2021
DOI: 10.3390/jmse9080816
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Increasing Temperature Alters the Effects of Extracellular Copper on Thalassiosira Pseudonana Physiology and Transcription

Abstract: Copper (Cu) is essential for many physiological processes in phytoplankton, including electron-transfer reactions and high-affinity Fe transport systems. However, at high concentrations, Cu can have a toxic effect on phytoplankton. Phytoplankton’s tolerance to certain toxicants in marine ecosystems cannot always be solely attributed to the presence of compounds, as various environmental factors including temperature can also indirectly influence their effects on organisms. In this study, we investigated the ef… Show more

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Cited by 6 publications
(2 citation statements)
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“…In phytoplankton, Cu is required for photosynthesis, respiration and defence against ROS via superoxide dismutase, and it is often a growth-limiting factor for these organisms [37]. In addition, in microalgae Cu is involved in transmembrane uptake of Fe [38,39] and may be vital for these organisms in Fe-limiting condition [40][41][42].…”
Section: The Role Of Cu As Essential Metal In Microalgal Metabolismmentioning
confidence: 99%
“…In phytoplankton, Cu is required for photosynthesis, respiration and defence against ROS via superoxide dismutase, and it is often a growth-limiting factor for these organisms [37]. In addition, in microalgae Cu is involved in transmembrane uptake of Fe [38,39] and may be vital for these organisms in Fe-limiting condition [40][41][42].…”
Section: The Role Of Cu As Essential Metal In Microalgal Metabolismmentioning
confidence: 99%
“…Lignin formation in cell wall Chlorosis of younger leaves Reduced shoot vigour (Zhang et al, 2020) [144] Electron transfer in photosynthesis and respiration Stunted growth Undeveloped discovered root (Wang et al, 2021) [137] (B)…”
Section: Classification Of Plant Nutrientmentioning
confidence: 99%