§16§This book presents various examples of how advanced fluorescence and spectroscopic analytical methods can be used in combination with computer data processing to address different biochemical questions. The main focus is on evolutionary biochemistry and the description of biochemical and metabolic issues; specifically, the use of pulse amplitude modulated fluorescence (PAM) for the functional analysis of the cellular state, as well as results obtained by means of the derivative spectroscopy method characterizing structural reorganization of a cell under the influence of external factors, are discussed. The topics presented here will be of interest to biologists, geneticists, biophysicists and biochemists, as well as experts in analytical chemistry, pharmaceutical chemistry and radio chemistry and radio activation studies with protonen and alpha-particles. It also offers a valuable resource for advanced undergraduate and graduate students in biological, physical and chemical discip §16§lines whose work involves derivative spectrophotometry and PAM-fluorescence.§ §04§§Introduction. Development of the methodological base, disputes, conclusions.- Successes of the pulse amplitude modulated fluorescence application.- Methodological approaches in our experimental work.- Application of Derivative Spectrophotometry in Comparative Biochemical Studies.- The Range of DHSO Application in Experiments with Pigments of Plants and Animals.- Conclusion.§ §04§sition of the promising antitumor drug "Ukrain".- Derived spectra application for the analysis of derived forms of nondepolarizing muscle relaxant tercuronium, of vitamins and hormones.- The Range of DHSO Application in Experiments with Pigments of Plants and Animals: New data on derived spectra of high orders for some carotenoids.- Neoxanthin as a probable key product of formation of - and beta- carotenoid derivatives.- Metabolic transformations of labeled 14C- or 3H- carotene in animal tissues.- Importance of the derivative spectrophotometry for study of alternative ways of carotenoids biosynthesis in Procaryota and Eucaryota.- Possibility of participation of -ketoglutaric acid funds in carotenoids biosynthesis in chloroplasts.- Malic acid as the source for carotenoids synthesis in plants with 4-way of carbon in photosynthesis.- Indication of the de-epoxidation reaction with help of derived spectra.- Conclusion.