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提高植物性食品中的矿物质含量。

Enhancing mineral content in plant food products.

作者信息

Grusak Michael A

机构信息

US Department of Agriculture, Agricultural Research Service, Children's Nutrition Research Center, Department of Pediatrics, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Am Coll Nutr. 2002 Jun;21(3 Suppl):178S-183S. doi: 10.1080/07315724.2002.10719263.

Abstract

Plant foods can serve as dietary sources of all essential minerals required by humans. Unfortunately, mineral concentrations are low in some plants, especially many staple food crops; thus, efforts are underway to increase the mineral content of these foods as a means to ensure adequate attainment of dietary minerals in all individuals. While these efforts have included classical breeding approaches in the past, it is clear that future progress can be made by utilizing the tools of biotechnology to effect directed changes in plant mineral status. Reviewed are the short- and long-distance mineral transport mechanisms responsible for the root acquisition and whole-plant partitioning of mineral ions in crop plants. This background is used to discuss different transgenic strategies with the potential to enhance mineral content in vegetative and/or reproductive tissues. Due to various constraints imposed by plant transport systems on whole-plant mineral movement, it is argued that modifications designed to increase the supply of minerals to edible organs should have the highest chance for success. Examples of previous efforts to manipulate plant mineral nutrition through the introduction of novel transgenes are presented to demonstrate the utility of these approaches.

摘要

植物性食物可以作为人类所需的所有必需矿物质的膳食来源。不幸的是,某些植物中的矿物质含量较低,尤其是许多主食作物;因此,人们正在努力提高这些食物的矿物质含量,以确保所有人都能充分摄取膳食中的矿物质。虽然过去这些努力包括传统育种方法,但显然未来利用生物技术工具来定向改变植物矿物质状况可以取得进展。本文综述了负责作物根系吸收和全株矿物质离子分配的短距离和长距离矿物质运输机制。以此为背景,讨论了不同的转基因策略,这些策略有可能提高营养组织和/或生殖组织中的矿物质含量。由于植物运输系统对全株矿物质移动施加的各种限制,有人认为旨在增加可食用器官矿物质供应的改良措施成功的机会最大。文中列举了以前通过引入新的转基因来操纵植物矿物质营养的努力实例,以证明这些方法的实用性。

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