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Tracing Cationic Nutrients from Xylem into Stem Tissue of French Bean by Stable Isotope Tracers and Cryo-Secondary Ion Mass Spectrometry

机译:稳定同位素示踪和低温次离子质谱法从木质部木质素中追踪阳离子营养元素

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摘要

Fluxes of mineral nutrients in the xylem are strongly influenced by interactions with the surrounding stem tissues and are probably regulated by them. Toward a mechanistic understanding of these interactions, we applied stable isotope tracers of magnesium, potassium, and calcium continuously to the transpiration stream of cut bean (Phaseolus vulgaris) shoots to study their radial exchange at the cell and tissue level with stem tissues between pith and phloem. For isotope localization, we combined sample preparation with secondary ion mass spectrometry in a completely cryogenic workflow. After 20 min of application, tracers were readily detectable to various degrees in all tissues. The xylem parenchyma near the vessels exchanged freely with the vessels, its nutrient elements reaching a steady state of strong exchange with elements in the vessels within 20 min, mainly via apoplastic pathways. A slow exchange between vessels and cambium and phloem suggested that they are separated from the xylem, parenchyma, and pith, possibly by an apoplastic barrier to diffusion for nutrients (as for carbohydrates). There was little difference in these distributions when tracers were applied directly to intact xylem via a microcapillary, suggesting that xylem tension had little effect on radial exchange of these nutrients and that their movement was mainly diffusive.
机译:木质部中矿物质养分的通量受与周围茎组织相互作用的强烈影响,并可能受到它们的调控。为了对这些相互作用进行机械理解,我们将稳定的镁,钾和钙同位素示踪剂连续应用于切豆(菜豆)的蒸腾流中,以研究它们在细胞和组织水平上与髓和茎之间的干组织之间的径向交换。韧皮部。对于同位素定位,我们在完全低温的工作流程中将样品制备与二次离子质谱相结合。施用20分钟后,可以轻松地在所有组织中检测到不同程度的示踪剂。血管附近的木质部薄壁组织可与血管自由交换,其营养元素主要通过质外途径在20分钟内达到与血管中元素的强交换的稳定状态。血管与形成层和韧皮部之间的缓慢交换表明它们可能与木质部,薄壁组织和髓分离,可能是通过质外屏障阻碍了营养物质(如碳水化合物)的扩散。当示踪剂通过微毛细管直接应用于完整的木质部时,这些分布几乎没有差异,这表明木质部张力对这些养分的径向交换几乎没有影响,并且它们的运动主要是扩散性的。

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