Phosphorus (P) is an important macronutrient with c'/> Identification and expression profiling of Pht1 phosphate transporters in wheat in controlled environments and in the field
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Identification and expression profiling of Pht1 phosphate transporters in wheat in controlled environments and in the field

机译:在受控环境和田间小麦中Pht1磷酸转运蛋白的鉴定和表达谱

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摘要

class="unordered" style="list-style-type:disc" id="plb12668-list-0001">Phosphorus (P) is an important macronutrient with critical functions in plants. Phosphate (Pi) transporters, which mediate Pi acquisition and Pi translocation within the plant, are key factors in Pi deficiency responses. However, their relevance for adaptation to long‐term Pi limitation under agronomic conditions, particularly in wheat, remains unknown.Here, we describe the identification of the complete Pi transporter gene family (Pht1) in wheat (Triticum aestivum). Gene expression profiles were compared for hydroponic and field‐grown plant tissues of wheat at multiple development stages. Cis‐element analysis of selected Pht1 promoter regions was performed.A broad range of expression patterns of individual TaPht1 genes was observed in relation to tissue specificity and the nutrient supply in the soil or in liquid culture, as well as an influence of the experimental system.The expression patterns indicate the involvement of specific transporters in Pi uptake, and in Pi transport and remobilisation within the plant, at different growth developmental stages. Specifically, the influence of Pi nutrition indicates a complex regulatory pattern of TaPht1 gene transcript abundances as a response to low Pi availability in different culture systems, correlating with the existence of different cis‐acting promoter elements.
机译:class =“ unordered” style =“ list-style-type:disc” id =“ plb12668-list-0001”> <!-list-behavior = unordered prefix-word = mark-type = disc max-label- size = 0-> 磷(P)是植物中一种重要的重要营养素,具有至关重要的功能。磷(Pi)转运蛋白介导植物体内Pi的获取和Pi的转运,是Pi缺乏反应的关键因素。但是,它们在农艺条件下(特别是在小麦中)适应长期Pi限制的相关性仍然未知。 在此,我们描述了小麦(Triticum)中完整的Pi转运蛋白基因家族(Pht1)的鉴定。小麦)。比较了多个发育阶段小麦的水培和田间种植的植物组织的基因表达谱。对选定的Pht1启动子区域进行了顺式分析。 观察到单个TaPht1基因的广泛表达模式与土壤或液体培养中的组织特异性和养分供应有关。 表达模式表明在植物不同生长发育阶段,特定转运蛋白参与了Pi的吸收,Pi的转运和迁移。具体而言,Pi营养的影响表明TaPht1基因转录本丰度的复杂调节模式是对不同培养系统中低Pi利用率的响应,与不同的顺式启动子元件的存在有关。

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