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首页> 外文期刊>Journal of Nutrition Education and Behavior >The endophytic fungus Piriformospora indica enhances Arabidopsis thaliana growth and modulates Na+/K+ homeostasis under salt stress conditions
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The endophytic fungus Piriformospora indica enhances Arabidopsis thaliana growth and modulates Na+/K+ homeostasis under salt stress conditions

机译:内生真菌吡虫菊孢子蛋白增强拟南芥生长,并在盐胁迫条件下调节Na + / K +稳态

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The mutualistic, endophytic fungus Piriformospora indica has been shown to confer biotic and abiotic stress tolerance to host plants. In this study, we investigated the impact of P. indica on the growth of Arabidopsis plants under normal and salt stress conditions. Our results demonstrate that P. indica colonization increases plant biomass, lateral roots density, and chlorophyll content under both conditions. Colonization with P. indica under salt stress was accompanied by a lower Na+/K+ ratio and less pronounced accumulation of anthocyanin, compared to control plants. Moreover, P. indica colonized roots under salt stress showed enhanced transcript levels of the genes encoding the high Affinity Potassium Transporter 1 (HKT1) and the inward-rectifying K+ channels KAT1 and KAT2, which play key roles in regulating Na+ and K+ homeostasis. The effect of P. indica colonization on AtHKT1;1 expression was also confirmed in the Arabidopsis line gll-HKT:AtHKT1;1 that expresses an additional AtHKT1;1 copy driven by the native promoter. Colonization of the gll-HKT:AtHKT1;1 by P. indica also increased lateral roots density and led to a better Neil( ratio, which may be attributed to the observed increase in KATI and KAT2 transcript levels. Our findings demonstrate that P. indica colonization promotes Arabidopsis growth under salt stress conditions and that this effect is likely caused by modulation of the expression levels of the major Na+ and K+ ion channels, which allows establishing a balanced ion homeostasis of Na+/K+ under salt stress conditions.
机译:已显示相互互动的内生真菌吡虫菊孢子蛋白籼型对宿主植物赋予生物和非生物胁迫耐受性。在这项研究中,我们研究了P. Dispa对正常和盐胁迫条件下拟南芥植物生长的影响。我们的结果表明,在两种条件下,P. Indica定植增加了植物生物质,侧面根部密度和叶绿素含量。与对照植物相比,盐胁迫下盐胁迫下的盐胁迫下的含量伴随着较低的Na + / k +比和较少明显的植物积累。此外,在盐胁迫下的籼型殖民枯萎病显示出编码高亲和力转运钾1(HKT1)的基因的增强的转录物水平,以及向内整流K +通道KAT1和KAT2,其在调节Na +和K +稳态方面起着关键作用。拟南芥Line GLL-HKT中,ATHKT1; 1的adapkt1; 1表达额外的ATHKT1; 1由本机启动子驱动的复制,也证实了P. 1表达的效果。 GLL-HKT的定植:ATHKT1; 1通过P.PIGPA也增加了横向根密度并导致更好的尼尔(比率,这可能归因于KATI和KAT2转录水平的观察到的增加。我们的研究结果证明了P. indica殖民化在盐胁迫条件下促进拟南芥生长,并且该效果可能是由主要Na +和K +离子通道的表达水平的调节引起的,这允许在盐胁迫条件下建立Na + / K +的平衡离子稳态。

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