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Contribution of arbuscular mycorrhizal symbiosis to in vitro root metal uptake: from trace to toxic metal conditions

机译:丛枝菌根共生对体外根金属吸收的贡献:从微量到有毒金属状况

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This in-vitro study investigated the role of arbuscular mycorrhizal (AM) symbiosis in root metal acquisition and stress tolerance from two experiments using a carrot root-organ culture system, and involving the essential micronutrient zinc as a typical metal contaminant. We demonstrated that the AM symbiosis plays a dual role in root metal acquisition by increasing nutrient uptake via mycorrhizal "enhanced uptake" at low (trace) metal concentrations in the growth medium, but then lessening the uptake through "metal-binding" processes at high (toxic) concentrations. Furthermore, we also observed the relative contribution of hyphal uptake and translocation to roots, which led us to suggest that the enhanced uptake and metal-binding processes likely occur simultaneously and (or) independently. Ultimately, symptoms of metal toxicity toward both the roots and AM fungi at the highest Zn exposure concentrations was observed. From this finding, a critical toxicity burden likely exists arising from conditions ranging from trace to toxic metal extremes.
机译:这项体外研究通过使用胡萝卜根器官培养系统的两次实验研究了丛枝菌根(AM)共生在根金属获取和胁迫耐受性中的作用,其中涉及必需的微量营养素锌作为典型的金属污染物。我们证明了AM共生在根金属的获取中起着双重作用,其通过在生长培养基中低(痕量)金属浓度下通过菌根“增强吸收”来增加养分吸收,然后在高温下通过“金属结合”过程来减少吸收。 (有毒)浓度。此外,我们还观察到菌丝吸收和易位对根的相对贡献,这促使我们提出增强的吸收和金属结合过程可能同时发生和(或)独立发生。最终,在最高的锌暴露浓度下,观察到对根和AM真菌均具有金属毒性的症状。根据该发现,可能存在严重的毒性负担,其条件可能从痕量到极端的有毒金属。

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