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The multiple facets of root iron reduction

机译:根铁还原的多个方面

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The biological significance of iron (Fe) is based on its propensity to oscillate between the ferric and ferrous forms, a transition that also affects its phyto-availability in soils. With the exception of grasses, Fe3+ is unavailable to plants. Most angiosperms employ a reduction-based Fe uptake mechanism, which relies on enzymatic reduction of ferric iron as an obligatory, rate-limiting step prior to uptake. This system functions optimally in acidic soils. Calcicole plants are, however, exposed to environments that are alkaline and/or have suboptimal availability of phosphorous, conditions under which the enzymatic reduction mechanism ceases to work effectively. We propose that auxiliary, non-enzymatic Fe reduction can be of critical importance for conferring fitness to plants thriving in alkaline soils with low bioavailability of Fe and/or phosphorus.
机译:铁(Fe)的生物学意义基于其在铁和黑色形式之间振荡的倾向,这也影响了土壤中的植物植物可用性的过渡。 除草外,Fe3 +无法植物。 大多数血管培养物采用基于还原的Fe摄取机制,依赖于在摄取前的酶铁铁作为义务的速率限制步骤。 该系统在酸性土壤中最佳地发挥作用。 然而,钙硅植物暴露于碱性的环境和/或具有磷的环境,其中酶促减少机制有效地运作的条件。 我们提出辅助,非酶促Fe减少可能对赋予碱性土壤的植物健康至关重要,其具有低生物利用度的Fe和/或磷。

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