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Phosphate Concentration and Arbuscular Mycorrhizal Colonisation Influence the Growth Yield and Expression of Twelve PHT1 Family Phosphate Transporters in Foxtail Millet (Setaria italica)

机译:磷酸浓度和丛枝菌根定植影响谷子(Setaria italica)中十二种PHT1家族磷酸转运蛋白的生长产量和表达。

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摘要

Phosphorus (P) is an essential element which plays several key roles in all living organisms. Setaria italica (foxtail millet) is a model species for panacoid grasses including several millet species widely grown in arid regions of Asia and Africa, and for the bioenergy crop switchgrass. The growth responses of S. italica to different levels of inorganic phosphate (Pi) and to colonisation with the arbuscular mycorrhizal fungus Funneliformis mosseae (syn. Glomus mosseae) were studied. Phosphate is taken up from the environment by the PHT1 family of plant phosphate transporters, which have been well characterized in several plant species. Bioinformatic analysis identified 12 members of the PHT1 gene family (SiPHT1;1-1;12) in S. italica, and RT and qPCR analysis showed that most of these transporters displayed specific expression patterns with respect to tissue, phosphate status and arbuscular mycorrhizal colonisation. SiPHT1;2 was found to be expressed in all tissues and in all growth conditions tested. In contrast, expression of SiPHT1;4 was induced in roots after 15 days growth in hydroponic medium of low Pi concentration. Expression of SiPHT1;8 and SiPHT1;9 in roots was selectively induced by colonisation with F. mosseae. SiPHT1;3 and SiPHT1;4 were found to be predominantly expressed in leaf and root tissues respectively. Several other transporters were expressed in shoots and leaves during growth in low Pi concentrations. This study will form the basis for the further characterization of these transporters, with the long term goal of improving the phosphate use efficiency of foxtail millet.
机译:磷(P)是必不可少的元素,在所有活生物体中都扮演着多个关键角色。狗尾草(Setaria italica)(狐尾谷子)是泛类草的模型物种,包括在亚洲和非洲的干旱地区广泛种植的几种谷子物种,以及生物能源作物柳枝model。研究了意大利链球菌对不同水平的无机磷酸盐(Pi)的生长响应以及对丛枝菌根真菌定殖真菌(Funneliformis mosseae)(Syn。Glomus mosseae)的定植反应。 PHT1家族的植物磷酸盐转运蛋白从环境中吸收了磷酸盐,PHT1家族已在几种植物中得到了很好的表征。生物信息学分析确定了意大利链球菌PHT1基因家族的12个成员(SiPHT1; 1-1; 12),RT和qPCR分析表明,这些转运蛋白大多数在组织,磷酸盐状态和丛枝菌根定植方面表现出特定的表达模式。发现SiPHT1; 2在测试的所有组织和所有生长条件下均表达。相反,在低Pi浓度的水培培养基中生长15天后,在根中诱导了SiPHT1; 4的表达。 mosseae菌落定植可选择性诱导根系中SiPHT1; 8和SiPHT1; 9的表达。发现SiPHT1; 3和SiPHT1; 4分别主要在叶和根组织中表达。在低Pi浓度的生长过程中,茎和叶中还表达了其他几种转运蛋白。这项研究将为进一步表征这些转运蛋白奠定基础,其长期目标是提高谷子的磷酸盐利用效率。

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