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5 November 2022 Habitat Diversity, Stability, and Productivity of Malaria Vectors in Irrigated and Nonirrigated Ecosystems in Western Kenya
Pauline Winnie Orondo, Xiaoming Wang, Ming-Chieh Lee, Steven G. Nyanjom, Harrysone Atieli, Benyl M. Ondeto, Kevin O. Ochwedo, Collince J. Omondi, Wilfred Ouma Otambo, Guofa Zhou, Daibin Zhong, Andrew K. Githeko, James W. Kazura, Guiyun Yan
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Abstract

Several sub-Saharan African countries rely on irrigation for food production. This study examined the impact of environmental modifications resulting from irrigation on the ecology of aquatic stages of malaria vectors in a semi-arid region of western Kenya. Mosquito larvae were collected from irrigated and non-irrigated ecosystems during seasonal cross-sectional and monthly longitudinal studies to assess habitat availability, stability, and productivity of anophelines in temporary, semipermanent, and permanent habitats during the dry and wet seasons. The duration of habitat stability was also compared between selected habitats. Emergence traps were used to determine the daily production of female adult mosquitoes from different habitat types. Malaria vectors were morphologically identified and sibling species subjected to molecular analysis. Data was statistically compared between the two ecosystems. After aggregating the data, the overall malaria vector productivity for habitats in the two ecosystems was estimated. Immatures of the malaria vector (Anopheles arabiensis) Patton (Diptera: Culicidae) comprised 98.3% of the Anopheles in both the irrigated and non-irrigated habitats. The irrigated ecosystem had the most habitats, higher larval densities, and produced 85.8% of emerged adult females. These results showed that irrigation provided conditions that increased habitat availability, stability, and diversity, consequently increasing the An. arabiensis production and potential risk of malaria transmission throughout the year. The irrigated ecosystems increased the number of habitats suitable for Anopheles breeding by about 3-fold compared to non-irrigated ecosystems. These results suggest that water management in the irrigation systems of western Kenya would serve as an effective method for malaria vector control.

© The Author(s) 2022. Published by Oxford University Press on behalf of Entomological Society of America. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.
Pauline Winnie Orondo, Xiaoming Wang, Ming-Chieh Lee, Steven G. Nyanjom, Harrysone Atieli, Benyl M. Ondeto, Kevin O. Ochwedo, Collince J. Omondi, Wilfred Ouma Otambo, Guofa Zhou, Daibin Zhong, Andrew K. Githeko, James W. Kazura, and Guiyun Yan "Habitat Diversity, Stability, and Productivity of Malaria Vectors in Irrigated and Nonirrigated Ecosystems in Western Kenya," Journal of Medical Entomology 60(1), 202-212, (5 November 2022). https://doi.org/10.1093/jme/tjac168
Received: 20 May 2022; Published: 5 November 2022
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KEYWORDS
Anopheles
environmental modification
Irrigation
larval ecology
malaria
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