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Meeting the challenge of developing food crops with improved nutritional quality and food safety: leveraging proteomics and related omics techniques

机译:迎接营养质量和食品安全提高粮食作物挑战:利用蛋白质组学和相关的OMICS技术

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Eliminating malnutrition remains an imminent priority in our efforts to achieve food security and providing adequate calories, proteins, and micronutrients to the growing world population. Malnutrition may be attributed to socio-economic factors (poverty and limited accessibility to nutritional food), dietary preferences, inherent nutrient profiles of traditional food crops, and to a combination of all such factors. Modern advancements in omics technology have made it possible to reliably predict, diagnose, and suggest ways to remedy the low protein content and bioavailability of key micronutrients in food crops. In this review, we briefly describe how proteomics techniques can potentially be used for improving the nutrient profile of major crops, through high throughput multiplexed assays. Food safety is another important issue where proteomics and related platforms can offer solution for absolute quantitation of food allergens and mycotoxins present in the plant-based food. The purpose of the present review is to discuss the proteomic-based strategies in food crops to meet the challenges of overcoming malnutrition throughout the world.
机译:消除营养不良仍然是我们努力实现粮食安全并为不断增长的世界人口提供足够的卡路里,蛋白质和微量营养素的迫切优先事项。营养不良可能归因于社会经济因素(贫困和有限的营养食品可达性),膳食偏好,传统食物作物的固有营养型材,以及所有这些因素的组合。 OMICS技术的现代进步使得可以可靠地预测,诊断,并提出措施来弥补粮食作物中关键微量营养素的低蛋白质含量和生物利用度。在该审查中,我们简要描述了蛋白质组学技术如何通过高通量多路复用测定来改善主要作物的营养素型材。食品安全是蛋白质组学和相关平台的另一个重要问题,可以为食物过敏原和植物食物中存在的食物过敏原和霉菌毒素提供解决方案。本综述的目的是讨论粮食作物中基于蛋白质组学的策略,以应对全世界克服营养不良的挑战。

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