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Differences in the relationship between metabolomic and ionomic traits of Quercus variabilis growing at contrasting geologic-phosphorus sites in subtropics

机译:亚热带地质 - 磷位点生长在亚热带地质 - 磷位点的代谢组和离子性状关系的差异

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AimsSubtropical ecosystems are generally characterized by phosphorus (P)-deficient soils; however, extreme P-rich soils develop on phosphate rocks. We aimed to integrate metabolomic and ionomic analyses to survey how in situ trees adaptively respond to such contrasting P soils.MethodsGas (GC-MS) or liquid (LC-MS) chromatography-mass spectrometry and inductively coupled plasma-optical emission spectrometer (ICP-OES) were used to analyze leaf metabolome and ionome of Quercus variabilis, which grew at two geologic P-rich and P-deficient sites in subtropical China.ResultsTwo Q. variabilis populations were significantly discriminated in terms of metabolome and ionome, with major contributions from 25 identified metabolites (e.g. sugars and P-containing compounds) and P and four other chemical elements. And of these 25 metabolites, orthophosphate was predominant in influencing the variation in the metabolomes of Q. variabilis between the two P-type sites. Moreover, orthophosphate was correlated with leaf P (r=0.85, p0.001), while leaf P was significantly influenced only by soil resident P at the P-rich site. Furthermore, the metabolic pathway analysis indicated four critical metabolic pathways: galactose metabolism, amino sugar and nucleotide sugar metabolism, glyoxylate and dicarboxylate metabolism, fructose and mannose metabolism.ConclusionsThese findings suggested that there were distinct ionome-metabolome interactions in Q. variabilis populations, between P-rich and P-deficient sites, which contributed to novel insights into how plants interactively adapt to P-limiting soils.
机译:AIMSsubtropical生态系统通常具有磷(P) - 缺陷的土壤;然而,富含磷酸盐岩石的极端富有的土壤。我们旨在将代原和离子分析整合到调查原位树如何适应性地响应这种对比P污染。方法(GC-MS)或液体(LC-MS)色谱 - 质谱和电感耦合等离子体光发射光谱仪(ICP- OES)用于分析叶片代谢和栎属瓦尔巴霉菌的离子,其在亚热带亚热带地区的两个地质P-富含和P缺陷位点。Q.Resultstwo Q..Variabilis群体在代谢和离子方面受到显着歧视,具有主要贡献25确定的代谢物(例如糖和含糖和糖化合物)和P和另外四种化学元素。其中,在这25个代谢物中,正磷酸盐在影响两种P型位点之间的Q.Variabilis的代谢物的变异时占主导地位。此外,正磷酸盐与叶P(r = 0.85,P <0.001)相关,而叶P仅受到P-Rich遗址的土壤驻地P显着影响。此外,代谢途径分析表明了四种临界代谢途径:半乳糖代谢,氨基糖和核苷酸代谢,糖氧化合物和二羧酸酯代谢,果糖和甘露糖代谢。结论,结果表明,Q.VariaBilis种群中存在明显的离子组代谢相互作用P-富含和P缺陷位点,这导致了对植物如何交互地适应P限制性土壤的洞察力。

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