Rearing substrate impacts growth and macronutrient composition of Hermetia illucens (L.) (Diptera: Stratiomyidae) larvae produced at an industrial scale
1.
Otles, S., Despoudi, S., Bucatariu, C. & Kartal, C. Food waste management, valorization, and sustainability in the food industry. In Food Waste Recovery (ed. Galanakis, C. M.) 3–23 (Academic Press, London, 2015).
Google Scholar
2.
Schieber, A., Stintzing, F. C. & Carle, R. By-products of plant food processing as a source of functional compounds—Recent developments. Trends Food Sci. Technol. 12, 401–413 (2001).
CAS Article Google Scholar
3.
Gowe, C. Review on potential use of fruit and vegetables by-products as a valuable source of natural food additives. Food Sci. Qual. Manag. 45, 47–61 (2015).
Google Scholar
4.
Chia, S. Y. et al. Effects of waste stream combinations from brewing industry on performance of Black soldier fly, Hermetia illucens (Diptera: Stratiomyidae). PeerJ. 6, e5885 (2018).
Article CAS Google Scholar
5.
Newman, P. & Jennings, I. Cities as Sustainable Ecosystems: Principles and Practices (Island Press, Washington, D.C., 2008).
Google Scholar
6.
Lynch, K. M., Steffen, E. J. & Arendt, E. K. Brewers’ spent grain: A review with an emphasis on food and health. J. Inst. Brew. 122, 553–568 (2016).
CAS Article Google Scholar
7.
Bolwig, S., Mark, M. S., Happel, M. K. & Brekke, A. Beyond animal feed?: the valorisation of brewers’ spent grain. In From Waste to Value: Valorisation Pathways for Organic Waste Streams in Circular Bioeconomies (ed. Taylor & Francis) 107–126 (2019).
8.
Malakhova, D. V., Egorova, M. A., Prokudina, L. I., Netrusov, A. I. & Tsavkelova, E. A. The biotransformation of brewer’s spent grain into biogas by anaerobic microbial communities. World J. Microbiol. Biotechnol. 31, 2015–2023 (2015).
CAS Article Google Scholar
9.
Čičková, H., Newton, G. L., Lacy, R. C. & Kozánek, M. The use of fly larvae for organic waste treatment. Waste Manag. 35, 68–80 (2015).
Article CAS Google Scholar
10.
Van Huis, A. Potential of insects as food and feed in assuring food security. Ann. Rev. Entomol. 58, 563–583 (2013).
Article CAS Google Scholar
11.
Oonincx, D. G. A. B., Van Broekhoven, S., Van Huis, A. & van Loon, J. J. A. Feed conversion, survival and development, and composition of four insect species on diets composed of food by-products. PLoS ONE 10, e0144601 (2015).
Article Google Scholar
12.
Wang, Y. S. & Shelomi, M. Review of black soldier fly (Hermetia illucens) as animal feed and human food. Foods. 6, 91 (2017).
Article CAS Google Scholar
13.
Costa-Neto, E. M. Insects as human food: An overview. Amazon. Rev. Antropol. 5, 562–582 (2013).
Google Scholar
14.
Diener, S. et al. Black soldier fly larvae for organic waste treatment–prospects and constraints. In Proceedings, WasteSafe 2011—2nd Int. Conf. on Solid Waste Management in the Developing Countries (eds. Alamgir, M. et al.) 52–59 (2011).
15.
Zhou, F., Tomberlin, J. K., Zheng, L., Yu, Z. & Zhang, J. Developmental and waste reduction plasticity of three black soldier fly strains (Diptera: Stratiomyidae) raised on different livestock manures. J. Med. Entomol. 50, 1224–1230 (2013).
Article Google Scholar
16.
Nguyen, T., Tomberlin, J. K. & Vanlaerhoven, S. Ability of black soldier fly (Diptera: Stratiomyidae) larvae to recycle food waste. Environ. Entomol. 44, 406–410 (2015).
CAS Article Google Scholar
17.
Zheng, L., Li, Q., Zhang, J. & Yu, Z. Double the biodiesel yield: Rearing black soldier fly larvae, Hermetia illucens, on solid residual fraction of restaurant waste after grease extraction for biodiesel production. Renew. Energy. 41, 75–79 (2012).
CAS Article Google Scholar
18.
Webster, C. D. et al. Bio-ag reutilization of distiller’s dried grains with solubles (DDGS) as a substrate for black soldier fly larvae, Hermetia illucens, along with poultry by-product meal and soybean meal, as total replacement of fish meal in diets for Nile tilapia, Oreochromis niloticus.. Aquacult. Nutr. 22, 976–988 (2016).
CAS Article Google Scholar
19.
Lalander, C. et al. Faecal sludge management with the larvae of the black soldier fly (Hermetia illucens)—From a hygiene aspect. Sci. Total Environ. 458, 312–318 (2013).
