An eco-epidemiological investigation was carried out on Madagascar bat
communities to better understand the evolutionary mechanisms and
environmental factors that affect virus transmission among bat species in
closely related members of the genus Morbillivirus, currently referred to
as Unclassified Morbilli-related paramyxoviruses (UMRVs). A total of 947
bats were investigated originating from 52 capture sites (22 caves, 18
buildings, and 12 outdoor sites) distributed over different bioclimatic
zones of the island. Using RT-PCR targeting the L-polymerase gene of the
Paramyxoviridae family, we found that 10.5% of sampled bats were infected,
representing six out of seven families and 15 out of 31 species analyzed.
Univariate analysis indicates that both abiotic and biotic factors may
promote viral infection. Using generalized linear modeling of UMRV
infection overlaid on biotic and abiotic variables, we demonstrate that
sympatric occurrence of bats is a major factor for virus transmission.
Phylogenetic analyses revealed that all paramyxoviruses infecting Malagasy
bats are UMRVs and showed little host specificity. Analyses using the
maximum parsimony reconciliation tool CoRe-PA, indicate that
host-switching, rather than co-speciation, is the dominant
macro-evolutionary mechanism of UMRVs among Malagasy bats. Database Malagasy
batsDescription of bats
collected in MadagascarBat paramyxoviruses
database.xls