SURVEILLANCE OF AEDES DIVERSITY, SEASONAL PREVALENCE AND HABITAT CHARACTERIZATION IN BULANDSHAHR, UTTER PRADESH, INDIA

Authors

  • Anil Kumar Department of Zoology, N.R.E.C. College, Khurja (Affiliated to C.C.S. University Meerut) District Bulandshahr, Uttar Pradesh, India.
  • Hridayesh Arya Department of Zoology, N.R.E.C. College, Khurja (Affiliated to C.C.S. University Meerut) District Bulandshahr, Uttar Pradesh, India.
  • Prveen Department of Zoology, Rajiv Gandhi University, Rono Hills, Doimukh , Arunachal Pradesh, India
  • Anand Pratap Singh Department of Zoology, Agra College, Agra, Dr. Bhimrao Ambedkar University, Agra, Uttar Pradesh, India
  • Sonal Singh Department of Zoology, Agra College, Agra, Dr. Bhimrao Ambedkar University, Agra, Uttar Pradesh, India
  • Satyadev sharma Department of Zoology, Agra College, Agra, Dr. Bhimrao Ambedkar University, Agra, Uttar Pradesh, India
  • Keshav Singh Department of Zoology, Agra College, Agra, Dr. Bhimrao Ambedkar University, Agra, Uttar Pradesh, India

DOI:

https://doi.org/10.59436/jsiane.com/archives3/1/62

Keywords:

Aedes aegypti, Aedes albopictus, Aedes vittatus, Bulandshahr, Mosquito diversity. Seasonal prevalence

Abstract

Mosquitoes have the ability to spread several parasites and pathogens that cause serious diseases in both humans and animals. In order to effectively control disease and mosquito populations, analysis of mosquito diversity, prevalence and habitat characterization in any location is frequently necessary. In order to compile comprehensive first-hand data on mosquitoes, the current study was carried out in the Khurja area of the Bulandshahar district in Utter Pradesh, India. The study was carried out over a period of one year. Ladle and dipping methods were used to collect the larvae of the Aedes mosquito. 48 human habitations were selected randomly from the Bulandshahar region. The accumulated data were used to compute the monthly and seasonal Relative Abundance (RA), Per Man Hour Density (PMHD), House Index (HI) and Container Index (CI) of Aedes species. Three species from the genus Aedes including Aedes aegypti, Aedes albopictus, and Aedes vittatus identified in the Bulandshahr region. The most prevalent species was Aedes aegypti. The RA, PMHD, HI and CI were highest for Aedes aegypti (53.33%, 36.67, 44.08) followed by Aedes albopictus (28.33%, 19.49, 32.98), and Aedes vittatus (18.33%, 12.62, 15.10) and CI=12.53%. In seasonal population dynamics of Aedes species in relation to meteorological factors, only temperature and rainfall are significant variables (P≤0.05) of climate that affect the density of mosquitoes in the study area, with no correlation with the relative humidity. According to the findings, there is a substantial probability of mosquito-borne disease outbreaks. There must be precautions taken because dengue fever outbreaks are frequent in the region. Interventions for prevention are necessary since the region is vulnerable to dengue fever outbreaks and other diseases spread by mosquitoes.

References

Caminade, C., Medlock, J.M., Ducheyne, E., et al. (2012). Suitability of European climate for the Asian tiger mosquito Aedes albopictus: recent trends and future scenarios. J R Soc Interface, 9(75): 2708-2717.

Cancrini, G., Frangipane, di Regalbono, A., Riccia, I., Tessarin, C., Gabrielli, S. and Pietrobelli, M. (2003). Aedes albopictus is a natural vector of Dirofilaria immitis in Italy. Veterinary Parasitology, 118(3–4): 195–202.

Chakravarti, A. and Kumaria, R. (2005). Eco-epidemiological analysis of dengue infection during an outbreak of dengue fever, India. Virol J., 2: 32–38.

