Introduced species offer an opportunity to study the ecological process of
range expansions. Recently, 3 mechanisms have been identified that may
resolve the genetic paradox (the seemingly unlikely success of introduced
species given the expected reduction in genetic diversity through
bottlenecks or founder effects): multiple introductions, high propagule
pressure, and epigenetics. These mechanisms are probably also important in
range expansions (either natural or anthropogenic), yet this possibility
remains untested in vertebrates. We used microsatellite variation (7 loci)
in house sparrows (Passer domesticus), an introduced species that has been
spreading across Kenya for ~60 years, to determine if patterns of
variation could explain how this human commensal overcame the genetic
paradox and expresses such considerable phenotypic differentiation across
this new range. We note that in some cases, polygenic traits and epistasis
among genes, for example, may not have negative effects on populations.
House sparrows arrived in Kenya by a single introduction event (to
Mombasa, ~1950) and have lower genetic diversity than native European and
introduced North American populations. We used Bayesian clustering of
individuals (n = 233) to detect that at least 2 types of range expansion
occurred in Kenya: one with genetic admixture and one with little to no
admixture. We also found that genetic diversity increased toward a range
edge, and the range expansion was consistent with long-distance dispersal.
Based on these data, we expect that the Kenyan range expansion was
anthropogenically influenced, as the expansions of other introduced human
commensals may also be. Schrey et al House
Sparrow Kenya MsatGenpop data file of
Kenyan house sparrows. Abbreviations are defined in
text.