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Hedtke, S. M.

Publications and source records attributed to Hedtke, S. M..

2 recordsLinked to original sources

Distinct biogeographic origins of androgenetic Corbicula lineages followed by genetic captures

AO_SCPLOWBSTRACTC_SCPLOW"Occasional" sexuality occurs when a species combines clonal reproduction and genetic mixing. This strategy is predicted to combine the advantages of both asexuality and sexuality, but its actual consequences on the genetic diversity and species longevity are poorly understood. Androgenesis, a reproductive mode in which the offspring inherits its entire nuclear genome from the father, is often reported as a strictly clonal reproductive mode. Androgenesis is the predominant reproductive mode within the hermaphroditic, invasive lineages of the mollusk genus Corbicula. Their ability to reproduce clonally through androgenesis has been determinant in their invasive success, having colonized during the 20th century American and European freshwater systems, where they became notorious invaders with a widespread, global distribution. However, in androgenetic Corbicula clams, occasional genetic mixing between distinct lineages has also been observed when the sperm of one lineage fertilizes the oocyte of another one. Because of these occasional introgressions, the genetic relationships between Corbicula species remained unclear, and the biogeographic origins of the invasive androgenetic lineages have been challenging to identify. To address these issues, we analyzed the patterns of allele sharing for several nuclear and mitochondrial molecular markers among Corbicula individuals collected across both the native and invasive range. Our results show the occurrence of an allelic pool encompassing all Corbicula freshwater species worldwide, including sexual and androgenetic ones, which highlights the substantial genetic mixing within this genus. However, the differences in allele sharing patterns between invasive lineages, and the low diversity within each lineage, suggest recent, distinct biogeographic origins of invasive Corbicula androgenetic lineages. Finally, the polyploidy, high heterozygosity, and hybrid phenotypes and genotypes found in our study probably originated from hybridization events following egg parasitism between distinct Corbicula lineages. This extensive cross-lineage mixing found in Corbicula may generate nuclear diversity in an otherwise asexually reproducing species.

evolutionary biology

Reduced variation in Wolbachia density of larval stages in comparison with adults of Onchocerca volvulus: implications for clinical outcome of infection?

BackgroundWolbachia are important endosymbionts of filarial parasites. The Wolbachia of Onchocerca volvulus, the filarial pathogen responsible for the human disease onchocerciasis, is implicated in the immunopathology of the disease and may be associated with disease severity dependent on the density of Wolbachia. However, little is known in regards to the density and heterogeneity of Wolbachia in microfilariae, the life stage that is thought to be responsible for the pathology.\n\nResultsWe used a real-time qPCR relative copy number assay to estimate the number of Wolbachia genome(s) per nuclear genome of skin microfilariae (Mf), vector L1 and iL3, and nodulectomy adult male and female O. volvulus worms sampled in Ghana and the Democratic Republic of the Congo. Relatively low median Wolbachia copy numbers and variation was observed in the Mf and vector stages, in contrast to significantly higher median and more variable Wolbachia copy number from the iL3 stage to the adult worm stages.\n\nConclusionsThis study provides the first insight into variation in Wolbachia density between the major life stages of the parasite. The relatively invariant ratios observed for Mf and vector stages is in strong contrast to the high degree of variability of Wolbachia to nuclear ratios in adults and may indicate that the mutualistic relationship between the nematode and Wolbachia in these earlier stages is regulated differently, and certainly more stringently, than the relationship in adults.

molecular biology