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- W2105199911 abstract "responses of cells to N-starvation and additions of both NH4 + and NO3 2 were characterised using a number of techniques including NIFTs, conventional pigment analysis using UV/Visible spectrophotometry and Fourier transform infrared (FT-IR) and Raman spectroscopy. Results showed that the additio no f NH 4 + and NO3 2 elicited distinct changes in in vivo chl a fluorescence in N-limited Chlorella cells. The nature of the fluorescence change was dependent on the form of nitrogen supplied, with NH4 + additions producing a more complex effect on fluorescence than NO3 2 additions. Interestingly, the greatest fluorescence response followin gN H 4 + injection occurred prior to cells becoming extremely N-starved. Despite Chlorella exhibiting many of the characteristic features of N-deficient cells such as lowered capacity for photosynthetic electron transport (rETRmax), reduced Chl a : b–carotene ratios and increased levels of carbohydrate accumulation relative to protein, values for the maximum effective quantum yield of Photosystem II (WPSIIe-max) remained high over the course of N-starvation." @default.
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- W2105199911 date "2007-09-04" @default.
- W2105199911 modified "2023-10-16" @default.
- W2105199911 title "Characterising nutrient-induced fluorescence transients (NIFTs) in nitrogen-stressed Chlorella emersonii (Chlorophyta)" @default.
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- W2105199911 doi "https://doi.org/10.2216/06-55.1" @default.
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