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A decade of plant proteomics and mass spectrometry: translation of technical advancements to food security and safety issues

机译:植物蛋白质组学和质谱技术的十年:将技术进步转化为食品安全和安全问题

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摘要

Tremendous progress in plant proteomics driven by mass spectrometry (MS) techniques has been made since 2000 when few proteomics reports were published and plant proteomics was in its infancy. These achievements include the refinement of existing techniques and the search for new techniques to address food security, safety, and health issues. It is projected that in 2050, the world\u27s population will reach 9–12 billion people demanding a food production increase of 34–70% (FAO, 2009) from today\u27s food production. Provision of food in a sustainable and environmentally committed manner for such a demand without threatening natural resources, requires that agricultural production increases significantly and that postharvest handling and food manufacturing systems become more efficient requiring lower energy expenditure, a decrease in postharvest losses, less waste generation and food with longer shelf life. There is also a need to look for alternative protein sources to animal based (i.e., plant based) to be able to fulfill the increase in protein demands by 2050. Thus, plant biology has a critical role to play as a science capable of addressing such challenges. In this review, we discuss proteomics especially MS, as a platform, being utilized in plant biology research for the past 10 years having the potential to expedite the process of understanding plant biology for human benefits. The increasing application of proteomics technologies in food security, analysis, and safety is emphasized in this review. But, we are aware that no unique approach/technology is capable to address the global food issues. Proteomics-generated information/resources must be integrated and correlated with other omics-based approaches, information, and conventional programs to ensure sufficient food and resources for human development now and in the future.
机译:自2000年以来,由蛋白质组学(MS)技术驱动的植物蛋白质组学取得了巨大进展,当时发表的蛋白质组学报告很少,而植物蛋白质组学还处于起步阶段。这些成就包括改进现有技术,并寻求解决食品安全,安全和健康问题的新技术。预计到2050年,世界人口将达到9–120亿,要求从今天的粮食产量增加34–70%(粮农组织,2009年)。在不威胁自然资源的前提下,以可持续和对环境负责的方式提供粮食,而又不威胁自然资源,这就要求农业产量大幅度提高,并且收割后处理和食品生产系统必须提高效率,从而减少能源消耗,减少收获后损失,减少废物产生和具有更长保质期的食物。还需要寻找替代动物来源(即植物来源)的蛋白质来源,以便能够在2050年之前满足蛋白质需求的增长。因此,植物生物学作为能够解决此类问题的科学起着至关重要的作用。挑战。在这篇综述中,我们讨论蛋白质组学,尤其是质谱,作为平台,在过去的10年中被用于植物生物学研究,并有可能加速人们对植物生物学的理解。本文着重强调蛋白质组学技术在食品安全,分析和安全方面的日益广泛的应用。但是,我们知道,没有独特的方法/技术能够解决全球粮食问题。蛋白质组学生成的信息/资源必须与其他基于蛋白质组学的方法,信息和常规计划集成并关联起来,以确保现在和将来为人类发展提供足够的粮食和资源。

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