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Suurvaeli, J.

Publications and source records attributed to Suurvaeli, J..

2 recordsLinked to original sources

Evolved for success in novel environments: the round goby genome

Since the beginning of global trade, hundreds of species have colonized territories outside of their native range. Some of these species proliferate at the expense of native ecosystems, i.e., have become invasive. Invasive species constitute powerful in situ experimental systems to study fast adaptation and directional selection on short ecological timescales. They also present promising case studies for ecological and evolutionary success in novel environments.\n\nWe seize this unique opportunity to study genomic substrates for ecological success and adaptability to novel environments in a vertebrate. We report a highly contiguous long-read based genome assembly for the most successful temperate invasive fish, the benthic round goby (Neogobius melanostomus), and analyse gene families that may promote its impressive ecological success.\n\nOur approach provides novel insights from the large evolutionary scale to the small species-specific scale. We describe expansions in specific cytochrome P450 enzymes, a remarkably diverse innate immune system, an ancient duplication in red light vision accompanied by red skin fluorescence, evolutionary patterns in epigenetic regulators, and the presence of genes that may have contributed to the round gobys capacity to invade cold and salty waters.\n\nA recurring theme across all analyzed gene families are gene expansions. This suggests that gene duplications may promote ecological flexibility, superior performance in novel environments, and underlie the impressive colonization success of the round goby. Gobiidae generally feature fascinating adaptations and are excellent colonizers. Further long-read genome approaches across the goby family may reveal whether the ability to conquer new habitats relates more generally to gene copy number expansions.

ecology

The laboratory domestication of zebrafish: from diverse populations to inbred substrains

The zebrafish (Danio rerio) is a model vertebrate widely used to study disease, development and other aspects of vertebrate biology. Most of the research is performed on laboratory strains, one of which has been fully sequenced in order to derive a reference genome. It is known that the laboratory strains differ genetically from each other, but so far no genome-scale survey of variation between the laboratory and wild zebrafish populations exists.\n\nHere we use Restriction-Associated DNA sequencing (RAD-seq) to characterize three different wild zebrafish lineages from a population genetic viewpoint, and to compare them to four common laboratory strains. For this purpose we combine new genome-wide sequence data obtained from natural samples in India, Nepal and Bangladesh with a previously published dataset. We measured nucleotide diversity, heterozygosity, allele frequency spectra and patterns of gene conversion, and find that wild fish are much more diverse than laboratory strains. Further, in wild zebrafish there is a clear signal of GC-biased gene conversion that is missing in laboratory strains. We also find that zebrafish populations in Nepal and Bangladesh are distinct from all the other strains studied, making them an attractive subject for future studies of zebrafish population genetics and molecular ecology. Finally, isolates of the same strains kept in different laboratories show a clear pattern of ongoing differentiation into genetically distinct substrains. Together, our findings broaden the basis for future genetic and evolutionary studies in Danio rerio.

genetics