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首页> 外文期刊>Plant and cell physiology >The S-Type Anion Channel ZmSLAC1 Plays Essential Roles in Stomatal Closure by Mediating Nitrate Efflux in Maize
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The S-Type Anion Channel ZmSLAC1 Plays Essential Roles in Stomatal Closure by Mediating Nitrate Efflux in Maize

机译:S型阴离子通道ZMSLAC1通过在玉米中介导硝酸盐流出来起到气孔闭合中的基本作用

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Diverse stimuli induce stomatal closure by triggering the efflux of osmotic anions, which is mainly mediated by the main anion channel SLAC1 in plants, and the anion permeability and selectivity of SLAC1 channels from several plant species have been reported to be variable. However, the genetic identity as well as the anion permeability and selectivity of the main S-type anion channel ZmSLAC1 in maize are still unknown. In this study, we identified GRMZM2G106921 as the gene encoding ZmSLAC1 in maize, and the maize mutants zmslac1-1 and zmslac1-2 harboring a mutator (Mu) transposon in ZmSLAC1 exhibited strong insensitive phenotypes of stomatal closure in response to diverse stimuli. We further found that ZmSLAC1 functions as a nitrate-selective anion channel without obvious permeability to chloride, sulfate and malate, clearly different from SLAC1 channels of Arabidopsis thaliana, Brassica rapa ssp. chinensis and Solanum lycopersicum L. Further experimental data show that the expression of ZmSLAC1 successfully rescued the stomatal movement phenotypes of the Arabidopsis double mutant atslac1-3atslah3-2 by mainly restoring nitrate-carried anion channel currents of guard cells. Together, these findings demonstrate that ZmSLAC1 is involved in stomatal closure mainly by mediating the efflux of nitrate in maize.
机译:通过触发渗透阴离子的流出来诱导气孔闭合,这主要由植物中的主要阴离子通道Slac1介导,并且据报道,来自几种植物物种的Slac1通道的阴离子渗透性和选择性是可变的。然而,玉米中的遗传标识以及主S型阴离子通道ZMSLAC1的阴离子渗透性和选择性仍然未知。在该研究中,我们将GRMZM2G106921确定为编码玉米中ZMSLAC1的基因,玉米突变体ZMSLAC1-1和ZMSLAC1在ZMSLAC1中的转基因患者呈现出强烈不敏感的气孔闭合表型,响应于不同的刺激。我们进一步发现,ZMSLAC1作为硝酸盐选择性的阴离子通道,没有明显的渗透渗透性,硫酸盐和苹果酸盐,明显不同于拟南芥的SLAC1通道,Brassica Rapa SSP。 Chinensis和Solanum Lycopersicum L.进一步的实验数据表明,ZMSLAC1的表达通过主要恢复防护细胞的硝酸盐的阴离子通道电流来成功地拯救了拟南芥双突变体Atslac1-3atslah3-2的气孔运动表型。这些发现在一起表明,ZMSLAC1主要通过介导玉米中硝酸盐的流出来涉及气孔闭合。

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