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New insights into ferritin synthesis and function highlight a link between iron homeostasis and oxidative stress in plants

机译:铁蛋白合成和功能的新见解突出了植物体内铁稳态与氧化应激之间的联系

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摘要

BackgroundIron is an essential element for both plant productivity and nutritional quality. Improving plant iron content was attempted through genetic engineering of plants overexpressing ferritins. However, both the roles of these proteins in plant physiology, and the mechanisms involved in the regulation of their expression are largely unknown. Although the structure of ferritins is highly conserved between plants and animals, their cellular localization differs. Furthermore, regulation of ferritin gene expression in response to iron excess occurs at the transcriptional level in plants, in contrast to animals which regulate ferritin expression at the translational level.
机译:铁是植物生产力和营养品质的重要元素。通过过表达铁蛋白的植物的基因工程尝试提高植物的铁含量。但是,这些蛋白质在植物生理中的作用以及其表达调控所涉及的机制均不清楚。尽管铁蛋白的结构在动植物之间高度保守,但它们的细胞定位却不同。此外,与在翻译水平上调节铁蛋白表达的动物相反,响应于铁过量的铁蛋白基因表达的调节在植物的转录水平上发生。

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