Affiliation:
1. Zoological Institute, Russian Academy of Sciences, Universitetskaya 1, 199034 St. Petersburg, Russia
2. All-Russia Institute of Plant Protection, Russian Academy of Sciences, Podbelskogo 3, 196608 St. Petersburg, Russia
Abstract
Feeding on mixed, alternating, or changing diets often favor insect development. With the aim to optimize mass rearing and use for the biological control of insect pests, we investigated the effects of various combinations of high-quality (the green peach aphid Myzus persicae) and low-quality (eggs of the grain moth Sitotroga cerealella) foods on the larval development of a predatory ladybird Cheilomenes propinqua. In the first experiment, eggs and aphids were mixed in different proportions; in the second experiment, larvae switched from feeding on aphids to feeding on eggs. Although the beneficial additive effect of mixed foods was detected in some treatments with limited diets, feeding on various combinations of eggs with aphids never resulted in higher survival, faster development, or a larger size of emerging adults than those observed for feeding on unlimited amounts of aphids. For the practice of biological control, we conclude that, if necessary (for example, in the case of temporary shortage or a lack of aphids in mass rearing facilities or in the case of preventing release of C. propinqua adults in greenhouses), C. propinqua larvae can be fed with grain moth eggs by replacing, mixing, or alternating with aphids, although this will inevitably result in a proportional decrease in pre-adult survival, rate of development, weight, and size of the emerging adults. On the other hand, even a minimal addition of aphids can have a substantial positive effect on larvae fed with grain moth eggs.
Funder
Ministry of Sciences and High Education of the Russian Federation
Reference89 articles.
1. Van Lenteren, J.C. (2023, May 25). IOBC Internet Book of Biological Control, Version 6. Available online: https://www.iobc-global.org/publications_iobc_internet_book_of_biological_control.html.
2. Gullino, M.L., Albajes, R., and Nicot, P.C. (2020). Biological control agents for control of pests in greenhouses. Integrated Pest and Disease Management in Greenhouse Crops, Springer.
3. Mason, P.G. (2021). Augmentative Biological Control. Biological Control: Global Impacts, Challenges and Future Directions of Pest Management, Csiro Publishing.
4. Benefits and limitations of factitious prey and artificial diets on life parameters of predatory beetles, bugs, and lacewings: A mini-review;Riddick;BioControl,2009
5. Nutrition and culture of entomophagous insects;Thompson;Annu. Rev. Entomol.,1999