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Recent developments in plant zinc homeostasis and the path toward improved biofortification and phytoremediation programs

机译:植物锌体内平衡的最新进展以及改善生物强化和植物修复计划的途径

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摘要

Zinc (Zn) is an essential micronutrient for all living organisms. Plants serve as a major entry point for this element into the food chain. Zn deficiency has become a widespread nutritional condition, which mirror the inadequate Zn reserves in significant proportion of the earth's arable land. A recent assessment by the World Health Organization revealed that one third of the world's population is at risk of Zn deficiency. To counter this alarming situation, substantial efforts have been made to increase Zn content and availability in staple crops and grains. Nevertheless, the absence of fundamental information has held back progress in this field. Developing a better understanding of how Zn homeostasis is regulated in plants, such as Zn transporters at loading bottlenecks, is of primary interest to biofortification and phytoremediation programs. Many reviews have been published on this subject, and here we briefly summarize the regulation of one limiting step in Zn distribution within plants — the loading of Zn into root xylem.
机译:锌(Zn)是所有活生物体必不可少的微量营养素。植物是该元素进入食物链的主要切入点。缺锌已经成为一种普遍的营养状况,这反映了地球耕地中很大比例的锌储量不足。世界卫生组织最近的一项评估显示,世界三分之一的人口处于缺锌的危险中。为了应对这种令人担忧的情况,已经做出了巨大的努力来增加主粮和谷物中的锌含量和利用率。然而,缺乏基本信息阻碍了这一领域的进展。更好地了解植物体内锌稳态的调控方式,例如装载瓶颈时的锌转运蛋白,是生物强化和植物修复计划的主要兴趣所在。关于该主题的许多评论已经发表,在这里我们简要总结了植物体内锌分布的一个限制步骤的调控-锌在根部木质部中的负载。

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