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Many rivers to cross: the journey of zinc from soil to seed

机译:许多河流要穿越:锌从土壤到种子的旅程

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摘要

An important goal of micronutrient biofortification is to enhance the amount of bioavailable zinc in the edible seed of cereals and more specifically in the endosperm. The picture is starting to emerge for how zinc is translocated from the soil through the mother plant to the developing seed. On this journey, zinc is transported from symplast to symplast via multiple apoplastic spaces. During each step, zinc is imported into a symplast before it is exported again. Cellular import and export of zinc requires passage through biological membranes, which makes membrane-bound transporters of zinc especially interesting as potential transport bottlenecks. Inside the cell, zinc can be imported into or exported out of organelles by other transporters. The function of several membrane proteins involved in the transport of zinc across the tonoplast, chloroplast or plasma membranes are currently known. These include members of the ZIP (ZRT-IRT-like Protein), and MTP (Metal Tolerance Protein) and heavy metal ATPase (HMA) families. An important player in the transport process is the ligand nicotianamine that binds zinc to increase its solubility in living cells and in this way buffers the intracellular zinc concentration.
机译:微量营养素生物强化的一个重要目标是增加谷物的可食用种子中,尤其是胚乳中可生物利用的锌的量。关于锌如何从土壤通过母体植物转移到发育中的种子的图片开始出现。在此过程中,锌通过多个质外体空间从共质体转运到共质体。在每个步骤中,将锌导入共轭塑料中,然后再次导出。锌的细胞进出口需要通过生物膜,这使得锌与膜结合的转运蛋白成为潜在的转运瓶颈尤为有趣。在细胞内部,锌可以被其他转运蛋白导入或导出细胞器。目前已知几种锌蛋白跨过液泡膜,叶绿体或质膜转运的功能。其中包括ZIP(ZRT-IRT样蛋白),MTP(金属耐受蛋白)和重金属ATPase(HMA)家族的成员。在运输过程中的重要角色是配体烟碱胺,其结合锌以增加其在活细胞中的溶解度,从而缓冲细胞内锌的浓度。

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