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Palm, S.

Publications and source records attributed to Palm, S..

2 recordsLinked to original sources

Loci associated with migration, maturation and appetite control are linked with signals of fine-scale local selection in a large Atlantic salmon population

Insights into the genetic basis of local adaptation and drivers of population differentiation improve our understanding of evolution and the maintenance of biological diversity. Characterising adaptively important genetic variation also allows more efficient planning of conservation and management actions. We used a genome-wide SNP array to analyse the genetic population structure of a large Atlantic salmon (Salmo salar) population in the interconnected Tornio/Torne and Kalix River system of the Baltic Sea basin, and to identify genomic signatures of fine-scale selection within it. We identified signals of selection and genotype-environment associations (GEA) especially on chromosome (Chr) 9, including on a haploblock containing the six6 gene and other loci that have been earlier suggested to be adaptively important in salmonids. We also detected signals of selection in genome regions including other genes of ecological relevance, such as two known appetite-controlling genes in the melanocortin system (pomca on Chr 9 and mc4r on Chr 14), and the maturation-associated gene taar13c-like (on Chr 21). Variation in these and other identified candidate genes may potentially reflect differential selective pressures experienced by salmon from different parts of the large river system, regarding traits related to e.g. vision, feeding and growth, age at maturity and/or migratory timing. This indicates a need for management strategies to consider ecologically important genomic regions such as these, in order to protect adaptive genetic diversity in wild salmon populations.

evolutionary biology↗

Lesion Network Localization of a Stable Personality Trait

ObjectiveTo identify a convergent neuroanatomical substrate for novelty seeking (NS), a stable personality trait, which could serve as a therapeutic target for transcranial magnetic stimulation (TMS). MethodsWe analyzed two independent datasets (total n=136) in which the Temperament and Character Inventory (TCI) was used to document alterations across 7 stable personality traits before and after brain lesions surgically induced by glioma resection. Using lesion network mapping, we examined whether alterations in NS were causally associated with lesions to specific brain networks. We assessed for strength of replication across datasets and specificity against other personality traits. ResultsLesion locations that are linked to NS map to a common brain with its largest cluster in the dorsal cingulate. This map was specific to NS relative to other personality traits and overlapped with prior published neuroimaging findings related to the term "novelty". Utilizing a pre-computed connectome, we also derived a map highlighting potential targets for non-invasive brain stimulation that may alter this stable personality trait. ConclusionsWe derived and cross-validated a brain network that is functionally connected to lesions that are causally responsible for the stable personality trait "novelty seeking". Lesions to this network were associated with changes in NS. This includes a superficial node within the dorsolateral prefrontal cortex that may serve as a promising TMS target to modulate or protect against abnormal NS.

neuroscience↗