Among the many negative impacts of invasive species, hybridization with
indigenous species has increasingly become recognized as a major issue.
However, few studies have characterized the phenotypic outcomes of
hybridization following biological invasions. Here we investigate the
genetic and morphological consequences of stocking invasive tilapia
species in two water bodies in central Tanzania. We sampled individuals
from Mindu Reservoir on the Ruvu river system, and at Kidatu on the Great
Ruaha-Rufiji river system. We screened individuals at 16 microsatellite
loci, and quantified morphology using geometric morphometrics and linear
measurements. In both the Mindu and Kidatu systems, we identified evidence
of hybridization between indigenous Wami tilapia (Oreochromis urolepis)
and the introduced Nile tilapia (Oreochromis niloticus) or blue-spotted
tilapia (Oreochromis leucostictus). At both sites, purebred individuals
could largely be separated using geometric morphometric variables, with
hybrids occupying a broad morphospace among the parental species. Our data
demonstrate that the gene pools and phenotypic identity of the indigenous
O. urolepis have been severely impacted by the stocking of the invasive
species. Given the lack of evidence for clear commercial benefits from
stocking invasive tilapia species in waters already populated by
indigenous congenerics, we suggest further spread of introduced species
should be undertaken with considerable caution. Shechonge_MicrosatelliteData_Dryad_2018Microsatellite data, Convert format, for focal sites and reference samplesShechonge_GeometricMorphometricDataLandmark coordinates, tps fileMorphometric dataLinear measurements. Included are species assignments based on the genetic data (Structure output).Shechonge_MorphometricData_Submitted2018.xlsx