Stingless bees (&) have developed many approaches to control nests from their enemies/pest and predators/. Defensive behavior of & was not conducted by physical body. Despite lacking a sting, stingless bees are active in defending their enemies possess numerous defensive mechanisms. The study was conducted at Holeta Bee Research Center, stingless bee (&) apiary site to investigate three defensive mechanisms (dyadic (one to one), Group interaction and colony interaction or defensive behavior). The objective of study was to conduct the defensive mechanism of stingless bees (&) against ants (&). Defensive behavior between & and & was observed by different numbers of workers of ants and stingless bees in each group. Dyadic encounter a defensive between single worker of & and &, Group Interaction: Defensive between thirty two workers from each group and Colony interaction between a mass of colonies defensive were observed. In Colony interaction defensive behavior aggressive interaction between the & and & was freely observed when a part of stingless bee nest with brood and adults were placed near the ground close to the & nest. The interaction between ants and stingless bees in dyadic and group interaction were overpowered by ants where as in colony interaction deter by stingless bees. This is may explain why stingless bees living in free environment without attack of ants though they share the same ecology. Therefore, identifying these ant-deterrent and exploring for the development of ant protection for other is suggested.
Published in | American Journal of Entomology (Volume 9, Issue 1) |
DOI | 10.11648/j.aje.20250901.11 |
Page(s) | 1-5 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2025. Published by Science Publishing Group |
Ants, Defensive, Meliponula beccarii, Interaction
Time (minutes) | Stingless bees’ death (%) | Ant death (%) |
---|---|---|
10 | 0 | 0 |
20 | 10 | 0 |
30 | 90 | 0 |
40 | 0 | 10 |
Time (minute) | Stingless bee death (%) | Ant death (%) |
---|---|---|
10 | 10.7 | 0 |
20 | 66.7 | 0 |
30 | 22.6 | 0 |
40 | 0 | |
50 | 0 |
A.mellifera | Apis Mellifera |
D.fulvus | Dorylus Fulvus |
M.beccarii | Meliponula Beccarii |
Hbrc | Holeta Bee Research Center |
[1] | Adjare, S. O. (1990) Beekeeping in Africa, Agricultural Service Bulletin, Vol. 68/6. Food and Agriculture Organization of the United Nations (FAO), Italy. |
[2] | Amssalu Bezabeh, (2012) “Apiculture research achievements, challenges, and prospects in Ethiopia,” inAgricultural Research for Ethiopian Renaissance, Challenges-and-Future-Directions, pp. 265–272, Ethiopian Institute of Agricultural Research, Addis Ababa, Ethiopia. |
[3] | Bordereau C, Robert A, Tuyen VV, Peppuy A (1997) Suicidal defensive behaviour by frontal gland dehiscence in Globitermes sulphureus Haviland soldiers (Isoptera). Insect Soc 44: 289–297. |
[4] | Buchmann, S. L. (1983). Buzz pollination in angiosperms. In: Jones CE, Little RJ (Eds) Handbook of experimental pollination biology, Van Nostrand. |
[5] | Burrell BD, Smith BH (1995) Modulation of the honey bee (Apis mellifera) sting response by octopamine. J Insect Physiol 41: 671–680. |
[6] | Davidson DW, Salim KA, Billen J (2012) Histology of structures used in territorial combat by Borneo’s “exploding ants”. Acta Zool 93: 487–491. |
[7] | Desalegn Begna (2007). Assessment on the effect of ant (Dorylus fulvus) on honeybee colony (A.mellifera) and their products in West and South West Shewa Zone: Ethiopia Ethiopian journal of animal production. 7(1): 12- 26, Addis Ababa, Ethiopia. |
[8] |
El-Niweiri, M. A. A., El-Sarrag, M. S. A. & Satti, A. A. (2004) Detection, Distribution and Incidences of Insect Pests and Predators of Honeybees (Apis mellifera L.) in Sudan. Environment and Natural Resources Research Institute, National Center for Research, Khartoum [WWW document] URL.
