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Globular structures in roots accumulate phosphorus to extremely high concentrations following phosphorus addition

机译:在磷添加后,根部的球状结构累积到极高浓度的磷

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摘要

Crops with improved uptake of fertilizer phosphorus (P) would reduce P losses and confer environmental benefits. We examined how P-sufficient 6-week-old soil-grown Trifolium subterraneum plants, and 2-week-old seedlings in solution culture, accumulated P in roots after inorganic P (Pi) addition. In contrast to our expectation that vacuoles would accumulate excess P, after 7 days, X-ray microanalysis showed that vacuolar [P] remained low (12 mmol kg(-1)). However, in the plants after P addition, some cortex cells contained globular structures extraordinarily rich in P (often >3,000 mmol kg(-1)), potassium, magnesium, and sodium. Similar structures were evident in seedlings, both before and after P addition, with their [P] increasing threefold after P addition. Nuclear magnetic resonance (NMR) spectroscopy showed seedling roots accumulated Pi following P addition, and transmission electron microscopy (TEM) revealed large plastids. For seedlings, we demonstrated that roots differentially expressed genes after P addition using RNAseq mapped to the T. subterraneum reference genome assembly and transcriptome profiles. Among the most up-regulated genes after 4 hr was TSub_g9430.t1, which is similar to plastid envelope Pi transporters (PHT4;1, PHT4;4): expression of vacuolar Pi-transporter homologs did not change. We suggest that subcellular P accumulation in globular structures, which may include plastids, aids cytosolic Pi homeostasis under high-P availability.
机译:具有改善的肥料磷(P)的作物将减少P损失并赋予环境效益。我们检查了P-Fairture 6周龄的土壤生长的三叶植物和溶液培养中的2周龄幼苗,在无机P(PI)后累积P根中的p。与我们预期的预期相比,7天后,液泡累积过量的P,X射线微基分析显示真空[P]保持低(& 12mmol kg(-1))。然而,在PANCTION后在植物中,一些皮质细胞含有富含P的球状结构(通常> 3,000mmol kg(-1)),钾,镁和钠。在幼苗中,在P添加之前和之后,在幼苗中显而易见的是,在添加后,它们增加了三倍。核磁共振(NMR)光谱显示P1之后累积PI累积PI,透射电子显微镜(TEM)显示大型体积。对于幼苗,我们证明了使用RNASEQ映射到T.底片参考基因组组件和转录组谱系后的根差异表达基因。在4小时后最上调的基因中是Tsub_G9430.T1,其类似于塑性包膜PI转运蛋白(pHT4; 1,pHT4; 4):真空PI-转运蛋白同源物的表达没有变化。我们建议球状结构中的亚细胞P累积,其可包括塑性化,艾滋病在高p的可用性下辅助细胞溶质PI稳态。

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