ADS Article CAS Google Scholar
20.
Banks, I. J., Gibson, W. T. & Cameron, M. M. Growth rates of black soldier fly larvae fed on fresh human faeces and their implication for improving sanitation. Trop. Med. Int. Health. 19, 14–22 (2014).
Article Google Scholar
21.
Barroso, F. G. et al. The potential of various insect species for use as food for fish. Aquaculture 422, 193–201 (2014).
Article Google Scholar
22.
Henry, M., Gasco, L., Piccolo, G. & Fountoulaki, E. Review on the use of insects in the diet of farmed fish: Past and future. Anim. Feed Sci. Technol. 203, 1–22 (2015).
CAS Article Google Scholar
23.
Surendra, K. C., Olivier, R., Tomberlin, J. K., Rajesh Jha, R. & Khanalet, S. K. Bioconversion of organic wastes into biodiesel and animal feed via insect farming. Renew. Energy. 98, 197–202 (2016).
CAS Article Google Scholar
24.
Leong, S. Y., Kutty, S. R. M., Malakahmad, A. & Tan, C. K. Feasibility study of biodiesel production using lipids of Hermetia illucens larva fed with organic waste. Waste Manag. 47, 84–90 (2016).
CAS Article Google Scholar
25.
Li, W. et al. Potential biodiesel and biogas production from corncob by anaerobic fermentation and black soldier fly. Bioresour Technol. 194, 276–282 (2015).
CAS Article Google Scholar
26.
Cammack, J. A. & Tomberlin, J. K. The impact of diet protein and carbohydrate on select life-history traits of the black soldier fly Hermetia illucens (L.) (Diptera: Stratiomyidae). Insects. 8, 56 (2017).
Article Google Scholar
27.
Li, W. et al. Simultaneous utilization of glucose and xylose for lipid accumulation in black soldier fly. Biotechnol. Biofuels. 8, 1–6 (2015).
Article CAS Google Scholar
28.
Soma, D. D. et al. Does mosquito mass-rearing produce an inferior mosquito?. Malar. J. 16, 357 (2017).
Article CAS Google Scholar
29.
Sørensen, J., Addison, M. & Terblanche, J. Mass-rearing of insects for pest management: Challenges, synergies and advances from evolutionary physiology. Crop Prot. 38, 87–94 (2012).
Article Google Scholar
30.
Kuriwada, T., Kumano, N., Shiromoto, K. & Haraguchi, D. Effect of mass rearing on life history traits and inbreeding depression in the sweetpotato weevil (Coleoptera: Brentidae). J. econ. entomol. 103, 1144–1148 (2010).
CAS Article Google Scholar
31.
Zheng, M. L., Zhang, D. J., Damiens, D. D., Yamada, H. & Gilles, J. R. Standard operating procedures for standardized mass rearing of the dengue and chikungunya vectors Aedes aegypti and Aedes albopictus (Diptera: Culicidae)—I—egg quantification. Parasit. Vectors. 8, 42 (2015).
Article Google Scholar
32.
Ghimire, M. N. & Phillips, T. W. Mass rearing of Habrobracon hebetor Say (Hymenoptera: Braconidae) on larvae of the Indian meal moth, Plodia interpunctella (Lepidoptera: Pyralidae): Effects of host density, parasitoid density, and rearing containers. J. Stored Prod. Res. 46, 214–220 (2010).
Article Google Scholar
33.
Chia, S. Y. et al. Threshold temperatures and thermal requirements of black soldier fly Hermetia illucens: Implications for mass production. PLoS ONE 13, 1–26 (2018).
Article CAS Google Scholar
34.
McGill, B. J. Matters of scale. Science 328, 575–576 (2010).
ADS CAS Article Google Scholar
35
Jucker, C., Erba, D., Leonardi, M. G., Lupi, D. & Savoldelli, S. Assessment of vegetable and fruit substrates as potential rearing media for Hermetia illucens (Diptera: Stratiomyidae) larvae. Environ. Entomol. 46, 1415–1423 (2017).
CAS Article Google Scholar
36.
Jucker, C., Leonardi, M. G., Rigamonti, I., Lupi, D. & Savoldelli, S. Brewery’s waste streams as a valuable substrate for Black Soldier Fly Hermetia illucens (Diptera: Stratiomyidae). J. Entomol. Acarol. Res. 51, 8876 (2020).
Article Google Scholar
37.
Nguyen, T. T. X., Tomberlin, J. K. & Vanlaerhoven, S. Influence of resources on Hermetia illucens (Diptera: Stratiomyidae) larval development. J. Med. Entomol. 50, 898–906 (2013).
Article Google Scholar
38.
Barbi, S. et al. Valorization of seasonal agri-food leftovers through insects. Sci. Total Environ. 709, 136209 (2020).
ADS CAS Article Google Scholar
39.