http://saudibi.com/files/image/pdf/conf4/3.pdf [accessed on 5 May 2012]. |
[9] | Hepburn, H. R. and S. E. Radloff, 1998. Honeybees of Africa. Springer, Berlin, Germanyvan Zweden JS, Grüter C, Jones SM, Ratnieks FLW (2011) Hovering guards of the stingless bee Tetragonisca angustula increase colony defensive perimeter as shown by intra and inter-specific comparisons. Behav Ecol Sociobiol 65: 1277–1282. |
[10] | Hermann HR (1971) Sting autotomy, a defensive mechanism in certain social Hymenoptera. Insect Soc 18: 111–120. |
[11] | Human, K. G. & Gordon, D. M. (1996) Exploitation and interference competition between the invasive Argentine ant Linepithema humile, and native ant species. Oecologia, 105, 405–412. |
[12] | Human, K. G. & Gordon, D. M. (1999) Behavioral interactions of the invasive Argentine ant with native ant species. Insectes Sociaux, 46, 159–163. |
[13] | Johnson L. K. and Hubbell S. P. 1974. Aggression and competition among stingless bees: field studies. Ecology 55: 120-127. |
[14] | Kajobe, R., Agea, J. G., Kugonza, D. R., Alioni, V., Otim, A. S., Rureba, T. & Marris, G. (2009) National Beekeeping Calendar, Honeybee Pest and Disease Control Methods from Improved Production of Honey and other Hive Products in Uganda. |
[15] | Lehmberg L., Dworschak K and Bluethgen N. 2008. Defensive behavior and chemical deterrence against ants in the stingless bee genus Trigona (Apidae, Meliponini). Journal of Apiculture Research 47(1):-17-21. |
[16] | Michener CD (2000) The bees of the world. Johns Hopkins University Press, Baltimore. |
[17] | Nagamitsu T. and Inoue T. 1997. Aggressive foraging of social bees as a mechanism of floral resource partitioning in an Asian tropical rainforest. Oecologia 110: 432-439. |
[18] | Nieh, J. C., K. Kruizinga, L. S. Barreto, F. A. L. Contrera, and V. L. Imperatriz-Fonseca. 2005. Effect of group size on the aggressionstrategy of an extirpating stingless bee, Trigona spinipes. InsectesSociaux 52: 147–154. |
[19] | Nuru A, Awraris G, Shenkute, Ahmed A, Al-Ghamdi, Amenay Assefa, Mohammad J, Ansari, Brian Taylor, Sarah Radloff (2014) Crematogaster chiarinii ants as a potential biological control agent for protecting honeybee colonies from attack by Dorylus quadratus driver ants in Ethiopia (Hymenoptera: Formicidae). |
[20] | Roubik DW (2006) Stingless bee nesting biology. Apidologie 37: 124–143. |
[21] | Sommeijer M. J., Ruijter A. de (2000) Insect pollination in greenhouses, Proc. specialists’ meeting held in Soesterberg, The Netherlands. |
[22] | Suka T, Inoue T (1993) Nestmate recognition of the stingless bee Trigona (Tetragonula) minangkabau (Apidae: Meliponinae). J Ethol 11: 141–147. |
[23] | Uematsu K, Kutsukake M, Fukatsu T, Shimada M, Shibao H (2010) Altruistic colony defense by menopausal female insects. Curr Biol 20: 1182–1186. |
[24] | Wille A (1983) Biology of the stingless bees. Annu Rev Entomol 28: 41–64. |
[25] | Zee, J. & Holway, D. (2006) Nest raiding by the invasive Argentine ant on colonies of the harvester ant, Pogonomyrmex subnitidus. Insectes Sociaux, 53, 161–167. |
APA Style
Mekonnen, E., Gela, A. (2025). Investigating the Defensive Mechanisms of Stingless Bees, Meliponula beccarii L., Against Ants (Dorylus fulvus). American Journal of Entomology, 9(1), 1-5. https://doi.org/10.11648/j.aje.20250901.11
ACS Style
Mekonnen, E.; Gela, A. Investigating the Defensive Mechanisms of Stingless Bees, Meliponula beccarii L., Against Ants (Dorylus fulvus). Am. J. Entomol. 2025, 9(1), 1-5. doi: 10.11648/j.aje.20250901.11
