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Tissue specific transcript profiling of wheat phosphate transporter genes and its association with phosphate allocation in grains

机译:小麦磷酸盐转运蛋白基因的组织特异性转录谱分析及其与谷物中磷酸盐分配的关系

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摘要

Approaches enabling efficient phosphorus utilization in crops are of great importance. In cereal crop like wheat, utilization of inorganic phosphate (Pi) is high and mature grains are the major sink for Pi utilization and storage. Research that addresses the importance of the Pi homeostasis in developing grains is limited. In an attempt to understand the Pi homeostasis in developing wheat grains, we identified twelve new phosphate transporters (PHT), these are phyologentically well distributed along with the members reported from Arabidopsis and rice. Enhanced expression of PHT1-subfamily genes was observed in roots subjected to the Pi starvation suggesting their active role in Pi homeostasis. Differential expression patterns of all the PHT genes during grain filling stages suggested their importance in the filial tissues. Additionally, high accumulation of Pi and total P in aleurone correlates well with the expression of TaPHTs and other phosphate starvation related genes. Tissue specific transcript accumulation of TaPHT1.1, TaPHT1.2, TaPHT1.4 in aleurone; TaPHT3.1 in embryo and TaPHT4.2 in the endosperm was observed. Furthermore, their transcript abundance was affected in low phytate wheat grains. Altogether, this study helps in expanding the knowledge and prioritize the candidate wheat Pi-transporters to modulate the Pi homeostasis in cereal grains.
机译:使作物有效利用磷的方法非常重要。在像小麦这样的谷物作物中,无机磷酸盐(Pi)的利用率很高,而成熟谷物是Pi利用率和存储的主要来源。关于Pi稳态对发育谷物的重要性的研究是有限的。为了了解小麦籽粒中Pi的动态平衡,我们鉴定了十二种新的磷酸盐转运蛋白(PHT),这些转运蛋白与拟南芥和水稻报道的成员在植物上分布良好。在遭受Pi饥饿的根中观察到PHT1亚家族基因的表达增强,表明它们在Pi动态平衡中发挥了积极作用。在籽粒充实阶段,所有PHT基因的差异表达模式表明它们在孝子组织中的重要性。另外,糊粉中Pi和总P的高积累与TaPHT和其他磷酸饥饿相关基因的表达良好相关。糊粉中TaPHT1.1,TaPHT1.2,TaPHT1.4的组织特异性转录本积累;观察到胚胎中的TaPHT3.1和胚乳中的TaPHT4.2。此外,低植酸小麦籽粒的转录本丰度也受到影响。总而言之,这项研究有助于扩展知识,并优先考虑候选小麦Pi-转运蛋白,以调节谷物中的Pi稳态。

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