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Knowledge gaps in feeding physiology, microbiome and behaviour of insects for food and feed: overcoming barriers to advancing insect-rearing through interdisciplinarity, standardisation, and emerging technologies

  • Daniele Bruno
  • , Jordan P P. Cuff
  • , Christina Adamaki-Sotiraki
  • , Olga Ameixa
  • , Christos G G. Athanassiou
  • , Soumaya Boukrouh
  • , Felix Castellanos
  • , Marco Gebiola
  • , Jérémy B B. Guillaume
  • , Olaleru Ibikunle
  • , Thomas Klammsteiner
  • , Dennis Oonincx
  • , Carlotta Savio
  • , Nathaniel A A. Sibinga
  • , Gianluca Tettamanti
  • , Itai Opatovsky

Research output: Contribution to journalLetterpeer-review

1 Scopus citations

Abstract

The mass rearing of insects for food and feed has emerged as a promising solution to food insecurity, protein production and waste valorisation. While outcomes such as growth and feed conversion efficiency have been examined for mass reared insects, the mechanisms underpinning these outcomes are poorly understood. To optimise the rearing of insects for food and feed and build towards efficient, scalable and productive systems, we must first therefore understand the mechanisms driving productivity and efficiency in common target species. By integrating emerging technologies across disciplines, we can begin to characterise these mechanisms to guide the optimisation of robust and standardised systems for efficient and scalable food and feed production. In this article, we explore opportunities for integrated and interdisciplinary thinking, and the use of emerging technologies to characterise the feeding physiology, digestive processes, microbiome-driven nutritional effects and behavioural regulation of insects commonly used for food and feed. We identify areas of synergy and interaction across research domains and provide a roadmap and call to action to catalyse uptake of these ideas across research and practice. By realising interdisciplinary integration and implementation of emerging technologies, we believe that an urgently required deeper mechanistic understanding of feeding-related processes is possible. This can, in turn, enable precision nutrition, improve system robustness and ensure consistent product quality.

Original languageEnglish
Pages (from-to)1137-1147
Number of pages11
JournalJournal of Insects as Food and Feed
Volume12
Issue number7
DOIs
StatePublished - 1 May 2026
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 2 - Zero Hunger
    SDG 2 Zero Hunger

Keywords

  • Acheta domesticus
  • Hermetia illucens
  • Tenebrio molitor
  • digestive physiology
  • feeding behaviour
  • microbiome-nutrition interactions

ASJC Scopus subject areas

  • Food Science
  • Insect Science

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