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Genome sequence analysis provides evidence that a boreal crustacean colonised Svalbard well before the ongoing Atlantification of the Arctic.

The study of present-day species distributions often raises questions about historical demography. A particularly interesting phenomenon to put in historical context is contemporary human-induced atlantification and its role in reshaping Arctic ecosystems. Despite this, the colonisation history of the Arctic remains generally understudied. In this study, we investigated the demographic history of the northern acorn barnacle, Semibalanus balanoides, a typically boreal species on the Svalbard Archipelago. Our focus was to determine the source and timing of its colonisation of this Arctic archipelago. Using low-coverage whole-genome sequence data, we evaluated two competing hypotheses: whether S. balanoides populations colonised Svalbard through ancient natural processes before the Anthropocene, or if their appearance is more recent, either natural or a consequence of growing anthropogenic influences, such as increased connectivity and global warming. Our results suggest that this boreal species expanded into the Arctic during the later phase of the Holocene Thermal Optimum, well before human-induced climate change.

Animals

Free-running human circadian rhythms in Svalbard.

The body temperature, activity-rest time, electrolytes of urine samples and mood was measured in two persons a 19 day period under continuous light conditions in the arctic (vicinity of Ny Alesund, Svalbard-Spitsbergen). For temperature recording a new thermoprobe and a portable printer was used. Possible week Zeitgeber of the 24 hour day did not synchronize the circadian system, since circadian rhythms of about 26 hours were found. These results open up the possibility to study effects of drugs on the circadian system of humans under Svalbard conditions.

Adult

The composition and distribution of PCB in arctic fox (Alopex lagopus) caught near Longyearbyen on Svalbard.

Samples from 44 arctic foxes (Alopex lagopus), caught near Longyearbyen on Svalbard, were analyzed with respect to their content of PCB. Gas chromatographic-mass spectrometric investigations revealed that 7 PCB components constituted the main part of the total PCB present. These components were quantified individually. A moderate degree of PCB contamination was recorded. Calculated on a fat weight basis, the total concentrations of PCB in fat tissue and liver were about equal, but the relative amounts of most of the PCB components present were different in the 2 tissues. The total amount of PCB in brain, calculated on a fat weight basis, was significantly less than the corresponding concentrations in liver, kidney, muscle, and fat tissue. The special distribution trend observed in this study is related to the structure of the PCB components present and the arctic nature of the sampling area.

Adipose Tissue

Carriage of Neisseria meningitidis in a semi-isolated arctic community.

The carriage of Neisseria meningitidis was examined in the Norwegian population of Svalbard (1150 persons) after a fatal case of meningococcal septicaemia. The overall carrier rate was 39.0%. The rate was highest among males (47.8%), with a maximum of 63.4% in the age group 15-24 years. The carrier rate was low among children aged 3 to 15 years (6.5%). Children below 3 years were frequent meningococcal carriers, however (37.5%). Sulphonamide-resistant strains were often found, 22.6% of the total material being resistant. Group B was the most frequent serogroup, and accounted for 44.5% of the isolated strains. Non-groupable strains were second in frequency (23.8%), followed by group Y (15.8%). Only a few strains belonged to the serogroups A, C, X and Z. N. lactamica was isolated from 26.9% of children below 15 years, but seldom in older age groups.

Adolescent

Genomic analysis of an Arctic marine Tenacibaculum sp. SM2510 reveals its genetic potential for glutathione utilization.

Glutathione is a key intracellular antioxidant, playing a crucial role in resisting oxidative stress and maintaining cellular redox homeostasis. However, the glutathione metabolic capacity of Tenacibaculum remains poorly characterized. In this study, a Gram-stain-negative bacterium, Tenacibaculum sp. SM2510, was isolated from seawater collected from Kongsfjorden, Svalbard, Norway. Genome sequencing revealed that the strain possesses a single circular chromosome of 2,904,982 bp with a G + C content of 31.44%, encoding 2564 protein-coding genes. Genomic analysis indicates that Tenacibaculum sp. SM2510 may directly take up extracellular oxidized glutathione (GSSG) and reduce it to reduced glutathione (GSH) through a reductive pathway, which potentially allows the strain to alleviate the accumulation of reactive oxygen species (ROS) caused by strong ultraviolet radiation and low temperature in polar environments. Furthermore, genomic analysis predicts that the strain degrades GSH to produce essential life-sustaining substances. In conclusion, these results suggest that Tenacibaculum sp. SM2510 may potentially utilize exogenous glutathione for both antioxidant defense and nutrient acquisition through direct GSH degradation, providing new insights into the environmental adaptive evolution of polar marine bacteria.

Tenacibaculum

Exploring biohydrogen producing potential of Arctic ice and water through metagenomics and dark fermentation kinetics.

Cryospheric ecosystems in the high Arctic harbor largely unexplored microbiomes with significant biotechnological potential. The present study evaluates the biohydrogen production capabilities of the indigenous microbiome of Ny-Ålesund, Svalbard, using glacial ice and surface water samples. Dark fermentation batch assays were performed at 4 °C and 20 °C with 2-bromoethanesulfonate (BES), a methanogenic inhibitor, to track the succession of metabolic and taxonomic diversity. Metagenomic and functional analyses revealed that under 20 °C and BES conditions, psychrotolerant microbial communities maximize biohydrogen production to 85% of the total biogas produced, with an acetate-dominant fermentation pathway, as inferred from volatile fatty acid (VFA) analysis. This evolves into a highly coordinated system utilizing a coupled Rnf-nitrogenase route alongside Formate Hydrogenlyase and [FeFe]-hydrogenase pathways. Kinetic modelling using the Modified Gompertz equation, along with Q10 temperature-sensitivity indices, demonstrated a very high latent catalytic potential in these cold-adapted microbiomes. This study indicates that Arctic microbiomes are highly elastic thermodynamically and could serve as highly efficient, manipulatable biocatalysts for the environmental recovery of bioenergy through engineered low-temperature systems.

Fermentation

The Spitzbergen reindeer--a winter-dormant ungulate?

Seasonal changes in serum levels of growth hormone, cortisol and thyroxine in calves and adult Spitzbergen reindeer (Rangifer tarandus platyrynchus) were measured and compared to those previously found in Norwegian reindeer (R.t. tarandus). Cortisol did not differ significantly between summer and winter, or between the subspecies. Growth hormone and thyroxine exhibited highly significant seasonal changes and subspecific differences: winter levels of growth hormone were much higher than summer levels in the Spitzbergen reindeer, while Norwegian reindeer differed very little from season to season. Both Spitzbergen and Norwegian reindeer had markedly reduced thyroxine levels during winter, but the values from the former were much lower than those from the latter. In summer, however, the levels were equal. The high levels of growth hormone and low levels of thyroxine in the Spitzbergen reindeer during winter are indicative of high lipolytic activity and a reduced metabolic rate, respectively.

Animals