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Photoacclimation of the polar diatom Chaetoceros neogracilis at low temperature
by
Thomas Lacour
, Marcel Babin
, Jade Larivière
, Philippe-Israël Morin
, Amanda Cockshutt
, Joannie Ferland
, Pierre-Luc Grondin
, Douglas A. Campbell
, Natalie Donaher
in
[SDE]Environmental Sciences
/ [SDV]Life Sciences [q-bio]
/ Acclimatization
/ Algae
/ Analysis
/ Biology and Life Sciences
/ Carbon
/ Carbon - metabolism
/ Carbon 14
/ Carbon fixation
/ Chaetoceros
/ Chlorophyll
/ Diatoms
/ Electron transport
/ Environmental conditions
/ Enzyme kinetics
/ Fixation
/ Growth
/ Growth rate
/ Irradiance
/ Life Sciences
/ Light
/ Light levels
/ Low temperature
/ Medicine
/ Organic carbon
/ Oxidation
/ Oxygen
/ Pathways
/ Photosynthesis
/ Physical Sciences
/ Physiology
/ Phytoplankton
/ Polar environments
/ Q
/ R
/ Research Article
/ Ribulose-Bisphosphate Carboxylase
/ Ribulose-Bisphosphate Carboxylase - metabolism
/ Science
/ Temperature
/ Thermal properties
2022
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Photoacclimation of the polar diatom Chaetoceros neogracilis at low temperature
by
Thomas Lacour
, Marcel Babin
, Jade Larivière
, Philippe-Israël Morin
, Amanda Cockshutt
, Joannie Ferland
, Pierre-Luc Grondin
, Douglas A. Campbell
, Natalie Donaher
in
[SDE]Environmental Sciences
/ [SDV]Life Sciences [q-bio]
/ Acclimatization
/ Algae
/ Analysis
/ Biology and Life Sciences
/ Carbon
/ Carbon - metabolism
/ Carbon 14
/ Carbon fixation
/ Chaetoceros
/ Chlorophyll
/ Diatoms
/ Electron transport
/ Environmental conditions
/ Enzyme kinetics
/ Fixation
/ Growth
/ Growth rate
/ Irradiance
/ Life Sciences
/ Light
/ Light levels
/ Low temperature
/ Medicine
/ Organic carbon
/ Oxidation
/ Oxygen
/ Pathways
/ Photosynthesis
/ Physical Sciences
/ Physiology
/ Phytoplankton
/ Polar environments
/ Q
/ R
/ Research Article
/ Ribulose-Bisphosphate Carboxylase
/ Ribulose-Bisphosphate Carboxylase - metabolism
/ Science
/ Temperature
/ Thermal properties
2022
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Do you wish to request the book?
Photoacclimation of the polar diatom Chaetoceros neogracilis at low temperature
by
Thomas Lacour
, Marcel Babin
, Jade Larivière
, Philippe-Israël Morin
, Amanda Cockshutt
, Joannie Ferland
, Pierre-Luc Grondin
, Douglas A. Campbell
, Natalie Donaher
in
[SDE]Environmental Sciences
/ [SDV]Life Sciences [q-bio]
/ Acclimatization
/ Algae
/ Analysis
/ Biology and Life Sciences
/ Carbon
/ Carbon - metabolism
/ Carbon 14
/ Carbon fixation
/ Chaetoceros
/ Chlorophyll
/ Diatoms
/ Electron transport
/ Environmental conditions
/ Enzyme kinetics
/ Fixation
/ Growth
/ Growth rate
/ Irradiance
/ Life Sciences
/ Light
/ Light levels
/ Low temperature
/ Medicine
/ Organic carbon
/ Oxidation
/ Oxygen
/ Pathways
/ Photosynthesis
/ Physical Sciences
/ Physiology
/ Phytoplankton
/ Polar environments
/ Q
/ R
/ Research Article
/ Ribulose-Bisphosphate Carboxylase
/ Ribulose-Bisphosphate Carboxylase - metabolism
/ Science
/ Temperature
/ Thermal properties
2022
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Photoacclimation of the polar diatom Chaetoceros neogracilis at low temperature
Journal Article
Photoacclimation of the polar diatom Chaetoceros neogracilis at low temperature
2022
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Overview
Polar microalgae face two major challenges: 1- growing at temperatures (-1.7 to 5°C) that limit enzyme kinetics; and 2- surviving and exploiting a wide range of irradiance. The objective of this study is to understand the adaptation of an Arctic diatom to its environment by studying its ability to acclimate to changes in light and temperature. We acclimated the polar diatom
Chaetoceros neogracilis
to various light levels at two different temperatures and studied its growth and photosynthetic properties using semi-continuous cultures. Rubisco content was high, to compensate for low catalytic rates, but did not change detectably with growth temperature. Contrary to what is observed in temperate species, in
C
.
neogracilis
, carbon fixation rate (20 min
14
C incorporation) equaled net growth rate (μ) suggesting very low or very rapid (<20 min) re-oxidation of the newly fixed carbon. The comparison of saturation irradiances for electron transport, oxygen net production and carbon fixation revealed alternative electron pathways that could provide energy and reducing power to the cell without consuming organic carbon which is a very limiting product at low temperatures. High protein contents, low re-oxidation of newly fixed carbon and the use of electron pathways alternative to carbon fixation may be important characteristics allowing efficient growth under those extreme environmental conditions.
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