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Titlebook: Carotenoids in Photosynthesis; Andrew J. Young,George Britton Book 1993 Springer Science+Business Media Dordrecht 1993 development.photosy

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https://doi.org/10.1007/0-387-34643-0), especially with diode-array detection. This has permitted much more accurate determination of the pigment content and composition of photosynthetic organisms. However, as a note of caution, whilst analytical techniques have improved greatly, they still require very careful extraction of the plant
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https://doi.org/10.1007/0-387-34643-0nfusion, those that are preferred by Thornber and co-workers will be used in this article wherever possible. These designations and the alternatives used by many other groups are given in Table 3.1, together with some of the characteristics of the individual complexes.
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https://doi.org/10.1007/0-387-34643-0ria, are C. tetraterpenes. They are biosynthesised by a specialised branch of the isoprenoid or terpenoid pathway which is also used for the biosynthesis of a wide variety of other important compounds. All isoprenoid compounds are built up from the C. “isoprene unit” the carbon skeleton of which is
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ANTISTRUCTURES: The Real in the Complex, concentration. These are the three xanthophylls of the xanthophyll cycle and they undergo intercon versions induced by changes in light intensity. Furthermore, the acclimation of photosynthetic organs to high light involves a strong increase in the total sum of these three xanthophylls. Both the in
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ANTISTRUCTURES: The Real in the Complex,mation that is required. Thus, in many cases, the only objective is a routine screening of the leaf or other carotenoid-containing material to monitor possible and often subtle quantitative changes in pigment content and composition. In other cases, identification of all carotenoids found in a range
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