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Product development strategies for foods in the era of molecular biotechnology

机译:分子生物技术时代食品的产品开发策略

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Breakthroughs in science and technology are accelerating development of new products that are impacting our regulatory systems. Genetically modified or bioengineering plant varieties have entered the food supply on a global basis, especially in the U.S. The U.S. Food and Drug Administration regulates on the premise of ‘substantial equivalence’ and has developed premarket notification procedures and voluntary labeling guidelines. Japan's Ministry of Health, Labor and Welfare regulates biotechnology products and has imposed biotechnology labeling regulations. However, the EU continues to be in a regulatory gridlock between member states and has proposed strict traceability and labeling guidelines. These requirements are currently restricting imports of bioengineered foods and are creating an international debate. In contrast to bioengineered plant varieties, to our knowledge, there are no strains of lactic acid bacterial starter cultures on the market that contain rDNA. The majority of strains have been improved via selection and mutagenesis. However, conjugation and electroporation have been used to transfer native lactococcal phage resistance plasmids to industrial strains. In addition, plasmids have been introduced to allow for selection of certain characteristics and then been eliminated by curing. The potential benefits of bioengineered foods are far reaching and are one of the most important opportunities of this century. However, bioengineered foods remain an emotional debate that is affecting world trade.
机译:科学技术的突破正在加速新产品的开发,这些新产品正在影响我们的监管体系。转基因或生物工程植物品种已在全球范围内进入食品供应,特别是在美国。美国食品药品监督管理局在“相当当量”的前提下进行监管,并制定了上市前通知程序和自愿性标签准则。日本厚生劳动省管理生物技术产品,并已实施生物技术标签规定。但是,欧盟仍然处于成员国之间的监管僵局中,并提出了严格的可追溯性和标签准则。这些要求目前限制了生物工程食品的进口,并引起了国际辩论。与生物工程植物品种相反,据我们所知,市场上没有包含rDNA的乳酸菌发酵剂菌株。大多数菌株已通过选择和诱变得到了改善。然而,缀合和电穿孔已被用于将天然乳球菌噬菌体抗性质粒转移至工业菌株。另外,已经引入质粒以允许选择某些特征,然后通过固化消除。生物工程食品的潜在利益是深远的,并且是本世纪最重要的机遇之一。然而,生物工程食品仍然是影响世界贸易的情感辩论。

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