Keyword search (4,164 papers available)

"fisheries" Keyword-tagged Publications:

Title Authors PubMed ID
1 Intraspecific complexity in mercury contamination of two harvested fishes revealed by genetics: Food security and conservation implications Gibelli J; Michaelides S; Won H; Chamlian B; Bampfylde C; Maclean B; Giroux P; Gray QZ; Voyageur M; Jeon HB; Bouchard R; Fraser DJ; 41380599
BIOLOGY
2 Strengthening community-based fisheries monitoring programs with Indigenous perspectives Dewan K; Mulrennan ME; Georgekish E; 41332192
CONCORDIA
3 Genomics-Enabled Mixed-Stock Analysis Uncovers Intraspecific Migratory Complexity and Detects Unsampled Populations in a Harvested Fish Gibelli J; Won H; Michaelides S; Jeon HB; Fraser DJ; 39995301
BIOLOGY
4 Development of SNP Panels from Low-Coverage Whole Genome Sequencing (lcWGS) to Support Indigenous Fisheries for Three Salmonid Species in Northern Canada Beemelmanns A; Bouchard R; Michaelides S; Normandeau E; Jeon HB; Chamlian B; Babin C; Hénault P; Perrot O; Harris LN; Zhu X; Fraser D; Bernatchez L; Moore JS; 39552382
BIOLOGY
5 Demographic resilience of brook trout populations subjected to experimental size-selective harvesting Clarke SH; McCracken GR; Humphries S; Ruzzante DE; Grant JWA; Fraser DJ; 36426123
BIOLOGY
6 Size reductions and genomic changes within two generations in wild walleye populations: associated with harvest? Bowles E, Marin K, Mogensen S, MacLeod P, Fraser DJ 32684951
CONCORDIA
7 A critical assessment of estimating census population size from genetic population size (or vice versa) in three fishes. Yates MC, Bernos TA, Fraser DJ 29151884
BIOLOGY

 

Title:Demographic resilience of brook trout populations subjected to experimental size-selective harvesting
Authors:Clarke SHMcCracken GRHumphries SRuzzante DEGrant JWAFraser DJ
Link:https://pubmed.ncbi.nlm.nih.gov/36426123/
DOI:10.1111/eva.13478
Publication:Evolutionary applications
Keywords:effective population sizefisheries managementgenetic compensationpopulation genetics
PMID:36426123 Category: Date Added:2022-11-25
Dept Affiliation: BIOLOGY
1 Department of Biology Concordia University Montreal Quebec Canada.
2 Department of Biology Dalhousie University Halifax Nova Scotia Canada.
3 Lake Louise, Yoho, and Kootenay Field Unit, Parks Canada Radium Hot Springs British Columbia Canada.

Description:

Sustainable management of exploited populations benefits from integrating demographic and genetic considerations into assessments, as both play a role in determining harvest yields and population persistence. This is especially important in populations subject to size-selective harvest, because size selective harvesting has the potential to result in significant demographic, life-history, and genetic changes. We investigated harvest-induced changes in the effective number of breeders ( N ^ b ) for introduced brook trout populations (Salvelinus fontinalis) in alpine lakes from western Canada. Three populations were subject to 3 years of size-selective harvesting, while three control populations experienced no harvest. The N ^ c decreased consistently across all harvested populations (on average 60.8%) but fluctuated in control populations. There were no consistent changes in N ^ b between control or harvest populations, but one harvest population experienced a decrease in N ^ b of 63.2%. The N ^ b / N ^ c ratio increased consistently across harvest lakes; however we found no evidence of genetic compensation (where variance in reproductive success decreases at lower abundance) based on changes in family evenness ( FE ^ ) and the number of full-sibling families ( N ^ fam ). We found no relationship between FE ^ and N ^ c or between N ^ fam / N ^ c and FE ^ . We posit that change in N ^ b was buffered by constraints on breeding habitat prior to harvest, such that the same number of breeding sites were occupied before and after harvest. These results suggest that effective size in harvested populations may be resilient to considerable changes in Nc in the short-term, but it is still important to monitor exploited populations to assess the risk of inbreeding and ensure their long-term survival.





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