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首页> 外文期刊>OMICS: A journal of integrative biology >Genome-Environment Interactions and Prospective Technology Assessment: Evolution from Pharmacogenomics to Nutrigenomics and Ecogenomics
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Genome-Environment Interactions and Prospective Technology Assessment: Evolution from Pharmacogenomics to Nutrigenomics and Ecogenomics

机译:Genome-Environment交互和前瞻性技术评估:进化药物基因组学营养基因组学和生态基因

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摘要

The relationships between food, nutrition science, and health outcomes have been mapped over the past century. Genomic variation among individuals and populations is a new factor that enriches and challenges our understanding of these complex relationships. Hence, the confluence of nutritional science and genomics-nutrigenomics- was the focus of the OMICS: A Journal of Integrative Biology in December 2008 (Part 1). The 2009 Special Issue (Part 2) concludes the analysis of nutrigenomics research and innovations. Together, these two issues expand the scope and depth of critical scholarship in nutrigenomics, in keeping with an integrated multidisciplinary analysis across the bioscience, omics technology, social, ethical, intellectual property and policy dimensions. Historically, the field of pharmacogenetics provided the first examples of specifically identifiable gene variants predisposing to unexpected responses to drugs since the 1950s. Brewer coined the term ecogenetics in 1971 to broaden the concept of gene-environment interactions from drugs and nutrition to include environmental agents in general. In the mid-1990s, introduction of high-throughput technologies led to the terms pharmacogenomics, nutrigenomics and ecogenomics to describe, respectively, the contribution of genomic variability to differential responses to drugs, food, and environment defined in the broadest sense. The distinctions, if any, between these newer fields (e.g., nutrigenomics) and their predecessors (e.g., nutrigenetics) remain to be delineated. For nutrigenomics, its reliance on genome-wide analyses may lead to detection of new biological mechanisms governing host response to food. Recognizing "genome-environment interactions" as the conceptual thread that connects and runs through pharmacogenomics, nutrigenomics, and ecogenomics may contribute toward anticipatory governance and prospective real-time analysis of these omics fields. Such real-time analysis of omics technologies and innovat
机译:食物之间的关系,营养科学,和健康结果已经映射了过去的世纪。丰富和和人口是一个新的因素我们理解这些复杂的挑战的关系。营养科学和genomics-nutrigenomics -组学的重点:杂志吗2008年12月综合生物学(第1部分)。2009年特刊(第2部分)总结了营养基因组学研究和分析创新。关键奖学金的广度和深度营养基因组学,一个集成的多学科分析在生物科学,组学技术、社会、伦理、知识财产和政策维度。药物基因学领域提供了第一个专门识别基因的例子变异引起意想不到的反应自1950年代以来的药物。1971年的生态遗传学扩大的概念从药物和基因-环境相互作用营养包括环境代理将军。高通量技术条款药物基因组学、营养基因组学和生态基因分别描述的贡献基因组变化微分反应药品、食品和环境中定义广泛的意义。这些更新的字段(如营养基因组学)他们的前任(例如,nutrigenetics)依然存在划定。在全基因组分析可能导致检测新的生物机制管理主机响应食物。互动”的概念上的线程连接和贯穿药物基因组学,营养基因组学、生态基因可能是重要原因向预期的治理和前瞻性实时分析这些组学领域。组学技术和实时分析

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