Christophers, S.R. (1960). Aedes aegypti (L.) The yellow fever mosquito. Its life history, bionomics and structure. Cambridge University Press.

Dash, P.K., Saxena, P., Abhyankar, A., Bhargava, R. and Jana, A.M. (2005). Emergence of dengue virus type-3 in northern India. Southeast Asian J Trop Med Public Health, 36: 370–377.

Diallo, D., Diagne, C., Hanley, K.A., Sall, A.A., Buenemann, M., Ba, Y., et al. (2012). Larval ecology of mosquitoes in sylvatic arbovirus foci in southeastern Senegal. Parasit Vectors. 5: 286.

Elia-Amira, N.M.R., Chen, C.D., Low, V. L., et al. (2019). Adulticide Resistance Status of Aedes albopictus (Diptera: Culicidae) in Sabah, Malaysia: A Statewide Assessment. J Med Entomol., 56(6): 1715-1725.

Grard, G. (2014). "Zika Virus in Gabon (Central Africa) – 2007: A New Threat from Aedes albopictus". PLOS Neglected Tropical Diseases. 8 (2): e2681.

Hochedez, P., Jaureguiberry, S., Debruyne, M., et al. (2006). Chikungunya infection in travelers. Emerg Infect Dis. 12(10):1565-1567.

Indian Meteorological Department (2021-2022). Ministry of earth sciences Government of India. https://mausam. imd.gov.in/

Jangir, P.K. and Prasad, A. (2022). Spatial distribution of insecticide resistance and susceptibility in Aedes aegypti and Aedes albopictus in India. Int J Trop Insect Sci. 42: 1019–1044.

Jansen, C.C. and Beebe, N.W. (2010). The dengue vector Aedes aegypti: what comes next?. Microbes and infection. 12(4): 272 -279.

Jupp, P.G. and McIntosh, B.M. (1990). Aedes furcifer and other mosquitoes as vectors of chikungunya virus at Mica, northeastern Transvaal, South Africa. J Am Mosq Control Assoc., 6(3): 415-420.

Kalra, N.L., Kaul, S.M. and Rastogi, R.M. (1997). Prevalence of Aedes aegypti and Aedes albopictus- Vectors of Dengue Hemorrhagic Fever in North, North-East and Central India. WHO Regional Office for South-East Asia., 21: 84-92.

Koppen, W. (1884). The thermal zones of the earth according to the duration of hot, moderate, and cold periods and to the impact of heat on the organic world. Meteorol. Z., 1: 215–226.

Kumar, N.P., Sabesan, S., Krishnamoorthy, K. and Jambulingam, P. (2012). Detection of Chikungunya Virus in Wild Populations of Aedes albopictus in Kerala State, India. Vector Borne Zoonotic Diseases, 12(10): 907-911.

Mathur, Raj. B. (2022). "Uttar Pradesh". Encyclopedia Britannica. https://www.britannica.com/place/Uttar-Pradesh.

Medlock, J.M., Avenell, D., Barrass, I. and Leach, S. (2006). Analysis of the potential for survival and seasonal activity of Aedes albopictus (Diptera: Culicidae) in the United Kingdom. J Vector Ecol. 31(2): 292-304.

Metselaar, D., Grainger, C.R., Oei, K.G., Reynolds, D.G., Pudney, M., et al. (1980). An outbreak of type 2 dengue fever in Seychelles, probably transmitted by Aedes albopictus (‎Skuse)‎. Bulletin of the World Health Organization, 58 (‎6)‎: 937-943.

NCVBDC (2021). Ministry of Health & Family Welfare-Government of India. National Center for Vector Borne Diseases Control. Retrieved January 20, 2023, from https://nvbdcp.gov.in/index4.php?lang=1&level=0&linkid=431&lid=3715.

Paupy, C., Chantha, N., Vazeille, M., Reynes, J.M., Rodhain, F. and Failloux, A.B. (2003). Variation over space and time of Aedes aegypti in Phnom Penh (Cambodia): genetic structure and oral susceptibility to a dengue virus. Genetics Research., 82: 171.

