Faculty profile
Piero Calosi
Back to facultyThis profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a Université du Québec à Rimouski directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Adaptive metabolic reprogramming conserves energy status in Antarctic giants.
Scientific reports · 2026 · first author
These Boots Are Made for Walking: Sex-Specific Physiological and Metabolomic Strategies Reflect Male-Skewed Vulnerability to Ocean Warming in a Keystone Amphipod.
Global change biology · 2026
Northern shrimp exhibit origin-specific proteomic remodelling under ocean acidification, with limited response to ocean warming.
Marine pollution bulletin · 2026
Latest funding
- $150,000
Critical instrumentation for the study of geological, chemical and biological processes in marine sediments in Eastern Canada
NSERC · 2023 · Co-investigator
- $146,122
Integrated platform for the characterisation of the seawater carbonate chemistry for Chemical Oceanography and Marine Global Change Biology
NSERC · 2021 · Principal investigator
- $325,000
Unravelling the cellular mechanisms underpinning within- and trans-generational physiological and life history responses of marine invertebrates exposed to multiple global change drivers using a multi-layer approach
NSERC · 2020 · Principal investigator
56 publications.
Adaptive metabolic reprogramming conserves energy status in Antarctic giants.
Calosi P, Feugere L, Vermandele F, Bruning P, Millour M, Genard B, Garrido I, Pardo LM
These Boots Are Made for Walking: Sex-Specific Physiological and Metabolomic Strategies Reflect Male-Skewed Vulnerability to Ocean Warming in a Keystone Amphipod.
Fernandes JF, Feugere L, Diniz MS, Calosi P, Madeira D
Northern shrimp exhibit origin-specific proteomic remodelling under ocean acidification, with limited response to ocean warming.
Page TM, Rosado M, Mendes VM, Guscelli E, Fernandes JF, Chabot D, Calado R, Manadas B, Calosi P, Madeira D
Survival and aerobic performance of the northern shrimp are threatened by exposure to combined ocean global change drivers.
Guscelli E, Chabot D, Noisette F, Blier PU, Chemel M, Calosi P
Local Conditions and Environmental Gradients Shape the Abundance and Size Structure of a Non-Native Intertidal Species in Atlantic North America.
Garlaschè G, Broitman BR, Riley C, Drolet D, Howland KL, McKindsey CW, Calosi P
Proteomic profiling unveils compensatory physiological mechanisms of an annelid living across a natural persistent deoxygenation gradient.
Cuenca ALR, Madeira D, Parent GJ, Pascal L, Fourcassié V, Boissonneault M, Droit A, Archambault P, Chaillou G, Calosi P
Non-additive phospholipidomic responses to ocean warming and acidification drive intraspecific variation in cell membrane vulnerability in a marine ectotherm.
Feugere L, Fernandes JF, Guscelli E, Melo T, Aveiro S, Chabot D, Calado R, Domingues R, Madeira D, Calosi P
Profiling accumulated PAHs and metabolomic responses in truncate soft-shell clam (Mya truncata) in the Canadian Arctic.
Boyd A, Halldorson T, Xia Z, Tomy GT, Calosi P, Jeffries KM
Sibling species differently distributed around a CO2 vent show transplantation proteomic remodelling, while displaying metabolomic signatures associated with their origin.
Turner LM, Madeira D, Ricevuto E, Gallucci AM, Sommer U, Viant MR, Dineshram R, Gambi MC, Calosi P
You are on your own, kid: parental effects impair a ubiquitous copepod's ability to recover from extreme events.
Vermandele F, Roy E, Sasaki M, Winkler G, Dam HG, Calosi P, Madeira D
Critical instrumentation for the study of geological, chemical and biological processes in marine sediments in Eastern Canada
Principal investigators: Pellerin, Andre
Integrated platform for the characterisation of the seawater carbonate chemistry for Chemical Oceanography and Marine Global Change Biology
Principal investigators: Calosi, Piero
Unravelling the cellular mechanisms underpinning within- and trans-generational physiological and life history responses of marine invertebrates exposed to multiple global change drivers using a multi-layer approach
Principal investigators: Calosi, Piero
Keywords: global change biology; multiple stressors; ecophysiology; life history; fitness; within generation plasticity; transgenerational plasticity; omics approaches; marine invertebrates; environmental gradients
Transgenerational phenotypic plasticity and rapid adaptation to multiple global change drivers, and the fate of global biodiversity patterns
Principal investigators: Calosi, Piero
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Fanny NOISETTE and Piero Calosi: 4 shared papers
- Gesche Winkler and Piero Calosi: 3 shared papers
- Philippe Archambault and Piero Calosi: 2 shared papers
- Dirk Weihrauch and Piero Calosi: 2 shared papers
- Jennifer Sunday and Piero Calosi: 2 shared papers
- Arnaud Droit and Philippe Archambault: 1 shared paper
- Arnaud Droit and Piero Calosi: 1 shared paper
- Fanny NOISETTE and France Dufresne: 1 shared paper
- Philippe Archambault and France Dufresne: 1 shared paper
- France Dufresne and Piero Calosi: 1 shared paper
- Biologie, chimie et géographie
- Institut des Sciences de la Mer
- Sciences de la mer de Rimouski, Institut des
- Biological Sciences
- Biology - McGill University
- Biologie
- Médecine Moléculaire
Co-authors at Université du Québec à Rimouski, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
Fanny NOISETTE
Institut des Sciences de la Mer
4 shared papers, latest 2025
Gesche Winkler
Sciences de la mer de Rimouski, Institut des
3 shared papers, latest 2025
Dirk Weihrauch
Biological Sciences
2 shared papers, latest 2024
Philippe Archambault
Biologie
2 shared papers, latest 2025
Jennifer Sunday
Biology - McGill University
2 shared papers, latest 2021
France Dufresne
Biologie, chimie et géographie
1 shared papers, latest 2020
Arnaud Droit
Médecine Moléculaire
1 shared papers, latest 2025
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