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Spatial distribution and habitat characterization of schistosomiasis host snails in lake and land habitats of western K enya
Author(s) -
Ofulla Ayub V.,
Adoka Samson O.,
Anyona Douglas N.,
Abuom Paul O.,
Karanja Diana,
Vulule John M.,
Okurut Tom,
Matano AllySaid,
Dida Gabriel O.,
Jembe Tsuma,
Gichuki John
Publication year - 2013
Publication title -
lakes and reservoirs: research and management
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.296
H-Index - 39
eISSN - 1440-1770
pISSN - 1320-5331
DOI - 10.1111/lre.12032
Subject(s) - ecology , habitat , abundance (ecology) , biology , intermediate host , vegetation (pathology) , host (biology) , medicine , pathology
Intermediate host snails of schistosomiasis were surveyed in this study to determine their abundance and distribution in the lake and land aquatic habitats of L ake V ictoria basin of K enya. Several sites were sampled at eight locations, both in the lake and on the land. The habitat and/or vegetation type (i.e. open water, hippo grass, hyacinth, ambatch trees, other vegetation, stream, swamp, pond, dam) of the sampled aquatic sites within the locations were also differentiated, water physicochemical parameters were determined, and the abundance of different species or taxa of phytoplankton and zooplankton were enumerated and correlated with the abundance of schistosomiasis snails in the sites. The results indicated significantly more B iomphalaria sudanica snails than B ulinus africanus snails in different physical habitats on land (Student's t ‐test, P  < 0.05), as well as in different locations on land (Student's t ‐test, P  = 0.026). Regression analyses revealed that several physicochemical parameters, including dissolved oxygen ( R 2  = −0.659; n  = 8; P  = 0.014), pH ( R 2  = 0.728; n  = 8; P  = 0.007) and turbulence ( R 2  = −0.616; n  = 8; P  = 0.02), were predictive of B iomphalaria spp. abundance, while pH ( R 2  = 0.610; n  = 8; P  = 0.02) and turbulence ( R 2  = −0.578; n  = 8; P  = 0.028) were predictive of Bulinus spp. abundance in different locations in the lake. Cyanobacteria ( R 2  = 0.638; n  = 8; P  = 0.02) and chlorophyceae ( R 2  = −0.50; n  = 8; P  = 0.05) were shown to be predictive of both B iomphalaria spp. and B ulinus spp. abundance in different locations in the lake. Zooplankton abundance varied significantly between different locations in the lake (One‐way anova , P  < 0.001). B osmina spp. were found to be predictive of both B iomphalaria spp. ( R 2  = −0.627; n  = 8; P  = 0.01) and B ulinus spp. ( R 2  = −0.50; n  = 8; P  = 0.05) in different locations in the lake. The results from this study will help inform policy regarding control measures for schistosomias and intermediate snail hosts in L ake V ictoria waters, as well as in adjacent terrestrial aquatic habitats and even beyond.

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