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Arabidopsis PHOSPHATE TRANSPORTER1 genes PHT1;8 and PHT1;9 are involved in root-to-shoot translocation of orthophosphate

机译:拟南芥磷酸转运蛋白1基因PHT1; 8和PHT1; 9参与正磷酸根到茎的移位

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Background In plants, the uptake from soil and intercellular transport of inorganic phosphate (Pi) is mediated by the PHT1 family of membrane-spanning proton : Pi symporters. The Arabidopsis thaliana AtPHT1 gene family comprises nine putative high-affinity Pi transporters. While AtPHT1;1 to AtPHT1;4 are involved in Pi acquisition from the rhizosphere, the role of the remaining transporters is less clear. Results Pi uptake and tissue accumulation studies in AtPHT1;8 and AtPHT1;9 knock-out mutants compared to wild-type plants showed that both transporters are involved in the translocation of Pi from the root to the shoot. Upon inactivation of AtPHT1;9, changes in the transcript profiles of several genes that respond to plant phosphorus (P) status indicated a possible role in the regulation of systemic signaling of P status within the plant. Potential genetic interactions were found among PHT1 transporters, as the transcript profile of AtPHT1;5 and AtPHT1;7 was altered in the absence of AtPHT1;8, and the transcript profile of AtPHT1;7 was altered in the Atpht1;9 mutant. These results indicate that AtPHT1;8 and AtPHT1;9 translocate Pi from the root to the shoot, but not from the soil solution into the root. Conclusion AtPHT1;8 and AtPHT1;9 are likely to act sequentially in the interior of the plant during the root-to-shoot translocation of Pi, and play a more complex role in the acclimation of A. thaliana to changes in Pi supply than was previously thought.
机译:背景技术在植物中,跨膜质子的PHT1家族:Pi转运体介导了土壤和无机磷酸盐(Pi)的细胞间运输。拟南芥AtPHT1基因家族包含九个假定的高亲和力Pi转运蛋白。虽然从根际中获取AtPHT1; 1至AtPHT1; 4涉及Pi,但其他转运蛋白的作用尚不清楚。结果与野生型植物相比,AtPHT1; 8和AtPHT1; 9敲除突变体对Pi的吸收和组织积累研究表明,这两种转运蛋白都参与了Pi从根到芽的转运。 AtPHT1; 9失活后,响应植物磷(P)状态的几个基因的转录谱变化表明,在调节植物体内磷状态的系统信号中可能发挥作用。在不存在AtPHT1; 8的情况下,AtPHT1; 5和AtPHT1; 7的转录本谱被改变,而Atpht1; 9突变体中AtPHT1; 7的转录本谱被改变,在PHT1转运蛋白之间发现了潜在的遗传相互作用。这些结果表明,AtPHT1; 8和AtPHT1; 9将Pi从根部转移到芽,而不是从土壤溶液转移到根部。结论AtPHT1; 8和AtPHT1; 9可能在Pi的根到茎转移过程中在植物内部顺序发挥作用,并且在拟南芥适应Pi供应变化方面起着比其更复杂的作用。以前认为。

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