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We analysed a diploid population model with a mixed breeding system that includes panmixia and apomixis.
Our results support postglacial genetic divergence between D. parvula and D. retrocurva despite a mixed breeding system and high dispersal.
The present study suggests a role for predation in facilitating habitat isolation in young sister species with a mixed breeding system.
Both species typically have a mixed breeding system with relatively infrequent sex [ 42, 44, 45, 47] and illustrate strong dispersal capabilities [ 47, 64, 73].
Despite their young age and mixed breeding system, D. parvula and D. retrocurva exhibit significant ecological and genetic divergence that is coincident with the formation of deep temperate glacial lakes.
The cladocerans, Daphnia parvula Fordyce, 1901 and Daphnia retrocurva Forbes, 1882 (Fig. 1), provide an opportunity to study the role of ecological factors in promoting rapid divergence in potentially young lacustrine taxa with a mixed breeding system.
Similar(52)
Thus, organisms with mixed breeding systems such as cyclic parthenogens (cladocerans, rotifers, aphids etc).
Most organisms with mixed breeding systems are very small and lack a detailed fossil record.
If radiations in organisms with mixed breeding systems can be rapid, then why are so few known?
Our study and the recent evidence from other systems challenge the proposals that organisms with mixed breeding systems suffer a reduced speciation potential.
Mixed breeding systems with extended clonal phases and weak sexual recruitment are widespread in nature but often thought to impede the formation of discrete evolutionary clusters.
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