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Controlling mosquitoes with semiochemicals: a review

期刊

PARASITES & VECTORS
卷 13, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s13071-020-3960-3

关键词

Malaria; Vector mosquitoes; Anopheles; Aedes; Culex; Mosquito life-cycle; Semiochemicals; Chemical communication

资金

  1. University of Pretoria Institute for Sustainable Malaria Control (UP ISMC)
  2. National Research Foundation (NRF)
  3. L'Oreal-UNESCO For Women in Science sub-Saharan African Programme
  4. NRF [UID 99644, 1136]
  5. National Research Foundation of Korea [1136] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The use of semiochemicals in odour-based traps for surveillance and control of vector mosquitoes is deemed a new and viable component for integrated vector management programmes. Over 114 semiochemicals have been identified, yet implementation of these for management of infectious diseases such as malaria, dengue, chikungunya and Rift Valley fever is still a major challenge. The difficulties arise due to variation in how different mosquito species respond to not only single chemical compounds but also complex chemical blends. Additionally, mosquitoes respond to different volatile blends when they are looking for a mating partner, oviposition sites or a meal. Analytically the challenge lies not only in correctly identifying these semiochemical signals and cues but also in developing formulations that effectively mimic blend ratios that different mosquito species respond to. Only then can the formulations be used to enhance the selectivity and efficacy of odour-based traps. Understanding how mosquitoes use semiochemical cues and signals to survive may be key to unravelling these complex interactions. An overview of the current studies of these chemical messages and the chemical ecology involved in complex behavioural patterns is given. This includes an updated list of the semiochemicals which can be used for integrated vector control management programmes. A thorough understanding of these semiochemical cues is of importance for the development of new vector control methods that can be integrated into established control strategies.

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