Keyword search (4,163 papers available)

"Kraemer SA" Authored Publications:

Title Authors PubMed ID
1 A multiyear time series (2004-2012) of bacterial and archaeal community dynamics in a changing Arctic Ocean Kraemer SA; Ramachandran A; Onana VE; Li WKW; Walsh DA; 38282643
BIOLOGY
2 Publisher Correction: A genome catalogue of lake bacterial diversity and its drivers at continental scale Garner RE; Kraemer SA; Onana VE; Fradette M; Varin MP; Huot Y; Walsh DA; 37821571
BIOLOGY
3 A genome catalogue of lake bacterial diversity and its drivers at continental scale Garner RE; Kraemer SA; Onana VE; Fradette M; Varin MP; Huot Y; Walsh DA; 37524802
BIOLOGY
4 Geospatial analysis reveals a hotspot of fecal bacteria in Canadian prairie lakes linked to agricultural non-point sources Oliva A; Onana VE; Garner RE; Kraemer SA; Fradette M; Walsh DA; Huot Y; 36653256
BIOLOGY
5 A resistome survey across hundreds of freshwater bacterial communities reveals the impacts of veterinary and human antibiotics use Kraemer SA; Barbosa da Costa N; Oliva A; Huot Y; Walsh DA; 36338036
BIOLOGY
6 Comparing microscopy and DNA metabarcoding techniques for identifying cyanobacteria assemblages across hundreds of lakes MacKeigan PW; Garner RE; Monchamp MÈ; Walsh DA; Onana VE; Kraemer SA; Pick FR; Beisner BE; Agbeti MD; da Costa NB; Shapiro BJ; Gregory-Eaves I; 35287928
BIOLOGY
7 A large-scale assessment of lakes reveals a pervasive signal of land use on bacterial communities. Kraemer SA, Barbosa da Costa N, Shapiro BJ, Fradette M, Huot Y, Walsh DA 32770118
BIOLOGY
8 Antibiotic Pollution in the Environment: From Microbial Ecology to Public Policy. Kraemer SA, Ramachandran A, Perron GG 31234491
BIOLOGY
9 Inferring the distribution of fitness effects of spontaneous mutations in Chlamydomonas reinhardtii. Böndel KB, Kraemer SA, Samuels T, McClean D, Lachapelle J, Ness RW, Colegrave N, Keightley PD 31242179
BIOLOGY

 

Title:A multiyear time series (2004-2012) of bacterial and archaeal community dynamics in a changing Arctic Ocean
Authors:Kraemer SARamachandran AOnana VELi WKWWalsh DA
Link:https://pubmed.ncbi.nlm.nih.gov/38282643/
DOI:10.1093/ismeco/ycad004
Publication:ISME communications
Keywords:climate changemarine microbiologyocean
PMID:38282643 Category: Date Added:2024-01-29
Dept Affiliation: BIOLOGY
1 Environment and Climate Change Canada, Montreal, Quebec, H2Y 2E7, Canada.
2 Department of Biology, Concordia University, Montreal, Quebec, H4B 1R6, Canada.
3 Department of Fisheries and Oceans, Bedford Institute of Oceanography, Dartmouth, Nova Scotia, B2Y 4A2, Canada.

Description:

Climate change is profoundly impacting the Arctic, leading to a loss of multiyear sea ice and a warmer, fresher upper Arctic Ocean. The response of microbial communities to these climate-mediated changes is largely unknown. Here, we document the interannual variation in bacterial and archaeal communities across a 9-year time series of the Canada Basin that includes two historic sea ice minima (2007 and 2012). We report an overall loss of bacterial and archaeal community richness and significant shifts in community composition. The magnitude and period of most rapid change differed between the stratified water layers. The most pronounced changes in the upper water layers (surface mixed layer and upper Arctic water) occurred earlier in the time series, while changes in the lower layer (Pacific-origin water) occurred later. Shifts in taxonomic composition across time were subtle, but a decrease in Bacteroidota taxa and increase in Thaumarchaeota and Euryarchaeota taxa were the clearest signatures of change. This time series provides a rare glimpse into the potential influence of climate change on Arctic microbial communities; extension to the present day should contribute to deeper insights into the trajectory of Arctic marine ecosystems in response to warming and freshening.





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