Difference between revisions of "Vera-Vives 2022 BEC"
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{{Publication | {{Publication | ||
|title=Vera-Vives AM, Perin G, Morosinotto T (2022) High-resolution photosynthesis-irradiance curves in microalgae. Bioenerg Commun 2022.19. https://doi.org/10.26124/bec:2022-0019 | |title=Vera-Vives AM, Perin G, Morosinotto T (2022) High-resolution photosynthesis-irradiance curves in microalgae. Bioenerg Commun 2022.19. https://doi.org/10.26124/bec:2022-0019 | ||
|info=Bioenerg Commun 2022.19. [[File:OpenAccess-downloadPDF.png|200px||link= |Open Access pdf]]<br /> ''published online'' 2022-12-15 [[File:WatchThePresentationYoutube_icon.jpg|200px|link=https://www.youtube.com/watch?v=EEo3rMa_r30&t=3776s|»''Watch the presentation''«]] | |info=Bioenerg Commun 2022.19. [[File:OpenAccess-downloadPDF.png|200px||link=https://www.bioenergetics-communications.org/index.php/bec/article/view/vera-vivas_2022/160 |Open Access pdf]]<br /> ''published online'' 2022-12-15 [[File:WatchThePresentationYoutube_icon.jpg|200px|link=https://www.youtube.com/watch?v=EEo3rMa_r30&t=3776s|»''Watch the presentation''«]] | ||
<br /><br /> | <br /><br /> | ||
|authors=Vera Vives Antoni Mateu, Perin Giorgio, Morosinotto Tomas | |authors=Vera Vives Antoni Mateu, Perin Giorgio, Morosinotto Tomas | ||
|year= | |year=2022 | ||
|journal=Bioenerg Commun | |journal=Bioenerg Commun | ||
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{{Labeling | {{Labeling | ||
|organism= | |organism=Algae | ||
|preparations=Chloroplasts | |preparations=Chloroplasts | ||
|instruments=Oxygraph-2k, NextGen-O2k | |instruments=Oxygraph-2k, NextGen-O2k | ||
|additional= | |additional=Chlamydomonas, Photosynthesis BEC | ||
}} | }} | ||
[[Category:BEC]] | [[Category:BEC]] |
Latest revision as of 14:11, 17 August 2023
Vera-Vives AM, Perin G, Morosinotto T (2022) High-resolution photosynthesis-irradiance curves in microalgae. Bioenerg Commun 2022.19. https://doi.org/10.26124/bec:2022-0019 |
» Bioenerg Commun 2022.19.
published online 2022-12-15
Vera Vives Antoni Mateu, Perin Giorgio, Morosinotto Tomas (2022) Bioenerg Commun
Abstract: https://doi.org/10.26124/bec:2022-0019
The rate of oxygen evolution provides valuable information on the metabolic status and photosynthetic performance of a cell, and it can be quantified by means of a photosynthesis-irradiance (PI) curve. Up to now, the construction of PI curves of unicellular organisms based on oxygen evolution has been difficult and time consuming due to the lack of sensitive instruments. Here we describe the setup of a reproducible method for constructing PI curves based on oxygen evolution using small amounts of sample in the microalga Nannochloropsis gaditana, easily translatable to other algal species.
• Keywords: photosynthesis, microalgae, oxygen evolution
• Bioblast editor: Tindle-Solomon L
• O2k-Network Lab: IT Padova Morosinotto T
ORCID: Vera Vives Antoni Mateu, Perin Giorgio, Morosinotto Tomas
Support
- Supported by project NextGen-O2k which has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No. 859770.
Preprint
Labels:
Organism: Algae
Preparation: Chloroplasts
HRR: Oxygraph-2k, NextGen-O2k
Chlamydomonas, Photosynthesis BEC