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Plant phosphorus acquisition in a common mycorrhizal network: regulation of phosphate transporter genes of the Pht1 family in sorghum and flax

机译:常见菌根网络中的植物磷吸收:高粱和亚麻中Pht1家族的磷酸盐转运蛋白基因的调控

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摘要

In a preceding microcosm study, we found huge differences in phosphorus (P) acquisition in sorghum (Sorghum bicolor) and flax (Linum usitatissimum) sharing a common mycorrhizal network (CMN). Is the transcriptional regulation of arbuscular mycorrhizal (AM)-induced inorganic orthophosphate (Pi) transporters responsible for these differences? We characterized and analyzed the expression of Pi transporters of the Pht1 family in both plant species, and identified two new AM-inducible Pi transporters in flax. Mycorrhizal Pi acquisition was strongly affected by the combination of plant and AM fungal species. A corresponding change in the expression of two AM-inducible Pht1 transporters was noticed in both plants (SbPT9, SbPT10, LuPT5 and LuPT8), but the effect was very weak. Overall, the expression level of these genes did not explain why flax took up more Pi from the CMN than did sorghum. The post-transcriptional regulation of the transporters and their biochemical properties may be more important for their function than the fine-tuning of their gene expression.
机译:在先前的微观研究中,我们发现共享共同菌根网络(CMN)的高粱(双色高粱)和亚麻(Linum usitatissimum)中磷(P)的获取存在巨大差异。丛枝菌根(AM)诱导的无机正磷酸盐(Pi)转运蛋白的转录调控是造成这些差异的原因吗?我们表征和分析了Pht1家族的Pi转运蛋白在两种植物中的表达,并鉴定了亚麻中两个新的AM诱导型Pi转运蛋白。植物和AM真菌物种的结合严重影响了菌根Pi的获得。在两种植物(SbPT9,SbPT10,LuPT5和LuPT8)中都注意到了两种AM诱导型Pht1转运蛋白表达的相应变化,但效果非常弱。总体而言,这些基因的表达水平不能解释为什么亚麻比高粱从CMN中吸收更多的Pi。转运蛋白及其生物化学特性的转录后调控对它们的功能可能比其基因表达的微调更为重要。

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