Keyword search (4,163 papers available)

"Selection" Keyword-tagged Publications:

Title Authors PubMed ID
1 Asymmetric autocatalytic reactions and their stationary distribution Gallinger C; Popovic L; 39679357
MATHSTATS
2 Associations between valenced news and affect in daily life: Experimental and ecological momentary assessment approaches Shaikh SJ; McGowan AL; Lydon-Staley DM; 38919709
PSYCHOLOGY
3 The biotic and abiotic contexts of ecological selection mediate the dominance of distinct dispersal strategies in competitive metacommunities Khattar G; Savary P; Peres-Neto PR; 38913058
BIOLOGY
4 The impact of directed choice on the design of preventive healthcare facility network under congestion Vidyarthi N; Kuzgunkaya O; 24879402
JMSB
5 Spatial versus spatio-temporal approaches for studying metacommunities: a multi-taxon analysis in Mediterranean and tropical temporary ponds Gálvez Á; Peres-Neto PR; Castillo-Escrivà A; Bonilla F; Camacho A; García-Roger EM; Iepure S; Miralles J; Monrós JS; Olmo C; Picazo A; Rojo C; Rueda J; Sasa M; Segura M; Armengol X; Mesquita-Joanes F; 38565154
BIOLOGY
6 Unsupervised Mixture Models on the Edge for Smart Energy Consumption Segmentation with Feature Saliency Al-Bazzaz H; Azam M; Amayri M; Bouguila N; 37837127
ENCS
7 Mismatch between calf paternity and observed copulations between male and female reindeer: Multiple mating in a polygynous ungulate? Coombs KR; Weladji RB; Holand Ø; Røed KH; 37614915
BIOLOGY
8 Call to action: equity, diversity, and inclusion in emergency medicine resident physician selection Primavesi R; Patocka C; Burcheri A; Coutin A; Elhalwi AM; Ali A; Pandya A; Gagné A; Johnston B; Thoma B; LeBlanc C; Fovet F; Gallinger J; Mohadeb J; Ragheb M; Dong S; Smith S; Oyedokun T; Newmarch T; Knight V; McColl T; 37368231
CONCORDIA
9 How well do covariates perform when adjusting for sampling bias in online COVID-19 research? Insights from multiverse analyses Joyal-Desmarais K; Stojanovic J; Kennedy EB; Enticott JC; Boucher VG; Vo H; Košir U; Lavoie KL; Bacon SL; 36335560
HKAP
10 Inconsistent response of taxonomic groups to space and environment in mediterranean and tropical pond metacommunities Gálvez Á; Peres-Neto PR; Castillo-Escrivà A; Bonilla F; Camacho A; García-Roger EM; Iepure S; Miralles-Lorenzo J; Monrós JS; Olmo C; Picazo A; Rojo C; Rueda J; Sahuquillo M; Sasa M; Segura M; Armengol X; Mesquita-Joanes F; 36199222
BIOLOGY
11 Changes in selection pressure can facilitate hybridization during biological invasion in a Cuban lizard Bock DG; Baeckens S; Pita-Aquino JN; Chejanovski ZA; Michaelides SN; Muralidhar P; Lapiedra O; Park S; Menke DB; Geneva AJ; Losos JB; Kolbe JJ; 34654747
BIOLOGY
12 BENIN: Biologically enhanced network inference. Wonkap SK, Butler G 32698722
ENCS
13 Polymorphism of MHC class IIB in an acheilognathid species, Rhodeus sinensis shaped by historical selection and recombination. Jeon HB, Won H, Suk HY 31519169
BIOLOGY
14 Sex solves Haldane's dilemma. Hickey D, Golding GB 31437405
BIOLOGY
15 Evolutionary Adaptation to Generate Mutants. de Vries RP, Lubbers R, Patyshakuliyeva A, Wiebenga A, Benoit-Gelber I 29876815
BIOLOGY

 

Title:The biotic and abiotic contexts of ecological selection mediate the dominance of distinct dispersal strategies in competitive metacommunities
Authors:Khattar GSavary PPeres-Neto PR
Link:https://pubmed.ncbi.nlm.nih.gov/38913058/
DOI:10.1098/rstb.2023.0132
Publication:Philosophical transactions of the Royal Society of London. Series B, Biological sciences
Keywords:competitionecological selectionseasonalityspatial autocorrelation
PMID:38913058 Category: Date Added:2024-06-24
Dept Affiliation: BIOLOGY
1 Laboratory of Community and Quantitative Ecology, Department of Biology, Concordia University , Montreal, Quebec H4B 1R6, Canada.

Description:

While the influence of dispersal on ecological selection is the subject of intense research, we still lack a thorough understanding of how ecological selection operates to favour distinct dispersal strategies in metacommunities. To address this issue, we developed a model framework in which species with distinct quantitative dispersal traits that govern the three stages of dispersal-departure, movement and settlement-compete under different ecological contexts. The model identified three primary dispersal strategies (referred to as nomadic, homebody and habitat-sorting) that consistently dominated metacommunities owing to the interplay of spatiotemporal environmental variation and different types of competitive interactions. We outlined the key characteristics of each strategy and formulated theoretical predictions regarding the abiotic and biotic conditions under which each strategy is more likely to prevail in metacommunities. By presenting our results as relationships between dispersal traits and well-known ecological gradients (e.g. seasonality), we were able to contrast our theoretical findings with previous empirical research. Our model demonstrates how landscape environmental characteristics and competitive interactions at the intra- and interspecific levels can interact to favour distinct multivariate and context-dependent dispersal strategies in metacommunities. This article is part of the theme issue 'Diversity-dependence of dispersal: interspecific interactions determine spatial dynamics'.





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