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The observation that in some algal species adapted to light and anaerobiosis, H2 photoproduction is enhanced by the presence of acetate in the media was discovered several decades ago [ 17, 21– 21].
Although Chlamydomonas thylakoid lumina were significantly wider than the thylakoid lumina reported in studies of higher plant grana (15.7 16.3 nm lateral repeat, 4.5 4.7 nm thylakoid lumina, and 3.2 3.6 nm interthylakoid stromal spaces) (Daum et al., 2010; Kirchhoff et al., 2011), grana thylakoid lumina have been shown to expand to 9.2 nm when plants are adapted to light (Kirchhoff et al., 2011).
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Lowland ecotypes are adapted to heavier soils, are tolerant of flooding, and are generally found in the warmer and wetter regions of the southern United States, whereas upland ecotypes are adapted to lighter soils and dry and cold zones of the middle and northern latitudes of the United States (Hopkins et al. 1996; Hultquist et al. 1996).
For light-adapted pure cone ERG measurements, mice were allowed to adapt to light with an intensity of 72.7 cd/m2 for 20 min. ERG measurements were obtained by measuring the average response following 50 light flashes at a frequency of 1 Hz.
Submolecular resolution images have revealed that both the LH2 LH1 ratio, and the architecture of the photosynthetic membrane itself, adapt to light intensity.
He agrees that the transducin shuffle is likely to help the eyes adapt to light changes and adds that the protein-tracking technique invented by Arshavsky's team could be used to explore the role of protein movements in other tissues.
In film a 'portrait' is much more alive than an image, constantly changing and adapting to light.
Chromatophores are also used as a biomarker of blindness in cold-blooded species, as animals with certain visual defects fail to background adapt to light environments.
After putting the algae in a special chemical environment where they can adapt to light and focus, she picks a "black image" that can respond to high cell densities in the lifeforms.
The antenna sizes of PSI and PSII adapt to light quality by phosphorylating LHCII.
Regulation of stomatal closure is at the core of the ability of plants to adapt to light cycles and to changing external conditions or challenges [ 4].
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