Javascript must be enabled to continue!
Diversity and Abundance of Potential Vectors of Rift Valley Fever Virus in the North Region of Cameroon
View through CrossRef
Rift Valley fever (RVF) is a major viral zoonosis transmitted by mosquitoes. The virus is endemic in most parts of sub-Saharan Africa and can affect humans, livestock, and wild ungulates. Knowledge of the biology of vectors of Rift Valley fever virus (RVFV) is essential for the establishment of effective control measures of the disease. The objective of this study was to determine the species diversity and relative abundance of potential RVFV vectors in the North Region of Cameroon. Adult mosquitoes were trapped during the wet and dry seasons from December 2017 to January 2019 with “EVS Light” traps with CO2 baits placed at selected sites. The captured mosquitoes were identified using dichotomous keys according to standard procedures. The abundance was calculated with regard to site, zone, and collection season. A total of 27,851 mosquitoes belonging to four genera (Aedes, Anopheles, Mansonia, and Culex) and comprising 31 species were caught (including 22 secondary vectors (98.05%) and nine primary vectors (1.94%). The total number of mosquitoes varied significantly depending on the locality (p-value < 0.001). The average number of mosquitoes collected per trap night was significantly higher in irrigated areas (p-value < 0.001), compared to urban and non-irrigated areas. The study revealed the presence of potential primary and secondary vectors of RVFV with varying abundance and diversity according to locality and ecological site in the North Region of Cameroon. The results showed that the genus Mansonia with the species Ma. uniformis and Ma. africana formed the dominant taxon (52.33%), followed by the genera Culex (45.04%) and Anopheles (2.61%). The need for molecular analysis (PCR) tests for RVFV RNA research and viral isolation methods on these vectors to determine their role in the epidemiology and control of RVF cannot be overemphasized.
Title: Diversity and Abundance of Potential Vectors of Rift Valley Fever Virus in the North Region of Cameroon
Description:
Rift Valley fever (RVF) is a major viral zoonosis transmitted by mosquitoes.
The virus is endemic in most parts of sub-Saharan Africa and can affect humans, livestock, and wild ungulates.
Knowledge of the biology of vectors of Rift Valley fever virus (RVFV) is essential for the establishment of effective control measures of the disease.
The objective of this study was to determine the species diversity and relative abundance of potential RVFV vectors in the North Region of Cameroon.
Adult mosquitoes were trapped during the wet and dry seasons from December 2017 to January 2019 with “EVS Light” traps with CO2 baits placed at selected sites.
The captured mosquitoes were identified using dichotomous keys according to standard procedures.
The abundance was calculated with regard to site, zone, and collection season.
A total of 27,851 mosquitoes belonging to four genera (Aedes, Anopheles, Mansonia, and Culex) and comprising 31 species were caught (including 22 secondary vectors (98.
05%) and nine primary vectors (1.
94%).
The total number of mosquitoes varied significantly depending on the locality (p-value < 0.
001).
The average number of mosquitoes collected per trap night was significantly higher in irrigated areas (p-value < 0.
001), compared to urban and non-irrigated areas.
The study revealed the presence of potential primary and secondary vectors of RVFV with varying abundance and diversity according to locality and ecological site in the North Region of Cameroon.
The results showed that the genus Mansonia with the species Ma.
uniformis and Ma.
africana formed the dominant taxon (52.
33%), followed by the genera Culex (45.
04%) and Anopheles (2.
61%).
The need for molecular analysis (PCR) tests for RVFV RNA research and viral isolation methods on these vectors to determine their role in the epidemiology and control of RVF cannot be overemphasized.
Related Results
Back‐arc rifting in the Izu‐Bonin Island Arc: Structural evolution of Hachijo and Aoga Shima Rifts
Back‐arc rifting in the Izu‐Bonin Island Arc: Structural evolution of Hachijo and Aoga Shima Rifts
Abstract
Multi‐ and single‐channel seismic profiles are used to investigate the structural evolution of back‐arc rifting in the intra‐oceanic Izu‐Bonin Arc. Hachijo and Aoga ...
Velocity Modelling and Depth Conversion Uncertainty Mitigation in GS327 Oil Field, in Gulf of Suez Basin
Velocity Modelling and Depth Conversion Uncertainty Mitigation in GS327 Oil Field, in Gulf of Suez Basin
Abstract
The Gulf of Suez rift initiated in the Late Oligocene, probably propagating northwards, and intersecting a major east-west structural boundary of Late Eocen...
Effects of Internal Audit Function on Financial Performance in Rift Valley Bottlers Limited Eldoret, Kenya
Effects of Internal Audit Function on Financial Performance in Rift Valley Bottlers Limited Eldoret, Kenya
The purpose of this study was to investigate effect of internal audit function on financial performance of Rift Valley Bottler’s Limited, Eldoret. The researcher seeks to answer th...
Towards a better understanding of Rift Valley fever epidemiology in the south-west of the Indian Ocean
Towards a better understanding of Rift Valley fever epidemiology in the south-west of the Indian Ocean
Abstract
Rift Valley fever virus (Phlebovirus, Bunyaviridae) is an arbovirus causing intermittent epizootics and sporadic epidemics primarily in East Africa. Infection ca...
Quaternary Geometry, Kinematics and Paleoearthquake History at the Intersection of the Strike-Slip North Island Fault System and Taupo Rift, New Zealand
Quaternary Geometry, Kinematics and Paleoearthquake History at the Intersection of the Strike-Slip North Island Fault System and Taupo Rift, New Zealand
<p>The North Island of New Zealand sits astride the Hikurangi margin along which the oceanic Pacific Plate is being obliquely subducted beneath the continental Australian Pla...
Early onshore basaltic alteration and its natural hydrogen potential in the Asal–Ghoubbet rift, Republic of Djibouti.
Early onshore basaltic alteration and its natural hydrogen potential in the Asal–Ghoubbet rift, Republic of Djibouti.
The East African Rift (EAR) is a large opening system that allows the observation of all stages of rift evolution from continental opening in the south to oceanization in the north...
Magmatic centers and rift segmentation: insights from the Late Quaternary Menengai Caldera, Central Kenya Rift
Magmatic centers and rift segmentation: insights from the Late Quaternary Menengai Caldera, Central Kenya Rift
<p>In magmatically active continental rifts, crustal deformation is often accompanied by caldera volcanism along the rift axis. These caldera volcanoes help to charac...

