用在毛果杨中得以保留

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Type 2C protein phosphatase (PP2C) is a central player in abscisic acid (ABA) signaling transduction, which is required for plant growth, development and stress responses. In Arabidopsis, group A PP2Cs inhibit activity of the SNF1-related protein kinases 2 (SnRK2) family via physical interaction. To clarify whether this scheme is conserved in woody plants, we experimentally isolated the genes homologous to three members of group A PP2Cs (PtABI1, PtAHG1 and PtAHG3) and 12 SnRK2s (PtSnRK2.1–2.12) from a model tree Populus trichocarpa , and examined their interaction using a yeast two-hybrid assay. Our results showed that only three PtSnRK2 proteins had a positive interaction with PtPP2Cs: PtSnRK2.10 possessed strong interaction activity with all three PtPP2Cs, while significant, but relatively weak, interactions were observed with PtSnRK2.6 and PtSnRK2.9. These three PtSnRK proteins are grouped into subclass 2 or 3, which are considered to be ABA-dependent kinases in Arabidopsis. These findings suggest that physical interaction between SnRK2 and PP2C is also conserved in poplars and may be involved in the ABA signaling pathway in tree plants.
机译:2C型蛋白磷酸酶(PP2C)是脱落酸(ABA)信号转导的重要参与者,这是植物生长,发育和胁迫反应所必需的。在拟南芥中,A组PP2Cs通过物理相互作用抑制SNF1相关蛋白激酶2(SnRK2)家族的活性。为了阐明该方案是否在木本植物中保守,我们从模型树毛杨(Populus trichocarpa)中实验分离了与A组PP2Cs的三个成员(PtABI1,PtAHG1和PtAHG3)和12个SnRK2(PtSnRK2.1–2.12)同源的基因,并进行了研究它们的相互作用采用酵母两杂交试验。我们的结果表明,只有三种PtSnRK2蛋白与PtPP2Cs具有正相互作用:PtSnRK2.10与所有三种PtPP2Cs都具有很强的相互作用活性,而与PtSnRK2.6和PtSnRK2.9却观察到了显着但相对较弱的相互作用。这三种PtSnRK蛋白分为2类或3类,在拟南芥属中被认为是ABA依赖性激酶。这些发现表明,SnRK2和PP2C之间的物理相互作用在杨树中也很保守,并且可能参与树木植物的ABA信号通路。

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