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Metabolite profiling of shoot extract, root extract, and root exudate of rice under nitrogen and phosphorus deficiency

机译:在氮气和磷缺乏下,射击提取物,根提取物和水稻根部渗出物的代谢物分析

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摘要

Root exudate is derived from plant metabolites and its composition is affected by plant nutrient status. A deficiency of mineral nutrients, such as nitrogen (N) and phosphorus (P), strongly affects the type and amount of plant metabolites. We applied a metabolite profiling technique to investigate root exudates of rice plants under N and P deficiency. Oryza sativa was grown in culture solution containing two N levels (0 and 60mg NL-1) or two P levels (0 and 8mg PL-1). Shoot extracts, root extracts, and root exudates were obtained from the rice plants 5 and 15days after transplanting and their metabolites were determined by capillary electrophoresis/time-of-flight mass spectrometry. Shoot N concentration and dry weight of rice plants grown at -N level were lower than those of plants grown at +N level. Shoot P concentration and dry weight of rice plants grown at -P level were lower than those of plants grown at +P level. One hundred and thirty-two, 127, and 98 metabolites were identified in shoot extracts, root extracts, and root exudates, respectively, at the two N levels. One hundred and thirty-two, 128, and 99 metabolites were identified in shoot extracts, root extracts, and root exudates, respectively, at the two P levels. Seventy-seven percent of the metabolites were exuded to the rhizosphere. The concentrations of betaine, gamma-aminobutyric acid, and glutarate in root exudates were higher at both -N and -P levels than at their respective high levels. The concentration of spermidine in root exudates was lower at both -N and -P levels than at their respective high levels. The concentrations of the other metabolites in root exudates were affected differently by plant N or P status. These results suggest that rice roots actively release many metabolites in response to N and P deficiency.
机译:根出渗出物来自植物代谢物,其组成受植物营养状况的影响。矿物营养素(例如氮气(N)和磷(P)的缺乏强烈影响植物代谢物的类型和量。我们应用了代谢物分析技术,以调查N和P缺乏的水稻植物的根部渗出物。 Oryza sativa在含有两种N水平(0和60mg -1)或两种P水平(0和8mg PL-1)的培养溶液中生长。在移植后从水稻植物5和15日获得射击提取物,根提取物和根渗出物,并通过毛细管电泳/飞行时间质谱法测定它们的代谢物。在-N水平生长的水稻植物的射击N浓度和干重低于+ n水平的植物。在-P水平上生长的水稻植物的芽P浓度和干重低于+ P水平生长的植物。在两种水平分别在芽提取物,根提取物和根部渗出物中鉴定了一百三十二,127和98个代谢物。在两个P水平下分别在芽提取物,根提取物和根部渗出中鉴定了一百三十二,128和99代谢物。将七十七个代谢物渗出到根际。甜菜碱,γ-氨基丁酸和根部渗出物中的浓度高于-N和-P水平,比在各自的高水平下较高。根除渗透物中的氟胺的浓度在-N和-P水平下较低,而不是它们各自的高水平。根除渗漏物中其他代谢物的浓度因植物N或P状态而受到不同的影响。这些结果表明,稻谷响应N和P缺乏积极释放许多代谢物。

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