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Exogenous Pi supplementation improved the salt tolerance of maize ( Zea mays L.) by promoting Na + exclusion

机译:外源Pi的补充通过促进Na +的排泄来提高玉米(Zea mays L.)的耐盐性

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The mechanism of phosphate (Pi)-mediated salt tolerance in maize is poorly understood. In this study, the effects of Pi (H2PO4?) on the salt tolerance of two contrasting genotypes was investigated in a pot experiment. We discovered that the application of 3?mM Pi could alleviate salt injury caused by 200?mM NaCl. High amounts of compatible solutes and low amounts of reactive oxygen species (ROS) were also observed under Pi application. Consistent with the increased tolerance, the total number of roots and the growth of shoots increased to relieve salt stress. This phenomenon could be associated with the observed increased expression of nitrate transporters. Furthermore, the seedlings presented a negative relationship between sodium (Na+) and Pi (low Na+ content and high Pi content), which is related to the genes ZmNHX1, ZmPHT1;8, and ZmPHT1;9, indicating that the exclusion of Na+ was promoted by high Pi uptake. However, high Na+ and low potassium (K+) efflux were detected in the roots, and these were positively correlated with two K+ transporters. These observations indicate that Na+ exclusion was directly induced by high K+ retention rather than Pi absorption. We conclude that maize salt tolerance increased in response to Pi application by promoting Na+ exclusion.
机译:玉米中磷(Pi)介导的耐盐性机理了解甚少。在这项研究中,在盆栽实验中研究了Pi(H2PO4?)对两种不同基因型的耐盐性的影响。我们发现3?mM Pi的施用可以减轻200?mM NaCl引起的盐害。在Pi施用下也观察到大量的相容性溶质和少量的活性氧(ROS)。与增加的耐受性一致,根的总数和芽的生长增加以缓解盐胁迫。这种现象可能与观察到的硝酸盐转运蛋白表达增加有关。此外,幼苗呈现出Na(Na +)和Pi(低Na +含量和高Pi含量)之间的负相关关系,这与基因ZmNHX1,ZmPHT1; 8和ZmPHT1; 9有关,表明促进了Na +的排斥被高Pi吸收。然而,在根中检测到高的Na +和低的钾(K +)外排,它们与两个K +转运蛋白正相关。这些观察结果表明,Na +的排斥直接由高K +保留而不是Pi吸收引起。我们得出的结论是,通过促进Na +排斥,玉米对Pi施用的耐盐性增加。

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