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Detection and localization of aluminum and heavy metals in ectomycorrhizal Norway spruce seedlings

机译:外生菌根挪威云杉幼苗中铝和重金属的检测和定位

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Norway spruce seedlings colonized with Hebeloma crustuliniforme were grown in growth pouches. After formation of ectomy- corrhizas, the seedlings were exposed to Al or the heavy metals Cd, Cu, Ni, or Zn at various concentrations for 5 weeks to estimate the detection limits of metals with X-ray microanalysis in the cryo-scanning electron microscope. When the lowest metal con- centrations (1 mM Al~(3+), 0.1 mM Cd~(2+), 0.2 mM Cu~(2+), 0.5 mM Ni~(2+), 2 mM Zn~(2+) ) were applied, only Al and Zn were detected at low X-ray counts in the ectomycorrhizas. After application of 10-fold higher metal concentrations, distinct metal accumulation patterns were observed. Cd was detected predominantly in the Hartig net, Al and Ni in the Hartig net and in the cell walls of the cortex, and Zn in the Hartig net, the cortical cell walls and the fungal mantle. Cu was not detected at all. By combining X-ray microanalysis with absolute metal concentrations found in the roots, the estimated detection limits of X-ray microanalysis weret Al ≥0.86 mg g~(-1), Cd ≥0.26 mg g~(-1), Ni ≥ 1.30 mg g~(-1), and Zn ≥0.54 mg g~(-1), whereas Cu was not detectable even at root con- centrations of 0.47 mg g~(-1). Treatments with the highest metal concentrations showed high X-ray counts of metals in cells of the stele but reduced concentrations of the macronutrients K, Mg, and P in roots, indicating a possible disturbance of root and ecto- mycorrhizal function.
机译:在生长袋中种植了挪威云杉幼苗,其中形成了甲壳纲铁线虫。形成根除菌后,将幼苗暴露于不同浓度的Al或重金属Cd,Cu,Ni或Zn达5周,以通过低温扫描电子显微镜中的X射线显微分析估算金属的检出限。当最低金属浓度(1 mM Al〜(3 +),0.1 mM Cd〜(2 +),0.2 mM Cu〜(2 +),0.5 mM Ni〜(2 +),2 mM Zn〜(2) +)),在外生菌根中以低X射线计数仅检测到Al和Zn。在施加10倍高的金属浓度后,观察到明显的金属积累模式。镉主要在Hartig网,Hartig网和皮质细胞壁中检测到Al和Ni,在Hartig网,皮质细胞壁和真菌覆盖物中检测到Zn。根本没有检测到Cu。通过将X射线微分析与在根中发现的绝对金属浓度结合起来,X射线微分析的估计检出限为Al≥0.86mg g〜(-1),Cd≥0.26mg g〜(-1),Ni≥1.30毫克毫克〜(-1),锌≥0.54毫克〜(-1),而即使在根浓度为0.47毫克·〜(-1)时也无法检测到铜。最高金属浓度的处理表明,石碑细胞中金属的X射线计数较高,但根部中的大量养分K,Mg和P的浓度降低,这表明可能对根和菌根的功能造成干扰。

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