首页> 外文期刊>Journal of Environmental Radioactivity >Mycorrhizal association of maritime pine, Pinus pinaster, with Rhizopogon roseolus has contrasting effects on the uptake from soil and root-to-shoot transfer of ~(137)Cs, ~(85)Sr and ~(95m)Tc
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Mycorrhizal association of maritime pine, Pinus pinaster, with Rhizopogon roseolus has contrasting effects on the uptake from soil and root-to-shoot transfer of ~(137)Cs, ~(85)Sr and ~(95m)Tc

机译:海洋松,松松与根瘤菌玫瑰菌根的菌根协会对土壤吸收和〜(137)Cs,〜(85)Sr和〜(95m)Tc的根到茎转移具有相反的影响

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摘要

The beneficial role of mycorrhizal association on plant nutrition and water supply is well-known, however, very little information exists with respect to the availability of radionuclides. We have measured the effect of controlled mycorrhizal association on the root uptake from soil and accumulation in leaves of three radionuclides. The radionuclides have contrasting chemical and biological properties: Cs is strongly adsorbed on soil, has no biological role and is a close analogue of potassium; Sr is less strongly adsorbed on soil and behaves very similarly to calcium; and Tc is very mobile in soil as pertechnetate, but immobilised when reduced to Tc(IV), it is also considered to be easily assimilated by biological systems. We found that mycorrhizal association had no effect on root-to-needle transfer of Cs, but increased root uptake and that this increase could not be explained by improved potassium nutrition. In contrast, the symbiotic relation decreased Tc soil-to-needle transfer, but this resulted from complex dynamics of root uptake and rapid immobilisation of Tc in soil. No effect of mycorrhizal association on Sr, like its stable analogue Ca, was observed. The addition of a phytotoxic metal, Cu, inhibited mycorrhizal association, thus eliminating the effects observed for non-contaminated plant-fungus couples, but had no additional effect on radionuclide dynamics.
机译:菌根协会对植物营养和水供应的有益作用是众所周知的,但是,关于放射性核素的可用性的信息很少。我们测量了控制的菌根结合对土壤根吸收和三种放射性核素在叶片中积累的影响。放射性核素具有相反的化学和生物学特性:Cs强烈吸附在土壤上,没有生物学作用,并且与钾非常相似。 Sr在土壤上的吸附较弱,其行为与钙非常相似。 Tc在高as酸盐中在土壤中极易移动,但在还原为Tc(IV)时被固定,也被认为容易被生物系统吸收。我们发现,菌根结合对Cs的从根到针的转移没有影响,但是增加了根的吸收,并且不能通过改善钾营养来解释这种增加。相反,共生关系降低了土壤中Tc到针的转移,但这是由于根吸收的复杂动力学和土壤中Tc的快速固定所致。没有观察到菌根结合对Sr的影响,就像它的稳定类似物Ca一样。添加一种植物毒性金属Cu可以抑制菌根结合,从而消除了未受污染的植物真菌对所观察到的影响,但对放射性核素动力学没有其他影响。

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