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Populus trichocarpa clade A PP2C protein phosphatases: their stress-induced expression patterns, interactions in core abscisic acid signaling, and potential for regulation of growth and development

机译:Populus Trichocarpa疏水PP2C蛋白磷酸酶:它们的应力诱导的表达模式,核心脱落酸信号传导的相互作用,以及增长和发育的调控潜力

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We identified and studied Populus trichocarpa genes, PtrHAB1 through PtrHAB15, belonging to the clade A PP2C family of protein phosphatases known to regulate abscisic acid (ABA) signaling. PtrHAB1 through PtrHAB3 and PtrHAB12 through PtrHAB15 were the most highly expressed genes under non-stress conditions. The poplar PP2C genes were differentially regulated by drought treatments. Expression of PtrHAB1 through PtrHAB3 was unchanged or downregulated in response to drought, while all other PtrHAB genes were weakly to strongly upregulated in response to drought stress treatments. Yeast two-hybrid assays involving seven ABA receptor proteins (PtrRCAR) against 12 PtrHAB proteins detected 51 interactions involving eight PP2Cs and all PtrRCAR proteins with 22 interactions requiring the addition of ABA. PtrHAB2, PtrHAB12, PtrHAB13 and PtrHAB14 also interacted with the sucrose non-fermenting related kinase 2 proteins PtrSnRK2.10 and PtrSnRK2.11, supporting conservation of a SnRK2 signaling cascade regulated by PP2C in poplar. Additionally, PtrHAB2, PtrHAB12, PtrHAB13 and PtrHAB14 interacted with the mitogen-activated protein kinase protein PtrMPK7. Due to its interactions with PtrSnRK2 and PtrMPK7 proteins, and its reduced expression during drought stress, PtrHAB2 was overexpressed in poplar to test its potential as a growth regulator under non-stress conditions. 35S::PtrHAB2 transgenics exhibited increased growth rate for a majority of transgenic events and alterations in leaf phyllotaxy and morphology. These results indicate that PP2Cs have additional roles which extend beyond canonical ABA signaling, possibly coordinating plant growth and development in response to environmental conditions.
机译:我们鉴定并研究了Populus Trichocarpa基因,Ptrhab1至ptrhab15,属于Clade A的PP2C系列蛋白质磷酸酶,已知调节脱离酸(ABA)信号传导。 Ptrhab1至ptrhab3和ptrab12通过ptrhab15是在非应力条件下最表达的基因。杨树PP2C基因通过干旱处理差异调节。 ptrhab1至ptrhab3的表达不变或响应干旱而下降,而所有其他ptrhab基因对于响应干旱胁迫处理而弱以强烈上调。涉及七个ABA受体蛋白(PTRRCAR)的酵母双杂化测定对12种PTRHAB蛋白检测到51个相互作用,涉及八个PP2CS和所有PTRCAR蛋白质,其相互作用需要添加ABA。 Ptrhab2,ptrab12,ptrhab13和ptrhab14也与蔗糖非发酵相关激酶2蛋白ptrsnrk2.10和ptrsnrk2.11相互作用,支持保护PP2C在杨树中调节的SNRK2信号级联。此外,PtraB2,Ptrhab12,Ptrhab13和Ptrhab14与丝裂剂活化的蛋白激酶蛋白ptrmpk7相互作用。由于其与PTRSNRK2和PTRMPK7蛋白的相互作用及其在干旱胁迫期间的表达,PTRHAB2在杨树中过表达,以在非应力条件下将其作为生长调节剂的潜力进行测试。 35S :: Ptrhab2转基因表现出大多数转基因事件的增长率和叶片植物和形态的改变。这些结果表明PP2CS具有额外的作用,其延伸超出规范ABA信号,可能会响应环境条件的协调植物生长和发展。

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