Monitoring of the internal temperature of hives of Africanized bees Apis mellifera L. in Cocal - PI

Authors

DOI:

https://doi.org/10.33448/rsd-v11i12.34321

Keywords:

Air humidity; Bees; Beekeeping; Production cycle; Production cost; Thermoregulation.

Abstract

The monitoring the internal thermoregulation of the hives and the environment of the apiary become essential for the success of the production system, since they can affect the development of the offspring and daily activities carried out by the bees, and in this sense, the objective was to monitor the temperature. in hives of Africanized bees Apis mellifera L. in the municipality of Cocal-PI from January to October 2021. The results collected during the productive cycle (rainy and dry period) indicated that the internal temperature in the hives of Africanized bees fluctuated throughout the months, from January to October, in compliance with the recommendations. Environmental temperatures declined as the months of the year passed, with the highest temperatures being observed in January, with an average of 34.1ºC and rising during the dry period of the year, reaching an average value of 33.8ºC in October. The africanized Apis mellifera bees maintain nest homeostasis in the dry and rainy period of the year. The air humidity behaved contrary to the temperature of the environment in the rainy season, increasing with the passing of the months, while, in the dry period of the year, there was a reduction in air humidity. Africanized Apis mellifera bees maintain nest homeostasis in the dry and rainy period of the year. There are internal temperature variations in hives throughout the year without altering the internal homeostatic balance. Fluctuations in air humidity and ambient temperatures are due to variations in climatic conditions throughout the months of the year.

References

Abou-Shaara, H. F., Owayss, A. A., Ibrahim, Y. Y., & Basuny, N. K. (2017). A review of impacts of temperature and relative humidity on various activities of

honey bees. Insectes Sociaux,64(4), 455-463.

Almeida, G. F. 2008. Fatores que interferem no comportamento enxameatório de abelhas africanizadas. Tese de Doutorado. FFCLRP-USP. Ribeirão Preto-SP. Brasil. 120p.

Alves, L. H. S., Cassino, P. C. R., & Prezoto, F. (2015). Efeito dos fatores abióticos sobre a atividade forrageadora de Apis mellifera Linnaeus, 1758 em

inflorescências de Vernonia polyanthes Less (Asteraceae). Acta Scientiarum. Animal Sciences, 37(4), 405-409.

Atlas do Piauí. (1990). Fundação Centro de Pesquisas Econômicas e Sociais do Piauí. Mapa das principais formações vegetais. IBGE.7p.

BENAGLIA, B. G. E. (2017). Sensores no monitoramento da temperatura e umidade interna de colônias de Apis melifera africanizadas alojadas em caixas de madeira e ou de isopor. Dissertação de mestrado. Maringá - PR Brasil. 37p.

Brasil, D. F., Guimarães, M. O., Barbosa Filho, J. A. D., Freitas, B. M. (2013). Internal ambience of bee colonies submitted to strengthening management by adding broods. Engenharia Agrícola, 34, 5. 902-909.

Domingos, H. G. T.; Gonçalves, L. S. (2014). Thermoregulation in bees with emphasis on Apis mellifera. Acta Veterinaria Brasilica, Rio Grande do Norte.

Editora da Universidade Federal Rural do Semi-Arido - EdUFERSA. 8, 3. 151-154.

Human, H., Nicolson, S. W., Dietemann, V. (2006). Do honeybees, Apis mellifera scutellata, regulate humidity in their nest? Naturwissenschaften, 93, 397-401.

Jones, J. C., & Oldroyd, B.P. (2007). Nest thermoregulation in social insects. Advances in Insecty Physiology. 33, 153-191.

Koo, J.; Son, T. G.; Kim, S. Y.; Lee, K. Y. (2015) Differential responses of Apis melífera heat shock protein genes to heat shock, flower-thinning formulations, and imidacloprid. Journal of Asia-Pacific Entomology. 18(3): 583–589.

Lopes, M. T. R., Barbosa, A. L., Vieira Neto, J. M., Pereira, F. M., Camargo, R. C. R., Ribeiro, V. Q., Rocha, R. S. (2009). Desenvolvimento e qualidade do mel de abelhas Apis melífera instaladas sob diferentes condições de sombreamento. Teresina: Embrapa Meio-Norte - Boletim de Pesquisa e Desenvolvimento, 26p.

Malerbo-Souza, D. T., & Silva, F. A. S. (2011). Comportamento forrageiro da abelha africanizada Apis mellifera L. no decorrer do ano. Acta Scientiarum. Animal Sciences, 33(2), 183-190.

Pereira, D. S., Neto, J. P. H., Sousa, L. C. F. S., Coelho, D. C., Silveira, D. C., Hernandez, M. L. (2014). Mitigação do comportamento de abandono abelhas Apis mellifera L. em apiários no semiárido Brasileiro. Acta apícola brasílica, 02, 2.11.

Rambo, J. M. C., Félix, W. E. C., Silveira, R. K. (2018). Avaliação da temperatura interna de colmeias de abelhas Apis mellifera durante o inverno na região do vale do Guaporé. Anais da 55º reunião da Sociedade Brasileira de Zootecnia.

Reddy, P.V.; Rashimi, T., & Verghese, A. (2015). Foraging activity of Indian honey bee, Apis cerana in relation to ambient climate variables under tropical conditions. Journal of Environmental Biology. 36, 537-542.

Tautz, J. (2010). O fenômeno das abelhas, Artmed. 288p.

Vicens, N.; Bosch, J. (2000). Weather-dependent pollinator activity in an apple orchard, with special reference to osmia cornuta and Apis mellifera (Hymenoptera: Megachilidae and apidae). Environ. Entomol., 29, 413-420.

Wiese, H. Apicultura: Novos Tempos. Agropecuária, 2000.

Winston, M. L. (2003). A biologia da abelha. Magister. 276p.

Published

10/09/2022

How to Cite

SANTOS NETO, A. R. dos .; SILVA, J. L. F. e .; VASCONCELOS, E. C. G. .; FONTENELE, R. M.; SOUSA, M. S. L. R. de .; GOMES , E. da S. .; OLIVEIRA, R. de .; SILVA, V. L. Monitoring of the internal temperature of hives of Africanized bees Apis mellifera L. in Cocal - PI. Research, Society and Development, [S. l.], v. 11, n. 12, p. e158111234321, 2022. DOI: 10.33448/rsd-v11i12.34321. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/34321. Acesso em: 27 apr. 2024.

Issue

Section

Agrarian and Biological Sciences