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Neuropharmacological Manipulation of Restrained and Free-flying Honey Bees, Apis mellifera
Published on: November 26, 2016
Natural extracts as potential control agents for Nosema ceranae infection in honeybees, Apis mellifera
Veeranan Chaimanee1, Aticha Kasem1, Tananya Nuanjohn1
1Department of Agro-Industrial Biotechnology, Maejo University Phrae Campus, Rong Kwang, Phrae 54140, Thailand.
Abstract:
Nosema disease is one factor that can cause colony decline in honeybees (Apis mellifera L.) worldwide. Nosema ceranae has outcompeted Nosema apis in the Western honeybee (A. mellifera) which is its original host. Fumagilin is an effective antibiotic treatment to control Nosema infection but currently it is forbidden in many countries. In this study, 12 plant extracts were evaluated for their toxicity to adult bees and antimicrosporidian activity under laboratory and field conditions. N. ceranae-infected adult bees were fed ad libitum with 50% sucrose solution containing 1% and 5% (w/v) of each plant extract. Bee mortality in N. ceranae-infected groups fed with plant extracts was higher than that in the control group treated with fumagilin. The results demonstrated that 9 of 12 extracts had high antimicrosporidian activity against N. ceranae and their efficacies were comparable to fumagilin. Spore reduction in infected bees was 4-6 fold less after extract treatment. Following laboratory screening, Annona squamosa, Ocimum basilicum, Psidium guajava and Syzygium jambos were tested in honeybee colonies. Plant extracts of 2% concentration (w/v) inhibited the development of Nosema spores after 30 days of treatment. At the end of experiment (90 days), spores in the plant extract treated groups were lower than in group treated with fumagilin but there was no significant difference. Although, extracts tested in this study showed high toxicity to bee in laboratory cages, they did not show negative affects on bees under whole colony conditions. Therefore, the effectiveness of plant extracts tested in this study was notable and warrants further study as potential Nosema control agents in honey bees. Plant extracts would offer a non-antibiotic alternative for Nosema control and help reduce the overuse of antibiotics in livestock.
Insights
Plant extracts show promise in controlling Nosema ceranae, a parasite causing honeybee colony decline. Nine of twelve tested extracts demonstrated significant antimicrosporidian activity, offering a potential non-antibiotic alternative to fumagilin.
Area of Science:
- Apiculture
- Veterinary Entomology
- Plant Science
Background:
- Nosema disease, caused by Nosema ceranae, is a significant threat to honeybee (Apis mellifera) colony health worldwide.
- The antibiotic fumagilin, a common Nosema treatment, is restricted in many regions, necessitating alternative control methods.
Purpose of the Study:
- To evaluate the efficacy of 12 plant extracts against Nosema ceranae in honeybees.
- To assess the toxicity and safety of these plant extracts under laboratory and field conditions.
Main Methods:
- Laboratory screening of 12 plant extracts for toxicity to adult bees and antimicrosporidian activity against N. ceranae.
- Field trials with selected plant extracts (Annona squamosa, Ocimum basilicum, Psidium guajava, Syzygium jambos) at 2% concentration in honeybee colonies.
Main Results:
- Nine of twelve plant extracts exhibited high antimicrosporidian activity comparable to fumagilin, with spore reduction of 4-6 fold.
- Selected plant extracts effectively inhibited Nosema spore development in colonies over 90 days, with no significant difference compared to fumagilin.
- Plant extracts showed high toxicity in laboratory cages but no adverse effects on honeybee colonies.
Conclusions:
- Plant extracts represent a viable, non-antibiotic alternative for controlling Nosema infections in honeybees.
- Further research into these plant extracts is warranted for developing sustainable Nosema management strategies and reducing antibiotic reliance in apiculture.

