Climate change with increasing seawater temperature will challenge the health of farmed Atlantic Cod (Gadus morhua L.)

被引:7
作者
Ytteborg, Elisabeth [1 ]
Falconer, Lynne [2 ]
Krasnov, Aleksei [1 ]
Johansen, Lill-Heidi [1 ]
Timmerhaus, Gerrit [1 ]
Johansson, Gunhild Seljehaug [1 ]
Afanasyev, Sergey [3 ]
Host, Vibeke [1 ]
Hjollo, Solfrid Saetre [4 ]
Hansen, Oyvind J. [1 ]
Lazado, Carlo C. [1 ]
机构
[1] Dept Aquaculture, Nofima, Tromso, Norway
[2] Univ Stirling, Inst Aquaculture, Stirling, Scotland
[3] Sechenov Inst Evolutionary Physiol & Biochem, Lab Neurophysiol & Pathol Behav, St Petersburg, Russia
[4] Inst Marine Res, Dept Ecosyst Proc, Bergen, Norway
基金
英国科研创新办公室;
关键词
Atlantic cod; aquaculture; climate change; fransicella; IPCC; temperature; FRANCISELLA-PISCICIDA; OXYGEN LIMITATION; THERMAL TOLERANCE; STRESS; HSP47; FISH; EXPRESSION; RESPONSES; IMMUNE; CELLS;
D O I
10.3389/fmars.2023.1232580
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Aquaculture is one of the fastest growing food production sectors in the world and further expansion is expected throughout the 21(st) century. However, climate change is threatening the development of the sector and action is needed to prepare the industry for the coming challenges. Using downscaled temperature projections based on the Intergovernmental Panel on Climate Change (IPCC) climate projection (Shared Socioeconomic Pathway, SSP2-4.5), we analysed potential future temperatures at a selected Atlantic cod (Gadus morhua L.) farm site in Northern Norway. Results showed that the farming area may experience increased temperatures the next 10-15 years, including more days with temperatures above 17 degrees C. Based on the predicted future conditions, we designed a study with Atlantic cod (Gadus morhua L.) to evaluate effects from high temperature alone and in combination with Fransicella noatunensis infection. Fish were kept at 12 degrees C and 17 degrees C for eight weeks and samples of skin and spleen collected at different timepoints were analysed with transcriptomics, histology, scanning electron microscopy and immunohistochemistry. Results showed that high temperature had a stronger effect on the barrier functions of skin than the infection. Increased temperature induced gene expression changes in skin and spleen, heat shock protein 47 and cold inducible RNA binding protein were identified as potential gene markers for thermal stress. The effect of bacterial challenge was small at 12 degrees C. At high temperature, the development of severe pathology in spleen coincided with a significant decrease of immunoglobulins transcripts, which contrasted with the activation of multiple immune genes. In addition, we used an in vitro model of skin biopsies and scale explants exposed to hydrogen peroxide (H2O2) to assess the effects of thermal and oxidative stress. High temperature and H2O2 reduced proliferation and migration of keratocytes, and increased expression of stress markers, and compounding effects were observed with combined stressors. Results suggest that the projected increased seawater temperature will pose a significant threat to Norwegian cod farming, affecting various biological processes and making fish more vulnerable to stressors and pathogens. Cod farming needs high attention to temperature changes, and special precautions should be taken if the temperature increases beyond cods' thermal optimum.
引用
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页数:20
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共 80 条
  • [1] Developing specific molecular biomarkers for thermal stress in salmonids
    Akbarzadeh, Arash
    Gunther, Oliver P.
    Houde, Aimee Lee
    Li, Shaorong
    Ming, Tobi J.
    Jeffries, Kenneth M.
    Hinch, Scott G.
    Miller, Kristina M.
    [J]. BMC GENOMICS, 2018, 19
  • [2] QuPath: Open source software for digital pathology image analysis
    Bankhead, Peter
    Loughrey, Maurice B.
    Fernandez, Jose A.
    Dombrowski, Yvonne
    Mcart, Darragh G.
    Dunne, Philip D.
    McQuaid, Stephen
    Gray, Ronan T.
    Murray, Liam J.
    Coleman, Helen G.
    James, Jacqueline A.
    Salto-Tellez, Manuel
    Hamilton, Peter W.
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [3] The Atlantic salmon's stress- and immune-related transcriptional responses to moderate hypoxia, an incremental temperature increase, and these challenges combined
    Beemelmanns, Anne
    Zanuzzo, Fabio S.
    Sandrelli, Rebeccah M.
    Rise, Matthew L.
    Gamperl, A. Kurt
    [J]. G3-GENES GENOMES GENETICS, 2021, 11 (07):
  • [4] The Norwegian Earth System Model, NorESM1-M - Part 1: Description and basic evaluation of the physical climate
    Bentsen, M.
    Bethke, I.
    Debernard, J. B.
    Iversen, T.
    Kirkevag, A.
    Seland, O.
    Drange, H.
    Roelandt, C.
    Seierstad, I. A.
    Hoose, C.
    Kristjansson, J. E.
    [J]. GEOSCIENTIFIC MODEL DEVELOPMENT, 2013, 6 (03) : 687 - 720
  • [5] Bjorgen H, 2021, IMMUNOGENETICS, V73, P53, DOI [10.1007/s00251-020-01196-0, 10.1007/978-3-030-85420-1_1]
  • [6] Climate Change Influences on Marine Infectious Diseases: Implications for Management and Society
    Burge, Colleen A.
    Eakin, C. Mark
    Friedman, Carolyn S.
    Froelich, Brett
    Hershberger, Paul K.
    Hofmann, Eileen E.
    Petes, Laura E.
    Prager, Katherine C.
    Weil, Ernesto
    Willis, Bette L.
    Ford, Susan E.
    Harvell, C. Drew
    [J]. ANNUAL REVIEW OF MARINE SCIENCE, VOL 6, 2014, 6 : 249 - 277
  • [7] Mucosal Barrier Functions of Fish under Changing Environmental Conditions
    Cabillon, Nikko Alvin R.
    Lazado, Carlo C.
    [J]. FISHES, 2019, 4 (01)
  • [8] Calvin K., 2023, Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change Core Writing Team, DOI [10, DOI 10.59327/IPCC/AR6-9789291691647, 10.59327/IPCC/AR6-9789291691647]
  • [9] Hsp90 Relieves Heat Stress-Induced Damage in Mouse Kidneys: Involvement of Antiapoptotic PKM2-AKT and Autophagic HIF-1α Signaling
    Chen, Bixia
    Yang, Bo
    Zhu, Jie
    Wu, Jiaxin
    Sha, Junzhou
    Sun, Jiarui
    Bao, Endong
    Zhang, Xiaohui
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (05)
  • [10] The response of Atlantic cod (Gadus morhua) to future climate change
    Drinkwater, KF
    [J]. ICES JOURNAL OF MARINE SCIENCE, 2005, 62 (07) : 1327 - 1337