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Vector Competence Analyses on Aedes aegypti Mosquitoes using Zika Virus
Published on: May 31, 2020
Rift Valley fever virus-infected mosquito ova and associated pathology: possible implications for endemic maintenance
William S Romoser1, Marco Neira Oviedo1, Kriangkrai Lerdthusnee2
1Department of Biomedical Sciences, College of Osteopathic Medicine, Tropical Disease Institute, Ohio University, Athens, Ohio, USA, wromoser@gmail.com.
Background:
Endemic/Enzootic maintenance mechanisms like vertical transmission (pathogen passage from infected adults to their offspring) are central in the epidemiology of zoonotic pathogens. In Kenya, Rift Valley fever virus (RVFV) may be maintained by vertical transmission in ground-pool mosquitoes such as Aedes mcintoshi. RVFV can cause serious morbidity and mortality in humans and livestock. Past epidemics/epizootics have occurred in sub-Saharan Africa but, since the late 1970s, RVFV has also appeared in North Africa and the Middle East. Preliminary results revealed RVFV-infected eggs in Ae. mcintoshi after virus injection into the hemocoel after the first of two blood meals, justifying further study.
Methods:
Mosquitoes were collected from an artificially flooded water-catching depression along a stream in Kenya, shipped live to the USA, and studied using an immunocytochemical method for RVFV-antigen localization in mosquito sections.
Results And Conclusion:
After virus injection into the hemocoel, RVFV-infected reproductive tissues were found, particularly follicular epithelia and oocyte/nurse cells. Ovarian infection from the hemocoel is a crucial step in establishing a vertically transmitting mosquito line. Ovarian follicles originate from germarial cells, primordia located distally in each ovariole, and infection of these cells is expected to be requisite for long-term vertical transmission. However, no germarial cell infection was found, so establishing a new line of vertically transmitting mosquitoes may require two generations. The findings support the hypothesis that Ae. mcintoshi is involved in the endemic maintenance of RVFV by vertical transmission. Detection of distinct pathology in infected eggs raises the possibility of virus-laden eggs being deposited among healthy eggs, thereby providing an exogenous source of infection via ingestion by mosquito larvae and other organisms. This has potentially significant epidemiological implications. Possible modes of entry of virus from the hemocoel into the ovaries and routes by which larvae might become infected by ingesting virus are discussed.
Insights
Rift Valley fever virus (RVFV) can be transmitted from infected adult mosquitoes to their offspring. This study in Kenya found RVFV in mosquito reproductive tissues, supporting its role in endemic virus maintenance.
Area of Science:
- Arbovirology
- Epidemiology
- Medical Entomology
Background:
- Vertical transmission is key to zoonotic pathogen maintenance.
- Rift Valley fever virus (RVFV) may be maintained by Aedes mcintoshi mosquitoes in Kenya.
- RVFV outbreaks cause significant human and livestock losses.
Purpose of the Study:
- To investigate the role of Aedes mcintoshi mosquitoes in Rift Valley fever virus (RVFV) endemic maintenance in Kenya.
- To determine if RVFV can be vertically transmitted by Aedes mcintoshi.
Main Methods:
- Mosquitoes were collected in Kenya and studied in the USA.
- An immunocytochemical method was used to detect RVFV antigens in mosquito tissues.
- RVFV was injected into mosquito hemocoel to simulate infection.
Main Results:
- RVFV infected reproductive tissues, including follicular epithelia, oocytes, and nurse cells.
- Infection of germarial cells, crucial for long-term transmission, was not observed.
- Pathology in infected eggs suggests potential infection sources for larvae.
Conclusions:
- Ovarian infection is essential for vertical transmission of RVFV by Aedes mcintoshi.
- Vertical transmission may require two mosquito generations to establish.
- Aedes mcintoshi plays a role in the endemic maintenance of RVFV.
- Infected eggs pose epidemiological risks through larval ingestion.
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