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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Boron isotope variability related to boron speciation (change during uptake and transport) in bell pepper plants and SI traceable n(B-11)/n(B-10) ratios for plant reference materials
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Boron isotope variability related to boron speciation (change during uptake and transport) in bell pepper plants and SI traceable n(B-11)/n(B-10) ratios for plant reference materials

机译:硼同位素与硼杂种(摄取和运输过程中的变化)有变异性,甜椒植物和植物参考资料的Si可追踪N(B-11)/ N(B-10)比率

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Rationale Boron (B) is an essential micronutrient in plants and its isotope variations are used to gain insights into plant metabolism, which is important for crop plant cultivation. B isotope variations were used to trace intra-plant fractionation mechanisms in response to the B concentration in the irrigation water spanning the range from B depletion to toxic levels. Methods A fully validated analytical procedure based on multi-collector inductively coupled plasma mass spectrometry (MC-ICP-MS), sample decomposition and B matrix separation was applied to study B isotope fractionation. The validation was accomplished by establishing a complete uncertainty budget and by applying reference materials, yielding expanded measurement uncertainties of 0.8 parts per thousand for pure boric acid solutions and <= 1.5 parts per thousand for processed samples. With this validated procedure SI traceable B isotope amount ratios were determined in plant reference materials for the first time. Results The B isotope compositions of irrigation water and bell pepper samples suggest passive diffusion of the heavy B-11 isotope into the roots during low to high B concentrations while uptake of the light B-10 isotope was promoted during B depletion, probably by active processes. A systematic enrichment of the heavy B-11 isotope in higher located plant parts was observed (average Delta B-11(leaf-roots) = 20.3 +/- 2.8 parts per thousand (1 SD)), possibly by a facilitated transport of the heavy B-11 isotope to growing meristems by B transporters. Conclusions The B isotopes can be used to identify plant metabolism in response to the B concentration in the irrigation water and during intra-plant B transfer. The large B isotope fractionation within the plants demonstrates the importance of biological B cycling for the global B cycle.
机译:理由硼(B)是植物中必需的微量营养素,其同位素变异用于进入植物代谢的见解,这对于作物植物培养很重要。 B同位素变化用于追踪植物内分级机制响应于跨越B耗尽到毒性水平的灌溉水中的B浓度。方法采用基于多聚集体耦合耦合等离子体质谱(MC-ICP-MS),样品分解和B基质分离的全验证分析过程研究B同位素分馏。通过建立完整的不确定性预算和应用参考资料来实现验证,从纯硼酸溶液产生0.8份0.8份均为0.8份的测量不确定性,并为加工样品均为每千份。通过该验证的步骤,第一次在植物参考材料中测定Si可追踪的B同位素量比。结果灌溉水和甜椒样品的B同位素组成表明,在低至高B浓度期间,在低至高B浓度期间,在B耗水期间促进了光B-10同位素的吸收,可能通过活性方法,在低至高B浓度下被动扩散。 。观察到较高位于植物部件中重型B-11同位素的系统富集(平均ΔB-11(叶子)= 20.3 +/- 2.8份每千(1 SD)),可能是通过促进的运输重的B-11同位素到B通过B转运仪生长的商品。结论B同位素可用于鉴定植物代谢响应于灌溉水中的B浓度和植物内B转移。植物内的大B同位素分馏证明了全球B循环的生物B循环的重要性。

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