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Biology subjects

Herrera-Castillo, C. M.

Publications and source records attributed to Herrera-Castillo, C. M..

2 recordsLinked to original sources

Assessing planktivorous fish as vectors of a plankton parasite

Predators are often considered regulators of disease in prey populations, a concept central to the "healthy herd hypothesis". This hypothesis suggests that by preferentially removing infected individuals, predators can reduce parasite prevalence. However, predators may also act as disease vectors, facilitating the spread of parasites. We investigated whether stickleback fish (Gasterosteus aculeatus) can act as vectors for the transmission of the obligate bacterial parasite Pasteuria ramosa to its Daphnia host, a widespread freshwater zooplanktor. We fed infected D. magna to sticklebacks, and subsequently analysed faecal samples for the presence, viability, and infectivity of parasite transmission stages (= spores). We recovered approximately 60% of the consumed spores from fish faeces and these spores did not suffer from reduced infectivity to D. magna. Additionally, spores associated with sloppy feeding did not reduce infection rates. Thus, consumption of infected hosts by fish does not eliminate the parasite, but in contrary, may contribute to the spread and persistence of P. ramosa in natural populations, potentially influencing parasite dynamics in natural freshwater ecosystems.

ecology↗

Developmental genetic basis of dorsal spine reduction in acidic-adapted threespine stickleback fish

The repeated emergence of similar phenotypes in independent populations is a widespread feature of evolution, yet the extent to which repeated evolution reflects shared molecular mechanisms, and the factors that determine this similarity, remain unclear. Here, we investigate the genetic basis of dorsal spine reduction in threespine stickleback fish, an adaptive trait that has evolved repeatedly in freshwater populations. Phenotypic analyses of crosses between a spine-reduced population from Scotland and the ancestral marine form reveal a major-effect locus, with the spine-reducing allele acting dominantly and influencing body patterning. Bulk segregant analysis maps this effect to a single region on chromosome VI that overlaps the hoxdb gene cluster. Transcriptomic analyses of larval stages show a gain of hoxdb expression in the developing spine region of spine-reduced fish, consistent with the dominance of the derived allele. Together, these results indicate dorsal spine reduction in threespine stickleback through cis-regulatory changes at hoxdb, a mechanism found to mediate dorsal spine evolution in a different species of stickleback fish too. These findings highlight the role of hox genes in adaptive divergence between natural populations within a species and provide a clear example of parallel evolution at the molecular level between species.

evolutionary biology↗