Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle… - The ISME …, 2023 - academic.oup.com
Besides long-term average temperature increases, climate change is projected to result in a
higher frequency of marine heatwaves. Coastal zones are some of the most productive and …

[PDF][PDF] Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle, M Ketzer… - 2023 - researchgate.net
Climate change is an ongoing threat that is projected to cause severe effects on the EarthLs
surface and oceans such as increasing temperatures [1] and more extreme weather events …

Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle… - The ISME …, 2023 - ui.adsabs.harvard.edu
Besides long-term average temperature increases, climate change is projected to result in a
higher frequency of marine heatwaves. Coastal zones are some of the most productive and …

[HTML][HTML] Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle, M Ketzer… - The ISME …, 2023 - nature.com
Besides long-term average temperature increases, climate change is projected to result in a
higher frequency of marine heatwaves. Coastal zones are some of the most productive and …

[HTML][HTML] Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle… - The ISME …, 2023 - ncbi.nlm.nih.gov
Besides long-term average temperature increases, climate change is projected to result in a
higher frequency of marine heatwaves. Coastal zones are some of the most productive and …

Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities.

L Seidel, E Broman, E Nilsson, M Ståhle… - The ISME …, 2023 - europepmc.org
Besides long-term average temperature increases, climate change is projected to result in a
higher frequency of marine heatwaves. Coastal zones are some of the most productive and …

[PDF][PDF] Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle, M Ketzer… - 2023 - scienceopen.com
Climate change is an ongoing threat that is projected to cause severe effects on the EarthLs
surface and oceans such as increasing temperatures [1] and more extreme weather events …

Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle… - The ISME …, 2023 - pubmed.ncbi.nlm.nih.gov
Besides long-term average temperature increases, climate change is projected to result in a
higher frequency of marine heatwaves. Coastal zones are some of the most productive and …

Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities

L Seidel, E Broman, E Nilsson, M Ståhle, M Ketzer… - The ISME …, 2023 - diva-portal.org
Climate change is an ongoing threat that is projected to cause severe effects on the EarthLs
surface and oceans such as increasing temperatures [1] and more extreme weather events …

Climate change-related warming reduces thermal sensitivity and modifies metabolic activity of coastal benthic bacterial communities.

L Seidel, E Broman, E Nilsson, M Ståhle… - The ISME …, 2023 - europepmc.org
Besides long-term average temperature increases, climate change is projected to result in a
higher frequency of marine heatwaves. Coastal zones are some of the most productive and …