Mannaa Mohamed, Mansour Abdelaziz, Park Inmyoung, Lee Dae-Weon, Seo Young-Su
Department of Integrated Biological Science, Pusan National University, Busan, 46241, Republic of Korea.
Department of Plant Pathology, Cairo University, Faculty of Agriculture, Giza, 12613, Egypt.
Environ Sci Ecotechnol. 2023 May 21;17:100287. doi: 10.1016/j.ese.2023.100287. eCollection 2024 Jan.
Meeting the demands of the growing population requires increased food and feed production, leading to higher levels of agri-food waste. As this type of waste seriously threatens public health and the environment, novel approaches to waste management should be developed. Insects have been proposed as efficient agents for biorefining waste, producing biomass that can be used for commercial products. However, challenges in achieving optimal outcomes and maximizing beneficial results remain. Microbial symbionts associated with insects are known to have a critical role in the development, fitness, and versatility of insects, and as such, they can be utilized as targets for the optimization of agri-food waste insect-based biorefinery systems. This review discusses insect-based biorefineries, focusing on the agricultural applications of edible insects, mainly as animal feed and organic fertilizers. We also describe the interplay between agri-food waste-utilizing insects and associated microbiota and the microbial contribution in enhancing insect growth, development, and involvement in organic waste bioconversion processes. The potential contribution of insect gut microbiota in eliminating pathogens, toxins, and pollutants and microbe-mediated approaches for enhancing insect growth and the bioconversion of organic waste are also discussed. The present review outlines the benefits of using insects in agri-food and organic waste biorefinery systems, describes the roles of insect-associated microbial symbionts in waste bioconversion processes, and highlights the potential of such biorefinery systems in addressing the current agri-food waste-related challenges.
满足不断增长的人口需求需要增加粮食和饲料产量,这导致农业食品废弃物的产生量增加。由于这类废弃物严重威胁公众健康和环境,因此应开发新的废弃物管理方法。昆虫已被提议作为生物精炼废弃物的有效媒介,生产可用于商业产品的生物质。然而,在实现最佳结果和使有益效果最大化方面仍存在挑战。已知与昆虫相关的微生物共生体在昆虫的发育、适应性和多功能性方面起着关键作用,因此,它们可作为优化基于昆虫的农业食品废弃物生物精炼系统的目标。本综述讨论了基于昆虫的生物精炼,重点关注食用昆虫在农业中的应用,主要是作为动物饲料和有机肥料。我们还描述了利用农业食品废弃物的昆虫与相关微生物群之间的相互作用,以及微生物在促进昆虫生长、发育和参与有机废弃物生物转化过程中的作用。还讨论了昆虫肠道微生物群在消除病原体、毒素和污染物方面的潜在贡献,以及微生物介导的促进昆虫生长和有机废弃物生物转化的方法。本综述概述了在农业食品和有机废弃物生物精炼系统中使用昆虫的好处,描述了与昆虫相关的微生物共生体在废弃物生物转化过程中的作用,并强调了这种生物精炼系统在应对当前与农业食品废弃物相关挑战方面的潜力。