Novel Experimental Methods for the Investigation of Hermetia illucens (Diptera: Stratiomyidae) Larvae

Author:

Gold Moritz12,Binggeli Melanie1,Kurt Fabienne3,de Wouters Tomas3,Reichlin Markus3,Zurbrügg Christian2,Mathys Alexander1,Kreuzer Michael4

Affiliation:

1. ETH Zurich: Swiss Federal Institute of Technology Zurich, Laboratory of Sustainable Food Processing, Zurich, Switzerland

2. Eawag: Swiss Federal Institute of Aquatic Science and Technology, Department Sanitation, Water and Solid Waste for Development (Sandec), Dübendorf, Switzerland

3. PharmaBiome AG, Zurich, Switzerland

4. ETH Zurich, Institute of Agricultural Sciences, Zurich, Switzerland

Abstract

Abstract Large-scale insect rearing for food and feed production can be improved by understanding diet digestion and host–microbe interactions. To examine these processes in black soldier fly (Hermetia illucens L.; Diptera: Stratiomyidae) larvae, two protocols were developed. Protocol 1 describes a method to produce viable, sterile black soldier fly larvae and a gentle method for diet sterilization. Sterile black soldier fly larvae can be used to study the diverse role of microbes in larval development. Nutrient requirements of sterile black soldier fly larvae are met only through diet. Viable sterile black soldier fly larvae were consistently generated using a four-step treatment with alternating immersions of eggs for 2 min each in ethanol (70%) and sodium hypochlorite (0.6%), over two cycles. A nonthermal method of diet sterilization, namely high-energy electron beam (HEEB) treatment, was introduced. Subsequently, growth of sterile black soldier fly larvae was observed on the HEEB-treated diets (40, 60, and 40% of replicates with poultry feed, liver pie, and an artificial diet, respectively) but not on autoclaved diets. In Protocol 2, we propose a novel method to collect frass from individual larvae. We then measured the metabolites in frass, using high-pressure liquid chromatography. Results on metabolites confirmed the influence of digestion. For instance, succinate increased from 1 to 2 and 7 μmol/g sample from diet to gut homogenate and frass, respectively. The collection method is a promising tool to estimate the diet and nutrient requirements of black soldier fly larvae, thus increasing the performance and reliability of black soldier fly larvae rearing. We discuss in detail the possible applications and limitations of our methods in black soldier fly larvae research.

Funder

Sawiris Foundation for Social Development

ETH Zurich Foundation

ETH Global

Bühler AG

Horst Adelmann

Peter Bigler

Lia Baumann

Richard Fankhauser

Carmen Kunz

Robert Spiess

Jacqueline Traber

Marianne Zimmermann

Publisher

Oxford University Press (OUP)

Subject

Insect Science,General Medicine

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