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Ruth Davies Head of climate change policy, RSPB There is no credible evidence that algae photosynthesise faster, or are currently able to accumulate substantially more biomass, during a period of sustained growth than other green organisms (How algae could drive the future of biofuels, October 23).
The present work provides new evidence for metabolic improvement of green organisms through the transgenic approach to remediation.
The green organisms such as plants and algae gain energy via aerobic respiration, and the metabolism changes depending on the oxygen availability.
The green organisms are exposed to a variety of oxygen availability in the environment that may vary from fully aerobic state (normoxia) to oxygen deficiency (hypoxia) or the anaerobic condition (anoxia).
This is most pronounced in clusters with two members, which amount to 27% in P. patens while being substantially less frequent in the other green organisms.
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The last hypothesis, which was prompted by our examination of the structure of LI818 proteins, was that the first members of this family could have evolved in a chlorophyll a/c-containing organism after secondary endosymbiosis, and that a horizontal gene transfer could have taken place to an early green organism.
The functional characterization of a CDK with clear CDKB properties in a non-green organism questions whether the current definition of B-type CDKs being plant-specific might need revision.
These two considerations, taken together, suggest that they represent the "functional core" of the Photosystem I and II antenna system in green lineage organisms.
Thus, these proteins are not only present in most green lineage organisms but, at least in seed plants, they are always present regardless of environmental conditions.
By comparison with antenna proteins from other green lineage organisms, we showed that some Lhc polypeptides, notably Lhcb3 and Lhcb6, are detectable only in land plants, suggesting they may play a role in adaptation to aerial environments.
The greater numbers of IMMs in green photosynthetic organisms was predicted to be due to the largest IMM family targeted to the photosynthetic apparatus [ 4, 10].
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