@article{10.11648/j.aje.20250901.11, author = {Etenesh Mekonnen and Alemayehu Gela}, title = {Investigating the Defensive Mechanisms of Stingless Bees, Meliponula beccarii L., Against Ants (Dorylus fulvus)}, journal = {American Journal of Entomology}, volume = {9}, number = {1}, pages = {1-5}, doi = {10.11648/j.aje.20250901.11}, url = {https://doi.org/10.11648/j.aje.20250901.11}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.aje.20250901.11}, abstract = {Stingless bees (&) have developed many approaches to control nests from their enemies/pest and predators/. Defensive behavior of & was not conducted by physical body. Despite lacking a sting, stingless bees are active in defending their enemies possess numerous defensive mechanisms. The study was conducted at Holeta Bee Research Center, stingless bee (&) apiary site to investigate three defensive mechanisms (dyadic (one to one), Group interaction and colony interaction or defensive behavior). The objective of study was to conduct the defensive mechanism of stingless bees (&) against ants (&). Defensive behavior between & and & was observed by different numbers of workers of ants and stingless bees in each group. Dyadic encounter a defensive between single worker of & and &, Group Interaction: Defensive between thirty two workers from each group and Colony interaction between a mass of colonies defensive were observed. In Colony interaction defensive behavior aggressive interaction between the & and & was freely observed when a part of stingless bee nest with brood and adults were placed near the ground close to the & nest. The interaction between ants and stingless bees in dyadic and group interaction were overpowered by ants where as in colony interaction deter by stingless bees. This is may explain why stingless bees living in free environment without attack of ants though they share the same ecology. Therefore, identifying these ant-deterrent and exploring for the development of ant protection for other is suggested.}, year = {2025} }
TY - JOUR T1 - Investigating the Defensive Mechanisms of Stingless Bees, Meliponula beccarii L., Against Ants (Dorylus fulvus) AU - Etenesh Mekonnen AU - Alemayehu Gela Y1 - 2025/01/17 PY - 2025 N1 - https://doi.org/10.11648/j.aje.20250901.11 DO - 10.11648/j.aje.20250901.11 T2 - American Journal of Entomology JF - American Journal of Entomology JO - American Journal of Entomology SP - 1 EP - 5 PB - Science Publishing Group SN - 2640-0537 UR - https://doi.org/10.11648/j.aje.20250901.11 AB - Stingless bees (&) have developed many approaches to control nests from their enemies/pest and predators/. Defensive behavior of & was not conducted by physical body. Despite lacking a sting, stingless bees are active in defending their enemies possess numerous defensive mechanisms. The study was conducted at Holeta Bee Research Center, stingless bee (&) apiary site to investigate three defensive mechanisms (dyadic (one to one), Group interaction and colony interaction or defensive behavior). The objective of study was to conduct the defensive mechanism of stingless bees (&) against ants (&). Defensive behavior between & and & was observed by different numbers of workers of ants and stingless bees in each group. Dyadic encounter a defensive between single worker of & and &, Group Interaction: Defensive between thirty two workers from each group and Colony interaction between a mass of colonies defensive were observed. In Colony interaction defensive behavior aggressive interaction between the & and & was freely observed when a part of stingless bee nest with brood and adults were placed near the ground close to the & nest. The interaction between ants and stingless bees in dyadic and group interaction were overpowered by ants where as in colony interaction deter by stingless bees. This is may explain why stingless bees living in free environment without attack of ants though they share the same ecology. Therefore, identifying these ant-deterrent and exploring for the development of ant protection for other is suggested. VL - 9 IS - 1 ER -