Department of Food Sciences, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Selangor, Malaysia.
Functional Omics and Bioprocess Development Laboratory, Institute of Biological Sciences, Faculty of Science, Universiti Malaya, Kuala Lumpur, Malaysia.
Front Public Health. 2023 May 11;11:1175509. doi: 10.3389/fpubh.2023.1175509. eCollection 2023.
Numerous generations have been affected by hunger, which still affects hundreds of millions of people worldwide. The hunger crisis is worsening although many efforts have been made to minimize it. Besides that, food waste is one of the critical problems faced by most countries worldwide. It has disrupted the food chain system due to inefficient waste management, while negatively impacting the environment. The majority of the waste is from the food production process, resulting in a net zero production for food manufacturers while also harnessing its potential. Most food production wastes are high in nutritional and functional values, yet most of them end up as low-cost animal feed and plant fertilizers. This review identified key emerging wastes from the production line of mushroom, peanut, and soybean (MPS). These wastes (MPS) provide a new source for food conversion due to their high nutritional content, which contributes to a circular economy in the post-pandemic era and ensures food security. In order to achieve carbon neutrality and effective waste management for the production of alternative foods, biotechnological processes such as digestive, fermentative, and enzymatic conversions are essential. The article provides a narrative action on the critical potential application and challenges of MPS as future foods in the battle against hunger.
数代人都受到饥饿的影响,而全球仍有数亿人饱受饥饿之苦。尽管人们已经做出了许多努力来尽量减少饥饿,但饥饿危机却在加剧。此外,食物浪费也是全球大多数国家面临的一个关键问题。由于废物管理效率低下,它扰乱了食物链系统,对环境产生了负面影响。大部分废物来自于食品生产过程,导致食品制造商的净零生产,同时也利用了其潜力。大多数食品生产废物都具有很高的营养价值和功能性,但其中大部分最终都成为了低成本的动物饲料和植物肥料。本综述确定了蘑菇、花生和大豆(MPS)生产线中的关键新兴废物。由于这些废物(MPS)具有很高的营养价值,为食品转化提供了新的来源,有助于在后疫情时代实现循环经济,确保粮食安全。为了实现生产替代食品的碳中和和有效废物管理,消化、发酵和酶转化等生物技术过程是必不可少的。本文就 MPS 作为未来食物在应对饥饿方面的关键潜在应用和挑战进行了叙述性探讨。