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Biology subjects

Koene, J. P.

Publications and source records attributed to Koene, J. P..

2 recordsLinked to original sources

Multiple genetic origins of non-native, self-sustaining rainbow trout Oncorhynchus mykiss in streams in Baden-Wuerttemberg, Germany

Introduced in the late 19th Century, Oncorhynchus mykiss (rainbow trout) have been stocked historically in streams throughout Baden-Wurttemberg, Germany, and some populations have become self-sustaining with unclear impact on native salmonid populations. We sampled 223 rainbow trout from 14 streams and 3 hatcheries, from which the streams are known to have been stocked. We conducted genomic analyses to uncover evidence confirming self-sustaining populations, to deduce potential sources of these populations, to compare the genetic diversity of hatchery vs stream populations, and to discover genetic differences between stream and hatchery populations. We found genetic population structuring amongst the stream populations, consistent with natural reproduction over several generations, and we inferred multiple genetic origins, potentially including source populations beyond the three hatcheries considered. We found no significant difference in genetic diversity between stream and hatchery populations, but there were specific positions in the genome associated with naturalisation within or adjacent to immunity, growth and development genes. Whether such genes are under selection in wild stream environments needs still to be determined to inform fisheries and conservation management.

evolutionary biology↗

A critical role for brain nutrition in the life-history decisions of a partially migratory fish

The role played by omega-3 long-chain polyunsaturated fatty acids (n-3 LC-PUFA) in life-history polymorphisms in partially migratory species remains poorly understood. Yet, brain development is highly dependent upon nutrition, particularly the supply of n-3 LC-PUFA, derived from diet or internally converted from their shorter-chain precursors, and the fitness of animals may be shaped by cognitive performance, including effective spatial navigation required by migration. We investigated juveniles of a wild polymorphic population of brown trout, Salmo trutta, with three distinct migratory ecotypes, at the point of first outward migration. Using a combination of fatty acid contents, compound-specific stable isotope analysis, and liver transcriptomics, we found that non-migrants compensated for dietary deficiency by biosynthesising n-3 LC-PUFA from precursor molecules and routing them to cell membranes to a greater extent than did migrants. These findings highlight contrasting intake and processing between migratory and non-migratory life histories of nutrients associated with brain development.

ecology↗