Keyword search (4,163 papers available)

"Grant JWA" Authored Publications:

Title Authors PubMed ID
1 A global dataset of salmonid biomass in streams Foote KJ; Grant JWA; Biron PM; 39472611
BIOLOGY
2 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
3 Recruitment dynamics of juvenile salmonids: Comparisons among populations and with classic case studies Matte JO; Fraser DJ; Grant JWA; 38599588
BIOLOGY
4 Morphological and Habitat Quality of Salmonid Streams and their Relationship with Fish-Based Indices in Aotearoa New Zealand and Ontario (Canada) Foote KJ; Biron PM; Grant JWA; 38172273
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 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
7 Population variation in density-dependent growth, mortality and their trade-off in a stream fish. Matte JM, Fraser DJ, Grant JWA 31642512
BIOLOGY
8 Competition for food in 2 populations of a wild-caught fish. Chuard PJC, Brown GE, Grant JWA 30323840
BIOLOGY
9 Ideal despotic distributions in convict cichlids (Amatitlania nigrofasciata)? Effects of predation risk and personality on habitat preference. Church KDW, Grant JWA 30529688
BIOLOGY

 

Title:Population variation in density-dependent growth, mortality and their trade-off in a stream fish.
Authors:Matte JMFraser DJGrant JWA
Link:https://www.ncbi.nlm.nih.gov/pubmed/31642512?dopt=Abstract
DOI:10.1111/1365-2656.13124
Publication:The Journal of animal ecology
Keywords:Salvelinus fontinalisdensity dependenceenvironmentindividual growthjuvenile salmonidsmortalitypopulation regulationtrade-off
PMID:31642512 Category:J Anim Ecol Date Added:2019-10-24
Dept Affiliation: BIOLOGY
1 Department of Biology, Concordia University, Montreal, QC, Canada.

Description:

Population variation in density-dependent growth, mortality and their trade-off in a stream fish.

J Anim Ecol. 2019 Oct 23;:

Authors: Matte JM, Fraser DJ, Grant JWA

Abstract

Important variation in the shape and strength of density-dependent growth and mortality is observed across animal populations. Understanding this population variation is critical for predicting density-dependent relationships in natural populations, but comparisons among studies are challenging as studies differ in methodologies and in local environmental conditions. Consequently, it is unclear whether: (1) the shape and strength of density-dependent growth and mortality are population-specific; (2) the potential trade-off between density-dependent growth and mortality differs among populations; and (3) environmental characteristics can be related to population differences in density-dependent relationships. To elucidate these uncertainties, we manipulated the density (0.3-7 fish/m2 ) of young-of-the-year brook trout (Salvelinus fontinalis) simultaneously in three neighboring populations in a field experiment in Newfoundland, Canada. Within each population, our experiment included both spatial (three sites per stream) and temporal (three consecutive summers) replication. We detected temporally consistent population variation in the shape of density-dependent growth (negative linear and negative logarithmic), but not for mortality (positive logarithmic). The strength of density-dependent growth across populations was reduced in sections with a high percentage of boulder substrate, whereas density-dependent mortality increased with increasing flow, water temperature, and more acidic pH. Neighbouring populations exhibited different mortality-growth trade-offs: the ratio of mortality-to-growth increased linearly with increasing density at different rates across populations (up to 4-fold differences), but also increased with increasing temperature. Our results are some of the first to demonstrate temporally consistent, population-specific density-dependent relationships and trade-offs at small spatial scales that match the magnitude of interspecific variation observed across the globe. Furthermore, key environmental characteristics explain some of these differences in predictable ways. Such population differences merit further attention in models of density-dependence and in science-based management of animal populations.

PMID: 31642512 [PubMed - as supplied by publisher]





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