Bava, L. et al. Rearing of Hermetia illucens on different organic by-products: Influence on growth, waste reduction, and environmental impact. Animals 29, 289 (2019).
Article Google Scholar
40.
Meneguz, M. et al. Effect of rearing substrate on growth performance, waste reduction efficiency and chemical composition of black soldier fly (Hermetia illucens) larvae. J. Sci. Food Agric. 98, 5776–5784 (2018).
CAS Article Google Scholar
41.
Slone, D. & Gruner, S. V. Thermoregulation in larval aggregations of carrion-feeding blow flies (Diptera: Calliphoridae). J. Med. Entomol. 44, 516–523 (2007).
CAS Article Google Scholar
42.
Gere, G. Investigations into the laws governing the growth of Hyphantria cunea drury caterpillars. Acta Biol. Hung. 7, 43–72 (1956).
Google Scholar
43.
Long, D. B. Effects of population density on larvae of Lepidoptera. Trans. R. Entomol. Soc. Lond. 104, 543–585 (1953).
Article Google Scholar
44.
Parra Paz, A. S., Carrejo, N. S. & Gómez Rodríguez, C. H. Effects of larval density and feeding rates on the bioconversion of vegetable waste using black soldier fly larvae Hermetia illucens (L.), (Diptera: Stratiomyidae). Waste Biomass Valor. 6, 1059–1065 (2015).
Article Google Scholar
45.
Bonelli, M. et al. Structural and functional characterization of Hermetia illucens larval midgut. Front. Physiol. 10, 204 (2019).
Article Google Scholar
46.
Tschirner, M. & Simon, A. Influence of different growing substrates and processing on the nutrient composition of black soldier fly larvae destined for animal feed. J. Insect Food Feed. 1, 249–259 (2015).
Article Google Scholar
47.
Gobbi, P., Martinez Sanchez, A. & Rojo, S. The effects of larval diet on adult life history traits of the black soldier fly, Hermetia illucens [Diptera: Stratiomyidae]. Eur. J. Entomol. 110, 461–468. https://doi.org/10.14411/eje.2013.061 (2013).
Article Google Scholar
48.
Kim, E., Park, J., Lee, S. & Kim, Y. Identification and physiological characters of intestinal bacteria of the black soldier fly, Hermetia illucens. Korean J. Appl. Entomol. 53, 15–26 (2014).
Article Google Scholar
49.
Spranghers, T. et al. Nutritional composition of black soldier fly (Hermetia illucens) prepupae reared on different organic waste substrates. J. Sci. Food Agric. 97, 2594–2600 (2017).
CAS Article Google Scholar
50.
Inagaki, S. & Yamashita, O. Metabolic shift from lipogenesis to glycogenesis in the last instar larval fat body of the silkworm, Bombyx mori. Insect Biochem. 16, 327–331 (1986).
CAS Article Google Scholar
51.
Tomberlin, J. K., Sheppard, D. C. & Joyce, J. A. Selected life-history traits of black soldier flies (Diptera: Stratiomyidae) reared on three artificial diets. Ann. Entomol. Soc. Am. 95, 379–386 (2002).
Article Google Scholar
52.
Bosch, G. et al. Standardisation of quantitative resource conversion studies with black soldier fly larvae. J. Insects Food Feed. 6, 95–109 (2020).
Article Google Scholar
53.
Ståhls, G. et al. The puzzling mitochondrial phylogeography of the black soldier fly (Hermetia illucens), the commercially most important insect protein species. BMC Evol. Biol. 20, 60 (2020).
Article Google Scholar
54.
Zhan, S. et al. Genomic landscape and genetic manipulation of the black soldier fly Hermetia illucens, a natural waste recycler. Cell. Res. 30, 50–60 (2019).
Article Google Scholar
55.
Barragan-Fonseca, K. B., Dicke, M. & van Loon, J. J. A. Nutritional value of the black soldier fly (Hermetia illucens L.) and its suitability as animal feed—A review. J. Insects Food Feed 1, 1–16 (2017).
Google Scholar
56.
Booth, D. C. & Sheppard, C. Oviposition of the black soldier fly, Hermetia Illucens (Diptera: Stratiomyidae): Eggs, masses, timing, and site characteristics. Environ. Entomol. 13, 421–423 (1984).
Article Google Scholar
57.
Hogsette, J. A. New diets for production of house flies and stable flies (Diptera: Muscidae) in the laboratory. J. Econ. Entomol. 85, 2291–2294 (1992).
CAS Article Google Scholar
58.
Loveridge, J. P. Age and the changes in water and fat content of adult laboratory- reared Locusta migratoria migratorioides. Rhod. J. Agric. Res. 11, 131–143 (1973).
Google Scholar
59.
Sokal, R. R. & Rohlf, F. J. Biometry: The Principles and Practice of Statistics in Biological Research 887 (W.H. Freeman & Company, New York, 1995).
Google Scholar More
