Keyword search (4,164 papers available)

"population" Keyword-tagged Publications:

Title Authors PubMed ID
1 Integrated metabolomics and metagenomics analysis identifies a unique signature characterizing metabolic syndrome Wannaiampikul S; Lee B; Chen J; Prentice KJ; Ayansola R; Xu A; Santosa S; Pantopoulos K; Sweeney G; 41794383
HKAP
2 Establishing work productivity loss norms: Absenteeism and presenteeism in a Canadian working population Zhang W; Qian H; L' Heureux J; Johns G; Koehoorn M; Woodcock S; 41469277
JMSB
3 Geography, Ancestry, Age and Sex Shape Somatic Autosomal Mosaic Chromosomal Alterations in Blood Won Kang JR; Kim YJ; Skead K; Soave D; Evans J; Bruat V; Harwood MP; Morris Q; Matovu E; Mulindwa J; Noyes H; McLeod A; Hazelhurst S; Lombard Z; Ramsay M; Fave MJ; Awadalla P; 41282824
BIOLOGY
4 Understanding COVID-19 vaccination disparity among Black adults in North America: A two-study motivational approach Fang X; Holding AC; Audet ÉC; Thai H; Koestner R; 41043306
PSYCHOLOGY
5 Colistin heteroresistance, mechanisms, diagnostic methods, and therapeutic options: A review Dehbanipour R; Maleki VTZ; Ghalavand Z; 40949035
BIOLOGY
6 A portrait of online gambling: a look at a transformation amid a pandemic Kairouz S; Savard AC; Murch WS; Dixon MR; Martin NB; Brodeur M; Dauphinais S; Ferland F; Hamel D; Dufour M; French M; Monson E; Van Mourik V; Morvannou A; 40770758
CONCORDIA
7 Threatened Birds in a Changing Mediterranean Wetland: Long-Term Trends and Climate-Driven Threats Bouregbi I; Bensakhri Z; Zebsa R; Zouaimia A; Bensouilah S; Bouteraa O; Khelifa R; Ouakid ML; Mahdjoub H; Houhamdi M; 40566545
BIOLOGY
8 Shared Dispersal Patterns but Contrasting Levels of Gene Flow in Two Anadromous Salmonids Along a Broad Subarctic Coastal Gradient Bouchard R; Babin C; Normandeau E; Xuereb A; Boulanger F; Coxon A; Diamond S; Fireman R; Lameboy J; Louttit N; Natawapineskum G; Okimaw D; Torio D; Varty S; Moore JS; Fraser D; Bernatchez L; 40108992
CONCORDIA
9 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
10 Temporal Variability in Effective Size ( [Formula] ) Identifies Potential Sources of Discrepancies Between Mark Recapture and Close Kin Mark Recapture Estimates of Population Abundance Ruzzante DE; McCracken GR; Fraser DJ; MacMillan J; Buhariwalla C; Flemming JM; 39582254
BIOLOGY
11 Trends in nighttime insomnia symptoms in Canada from 2007 to 2021 Chaput JP; Morin CM; Robillard R; Carney CE; Dang-Vu TT; Davidson JR; Tomkinson GR; Lang JJ; 39556998
HKAP
12 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
13 When population growth intensifies intergroup competition, female colobus monkeys free-ride less Arseneau-Robar TJ; Teichroeb JA; Macintosh AJJ; Saj TL; Glotfelty E; Lucci S; Sicotte P; Wikberg EC; 38906888
BIOLOGY
14 Simultaneous automated ascertainment of prevalent vertebral fracture and abdominal aortic calcification in clinical practice: role in fracture risk assessment Schousboe JT; Lewis JR; Monchka BA; Reid SB; Davidson MJ; Kimelman D; Jozani MJ; Smith C; Sim M; Gilani SZ; Suter D; Leslie WD; 38699950
ENCS
15 Global assessment of effective population sizes: Consistent taxonomic differences in meeting the 50/500 rule Clarke SH; Lawrence ER; Matte JM; Gallagher BK; Salisbury SJ; Michaelides SN; Koumrouyan R; Ruzzante DE; Grant JWA; Fraser DJ; 38613250
BIOLOGY
16 Recruitment dynamics of juvenile salmonids: Comparisons among populations and with classic case studies Matte JO; Fraser DJ; Grant JWA; 38599588
BIOLOGY
17 Microgeographic variation in demography and thermal regimes stabilize regional abundance of a widespread freshwater fish Gallagher BK; Fraser DJ; 38071739
BIOLOGY
18 Macrogenetics reveals multifaceted influences of environmental variation on vertebrate population genetic diversity across the Americas Lawrence ER; Pedersen EJ; Fraser DJ; 37365672
BIOLOGY
19 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
20 Population demography maintains biogeographic boundaries Schmidt C; Muñoz G; Lancaster LT; Lessard JP; Marske KA; Marshall KE; Garroway CJ; 35753949
BIOLOGY
21 Varying genetic imprints of road networks and human density in North American mammal populations Habrich AK; Lawrence ER; Fraser DJ; 34178111
BIOLOGY
22 Disturbance-induced emigration: an overlooked mechanism that reduces metapopulation extinction risk Mestre A; Barfield M; Peniston JH; Peres-Neto PR; Mesquita-Joanes F; Holt RD; 34086976
BIOLOGY
23 Exploring the threat-sensitive predator avoidance hypothesis on mate competition in two wild populations of Trinidadian guppies. Chuard PJC, Grant JWA, Ramnarine IW, Brown GE 32860863
BIOLOGY
24 Evaluating Public Health Interventions: A Neglected Area in Health Technology Assessment. Stojanovic J, Wübbeler M, Geis S, Reviriego E, Gutiérrez-Ibarluzea I, Lenoir-Wijnkoop I 32391300
HKAP
25 Small population size and low genomic diversity have no effect on fitness in experimental translocations of a wild fish. Yates MC, Bowles E, Fraser DJ 31771476
BIOLOGY
26 Population variation in density-dependent growth, mortality and their trade-off in a stream fish. Matte JM, Fraser DJ, Grant JWA 31642512
BIOLOGY
27 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
28 Genetic diversity of small populations: Not always "doom and gloom"? Fraser DJ 29243868
BIOLOGY
29 Competition for food in 2 populations of a wild-caught fish. Chuard PJC, Brown GE, Grant JWA 30323840
BIOLOGY