Paupy, C., Ollomo, B., Kamgang, B. et al. (2010). Comparative role of Aedes albopictus and Aedes aegypti in the emergence of Dengue and Chikungunya in central Africa. Vector Borne Zoonotic Dis., 10(3): 259-266.

Reinert, J.F. (2000). Description of Fredwardsius, a new subgenus of Aedes (Diptera: Culicidae). Eur Mosq Bull., 6: 1-7.

Romi, R., F. Severini, and L. Toma, (2006). Cold acclimation and overwintering of female Aedes albopictus in Roma. Journal of the American Mosquito Control Association., 22(1): 149-151.

Rueda, L. (2004). Pictorial keys for the identification of mosquitoes (Diptera: Culicidae) associated with Dengue Virus Transmission. Zootaxa. 589.

Scott, T.W., Amerasinghe, P.H., Morrison, A.C. et al. (2000). Longitudinal studies of Aedes aegypti (Diptera: Culicidae) in Thailand and Puerto Rico: blood feeding frequency. J Med Entomol., 37(1):89-101.

Sharma, G., Chittora, S. and Ojha, R. (2021). Study on mosquito (Diptera: Culicidae) diversity in Jodhpur district of the Rajasthan state. International Journal of Mosquito Research., 8(4):16-19.

Sharma, G., De, S., Mandal, U., Bhattacharjee, R. and Suman, D.S. (2022). Ecological variations in adult life table attributes of Aedes aegypti (L.) from the desert and coastal regions of India. Medical and Veterinary Entomology, 1–6.

Sudeep, A.B. and Shil, P. (2017). Aedes vittatus (Bigot) mosquito: An emerging threat to public health. J Vector Borne Dis., 54(4): 295-300.

Sukri, N.C., Laras, K., Wandra, T., Didi, S., Larasati, R.P. and Rachdyatmaka, J.R. (2003). Transmission of epidemic dengue hemorrhagic fever in easternmost Indonesia. Am J Trop Med Hyg., 68: 529–35.

Suman, D.S., Sharma, G., Chandra, K. and Banerjee, D. (2022). Culex (Culex) gaugleri, a new species (Diptera: Culicidae) from India. Records of the Zoological Survey of India, 121(4): 429-439.

Thenmozhi, V., Hiriyan, J.G., Tewari, S.C., Samuel, P.P., Paramasivan, R., Rajendran, R. et al. (2007). Natural vertical transmission of dengue virus in Aedes albopictus (Diptera: Culicidae) in Kerala, a southern Indian state. Japanese journal of infectious diseases, 60(5): 245.

Trpis, M., McClelland, G.A., Gillett, J.D., Teesdale, C. and Rao, T.R. (1973). Diel periodicity in the landing of Aedes aegypti on man. Bull World Health Organ., 48(5):623-629.

Tyagi, B., Munirathinam, A. and Venkatesh, A. (2015). A catalog of Indian mosquitoes. International Journal of Mosquito International Journal of Mosquito Research, 2(2):50 -97

Waggoner, J.J., Gresh, L., Vargas, M.J. et al. (2016). Viremia and Clinical Presentation in Nicaraguan Patients Infected with Zika Virus, Chikungunya Virus, and Dengue Virus. Clin Infect Dis., 63(12): 1584-1590.

Wong, Pei-Sze Jeslyn. (2013). “Aedes (Stegomyia) albopictus (Skuse): A Potential Vector of Zika Virus in Singapore". PLOS Neglected Tropical Diseases., 7(8): e2348

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Published

2023-03-24

How to Cite

SURVEILLANCE OF AEDES DIVERSITY, SEASONAL PREVALENCE AND HABITAT CHARACTERIZATION IN BULANDSHAHR, UTTER PRADESH, INDIA. (2023). Journal of Science Innovations and Nature of Earth, 3(1), 04-10. https://doi.org/10.59436/jsiane.com/archives3/1/62

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