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Type II photosensitized oxidation in senescent microalgal cells at different latitudes: Does low under-ice irradiance in polar regions enhance efficiency?

Cited 3 time in wos
Cited 3 time in scopus
Title
Type II photosensitized oxidation in senescent microalgal cells at different latitudes: Does low under-ice irradiance in polar regions enhance efficiency?
Other Titles
위도에 따른 노화 미세조류의 유형 II 광감작 산화: 극지방 해빙 아래 복사광의 효율성을 향상하는가?
Authors
Rontani, Jean-Francois
Amiraux, Remi
Smik, Lukas
Wakeham, Stuart G.
Paulmier, Aurelien
Vaultier, Frederic
Ha, Sun-Yong
Jun-oh, Min
Belt, Simon T.
Subject
Environmental Sciences & Ecology
Keywords
Photodynamic effectSenescent phytoplanktonLatitudePolar regionsSolar irradiance
Issue Date
2021-07-20
Citation
Rontani, Jean-Francois, et al. 2021. "Type II photosensitized oxidation in senescent microalgal cells at different latitudes: Does low under-ice irradiance in polar regions enhance efficiency?". SCIENCE OF THE TOTAL ENVIRONMENT, 779: 1-9.
Abstract
Comparison of Type II photosensitized oxidation of lipids (the photodynamic effect) and photodegradation of chlorophyll (sensitizer photobleaching) in samples of particulate matter collected previously from locations representing a diverse range of latitudes reveals an enhancement of the photooxidation of lipids at the expense of chlorophyll photodegradation in the polar regions. The efficiency of the photodynamic effect appears to be particularly high in sinking particles collected under sea ice and is attributed to the rapid settling of highly aggregated sympagic algae to depths of low light transmission favouring the photodynamic effect at the expense of photobleaching of the sensitizer. Paradoxically, the low efficiency of Type II photosensitized oxidation of lipids observed in temperate and equatorial regions is associated with high solar irradiances in these regions. Type II photosensitized oxidation of lipids in senescent phytoplankton seems thus to be strongly dependent of the intensity of solar irradiance.
URI
https://repository.kopri.re.kr/handle/201206/13604
DOI
http://dx.doi.org/10.1016/j.scitotenv.2021.146363
Type
Article
Station
Araon
Indexed
SCIE
Appears in Collections  
2021-2021, Carbon cycle change and ecosystem response under the Southern Ocean warming (21-21) / Park, Jisoo (PE21110)
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