Keyword search (4,163 papers available)

"Lessard JP" Authored Publications:

Title Authors PubMed ID
1 The Bug-Network (BugNet): A Global Experimental Network Testing the Effects of Invertebrate Herbivores and Fungal Pathogens on Plant Communities and Ecosystem Function in Open Ecosystems Kempel A; Adamidis GC; Anadón JD; Atkinson J; Auge H; Avtzis D; Bachelot B; Bashirzadeh M; Bota JL; Classen A; Constantinou I; Crawley M; de Bellis T; Dostal P; Ebeling A; Eisenhauer N; Eldridge DJ; Encina G; Estrada C; Everingham S; Fanin N; Feng Y; Gaspar M; Gooriah L; Graff P; Montalván EG; Montalván PG; Hartke TR; Huang L; Jochum M; Kaljund K; Karmiris I; Koorem K; Korell L; Laine AL; le Provost G; Lessard JP; Liu M; Liu X; Liu Y; Llancabure J; Loïez S; Loydi A; Marrero H; Gockel S; Montoya A; Münzbergo 41080499
ENCS
2 Variation in flower morphology associated with higher bee diversity in urban green spaces Sinno S; MacInnis G; Lessard JP; Ziter CD; 39609370
BIOLOGY
3 Marine fishes experiencing high-velocity range shifts may not be climate change winners Chaikin S; Riva F; Marshall KE; Lessard JP; Belmaker J; 38459374
BIOLOGY
4 Heterogeneous dispersal networks to improve biodiversity science Savary P; Lessard JP; Peres-Neto PR; 37891075
BIOLOGY
5 The evolution of plasticity at geographic range edges Usui T; Lerner D; Eckert I; Angert AL; Garroway CJ; Hargreaves A; Lancaster LT; Lessard JP; Riva F; Schmidt C; van der Burg K; Marshall KE; 37183152
BIOLOGY
6 Ecological strategies of (pl)ants: Towards a world-wide worker economic spectrum for ants Gibb H; Bishop TR; Leahy L; Parr CL; Lessard JP; Sanders NJ; Shik JZ; Ibarra-Isassi J; Narendra A; Dunn RR; Wright IJ; 37056633
BIOLOGY
7 Population demography maintains biogeographic boundaries Schmidt C; Muñoz G; Lancaster LT; Lessard JP; Marske KA; Marshall KE; Garroway CJ; 35753949
BIOLOGY
8 The importance of eco-evolutionary dynamics for predicting and managing insect range shifts Wellenreuther M; Dudaniec RY; Neu A; Lessard JP; Bridle J; Carbonell JA; Diamond SE; Marshall KE; Parmesan C; Singer MC; Swaegers J; Thomas CD; Lancaster LT; 35644339
BIOLOGY
9 Warm and arid regions of the world are hotspots of superorganism complexity La Richelière F; Muñoz G; Guénard B; Dunn RR; Economo EP; Powell S; Sanders NJ; Weiser MD; Abouheif E; Lessard JP; 35135345
BIOLOGY
10 Temperature drives caste-specific morphological clines in ants. Brassard F, Francoeur A, Lessard JP 32858759
BIOLOGY
11 The Odonata of Quebec: Specimen data from seven collections. Favret C, Moisan-De Serres J, Larrivée M, Lessard JP 32174757
CONCORDIA
12 Shared mycorrhizae but distinct communities of other root-associated microbes on co-occurring native and invasive maples. DeBellis T, Kembel SW, Lessard JP 31392089
BIOLOGY
13 Ant community response to disturbance: A global synthesis. Lessard JP 30854640
BIOLOGY

 

Title:Heterogeneous dispersal networks to improve biodiversity science
Authors:Savary PLessard JPPeres-Neto PR
Link:https://pubmed.ncbi.nlm.nih.gov/37891075/
DOI:10.1016/j.tree.2023.10.002
Publication:Trends in ecology & evolution
Keywords:ecological networksgraph theorymetacommunityspatial ecologyspecies movement
PMID:37891075 Category: Date Added:2023-10-28
Dept Affiliation: BIOLOGY
1 Department of Biology, Concordia University, 7141 Sherbrooke Street West, Montreal, QC, H4B 1R6, Canada. Electronic address: psavary@protonmail.com.
2 Department of Biology, Concordia University, 7141 Sherbrooke Street West, Montreal, QC, H4B 1R6, Canada.

Description:

Dispersal has a key role in shaping spatial patterns of biodiversity, yet its spatial heterogeneity is often overlooked in biodiversity analyses and management strategies. Properly parameterised heterogeneous dispersal networks capture the complex interplay between landscape structure and species-specific dispersal capacities. However, this heterogeneity is recurrently neglected when studying the processes underlying biodiversity variation. To address this gap, we introduce a conceptual framework detailing the fundamental processes driving dispersal heterogeneity and its effects on biodiversity dynamics. We propose methods to parameterise heterogeneous dispersal networks, facilitating their integration into commonly used quantitative frameworks for biodiversity analyses. By considering the architecture of heterogeneous dispersal networks, we demonstrate their critical role in guiding biodiversity management strategies.





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