 

Title:Temporal Variability in Effective Size ( [Formula] ) Identifies Potential Sources of Discrepancies Between Mark Recapture and Close Kin Mark Recapture Estimates of Population Abundance
Authors:Ruzzante DEMcCracken GRFraser DJMacMillan JBuhariwalla CFlemming JM
Link:pubmed.ncbi.nlm.nih.gov/39582254/
DOI:10.1111/1755-0998.14047
Publication:Molecular ecology resources
Keywords:census sizeclose kin mark recaptureconservation geneticseffective population sizemark recapturepopulation genetics-empirical
PMID:39582254 Category: Date Added:2024-11-25
Dept Affiliation: BIOLOGY
1 Department of Biology, Dalhousie University, Halifax, Nova Scotia, Canada.
2 Department of Biology, Concordia University, Montreal, Quebec, Canada.
3 Inland Fisheries Division, Nova Scotia Department of Fisheries and Aquaculture, Halifax, Nova Scotia, Canada.
4 Department of Mathematics and Statistics, Dalhousie University, Halifax, Nova Scotia, Canada.

Description:

Although efforts to estimate effective population size, census size and their ratio in wild populations are expanding, few empirical studies investigate interannual changes in these parameters. Hence, we do not know how repeatable or representative many estimates may be. Answering this question requires studies of long-term population dynamics. Here we took advantage of a rich dataset of seven brook trout (Salvelinus fontinalis) populations, 5 consecutive years and 5400 individuals genotyped at 33 microsatellites to examine variation in estimates of effective and census size and in their ratio. We first estimated the annual effective number of breeders ( ˆN b) using individuals aged 1+. We then adjusted these estimates using two life history traits, to obtain ˆNb(adj2) and subsequently, ˆNe(adj2) following Waples et al. (2013). ˆNe(adj2) was estimated for the years 2014 to 2019. Census size was estimated by mark recapture using double-pass electrofishing ( ˆNc(MR) ) (years 2014-2018) as well as by the Close Kin Mark Recapture approach ( ˆNc(CKMR) ) (years 2015-2017). Within populations, annual variation in ˆNe(adj2) (ratio of maximum to minimum ˆNe(adj2) ) ranged from 1.6-fold to 58-fold. Over all 7 populations, the median annual variation in ˆNe(adj2) was around 5-fold. These results reflect important interannual changes in the variance in reproductive success and more generally in population dynamics. Within population ˆNc(MR) varied between years by a (median) factor of 2.7 with a range from 2 to 4.3. Thus, estimated effective size varied nearly twice as much as did estimated census size. Our results therefore suggest that, at least in small populations like those examined in the present study, any single annual estimate of ˆNe(adj2) is unlikely to be representative of long-term dynamics. At least 3-4 annual estimates may be required for an estimate of contemporary effective size to be truly representative. We then compared ˆNc(MR) to ˆNc(CKMR) . For five of the seven populations, the estimates of population abundance based on mark recapture ( ˆNc(MR) ) were indistinguishable from those based on close kin mark recapture ( ˆNc(CKMR) ). The two populations with discordant ˆNc(MR) and ˆNc(CKMR) exhibited extremely low ˆNe(adj2)/ˆNc(MR) ratios and the largest annual variation in ˆNe(adj2) (58-fold and 35.4-fold respectively). These results suggest that sampling effort in these two streams may have been insufficient to properly capture the genetic diversity of the entire population and that individuals sampled were not representative of the population. Our study further validates CKMR as a method for estimating abundance in wild populations and it demonstrates how knowledge of the temporal variation in ˆNe can be used to identify potential sources of discrepancies between ˆNc(MR) and ˆNc(CKMR) .




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