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Transcriptional regulation and functional properties of Arabidopsis Pht1;4, a high affinity transporter contributing greatly to phosphate uptake in phosphate deprived plants

机译:拟南芥Pht1; 4的转录调控和功能特性,一种高度亲和的转运蛋白,对缺乏磷酸盐的植物中的磷酸盐吸收有很大贡献

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Phosphate mobilization into the plant is a complex process requiring numerous transporters for absorption and translocation of this major nutrient. In the genome of Arabidopsis thaliana, nine closely related high affinity phosphate transporters have been identified but their specific roles remain unclear. Here we report the molecular, histological and physiological characterization of Arabidopsis pht1;4 high affinity phosphate transporter mutants. Using GUS-gene trap and in situ hybridization, Pht1;4 was found mainly expressed in inorganic phosphate (Pi) limiting medium in roots, primarily in the epidermis, the cortex and the root cap. In addition to this, expression was also observed at the lateral root branch points on the primary root and in the stele of lateral roots, suggesting a role of Pht1;4 in phosphate absorption and translocation from the growth medium to the different parts of the plant. Pi-starved pht1;4 plantlets exhibited a strong reduction of phosphate uptake capacity (40). This phenotype appears only related to the pht1;4 mutation as there were no obvious changes in the expression of other Pht1 family members in the mutants background. However, after 10 days of growth on phosphate deficient or sufficient medium, the Pi content in the mutants was not significantly different from that of the corresponding wild type controls. Furthermore, the mutants did not display any obvious growth defects or visible phenotypes when grown on a low phosphate containing medium. The work described here offers a first step in the complex genetic dissection of the phosphate transport system in planta.
机译:磷酸盐向植物中的迁移是一个复杂的过程,需要大量的转运蛋白才能吸收和转运这种主要养分。在拟南芥的基因组中,已鉴定出九种密切相关的高亲和力磷酸盐转运蛋白,但其具体作用仍不清楚。在这里,我们报告拟南芥pht1; 4高亲和力磷酸盐转运蛋白突变体的分子,组织学和生理学表征。使用GUS基因陷阱和原位杂交,发现Pht1; 4主要在根的无机磷酸盐(Pi)限制培养基中表达,主要在表皮,皮层和根冠中表达。除此之外,在初级根和侧根碑上的侧根分支点也观察到表达,表明Pht1; 4在磷酸盐吸收和从生长培养基到植物不同部位的转运中起作用。 。 Pi饥饿的pht1; 4幼苗显示出强烈的磷酸盐吸收能力降低(40)。该表型似乎仅与pht1; 4突变有关,因为在突变体背景中其他Pht1家族成员的表达没有明显变化。但是,在缺乏磷酸盐或足够磷酸盐的培养基上生长10天后,突变体中的Pi含量与相应的野生型对照无显着差异。此外,突变体在低磷酸盐含量的培养基上生长时,没有表现出任何明显的生长缺陷或可见的表型。这里描述的工作为植物中磷酸盐转运系统的复杂遗传解剖提供了第一步。

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