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改良农作物以提高营养价值。

Modifying agricultural crops for improved nutrition.

机构信息

University of California, Systemwide Biotechnology Research and Education Program, Davis, CA 95618, United States.

出版信息

N Biotechnol. 2010 Nov 30;27(5):494-504. doi: 10.1016/j.nbt.2010.07.013. Epub 2010 Jul 21.

Abstract

The first generation of biotechnology products commercialized were crops focusing largely on input agronomic traits whose value was often opaque to consumers. The coming generations of crop plants can be grouped into four broad areas each presenting what, on the surface, may appear as unique challenges and opportunities. The present and future focus is on continuing improvement of agronomic traits such as yield and abiotic stress resistance in addition to the biotic stress tolerance of the present generation; crop plants as biomass feedstocks for biofuels and "bio-synthetics"; value-added output traits such as improved nutrition and food functionality; and plants as production factories for therapeutics and industrial products. From a consumer perspective, the focus on value-added traits, especially improved nutrition, is undoubtedly one of the areas of greatest interest. From a basic nutrition perspective, there is a clear dichotomy in demonstrated need between different regions and socioeconomic groups, the starkest being inappropriate consumption in the developed world and under-nourishment in Less Developed Countries (LDCs). Dramatic increases in the occurrence of obesity and related ailments in affluent regions are in sharp contrast to chronic malnutrition in many LDCs. Both problems require a modified food supply, and the tools of biotechnology have a part to play. Developing plants with improved traits involves overcoming a variety of technical, regulatory and indeed perception hurdles inherent in perceived and real challenges of complex traits modifications. Continuing improvements in molecular and genomic technologies are contributing to the acceleration of product development to produce plants with the appropriate quality traits for the different regions and needs. Crops with improved traits in the pipeline, the evolving technologies and the opportunities and challenges that lie ahead are covered.

摘要

第一代商业化的生物技术产品主要集中在投入农业性状上,其价值对消费者来说往往不透明。未来的作物植物可以分为四个广泛的领域,每个领域都呈现出独特的挑战和机遇。目前和未来的重点是继续改进农业性状,如产量和非生物胁迫抗性,以及本代作物的生物胁迫耐受性;将作物植物作为生物燃料和“生物合成物”的生物质原料;附加值输出性状,如改善营养和食品功能;以及将植物作为治疗和工业产品的生产工厂。从消费者的角度来看,对附加值性状的关注,尤其是改善营养,无疑是最感兴趣的领域之一。从基本营养的角度来看,不同地区和社会经济群体之间存在着明显的需求差异,最明显的是发达国家的消费不当和欠发达国家的营养不良。富裕地区肥胖症和相关疾病的发病率急剧上升,与许多欠发达国家的慢性营养不良形成鲜明对比。这两个问题都需要改变食物供应,而生物技术的工具可以发挥作用。开发具有改良性状的植物涉及克服各种技术、监管,甚至是对复杂性状改良的感知和实际挑战的固有认知障碍。分子和基因组技术的不断改进,有助于加速产品开发,为不同地区和需求生产具有适当质量性状的植物。涵盖了正在研发中的具有改良性状的作物、不断发展的技术,以及未来的机遇和挑战。

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