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Titlebook: Crassulacean Acid Metabolism; Analysis of an Ecolo M. Kluge,I. P. Ting Book 1978 Springer-Verlag Berlin Heidelberg 1978 Crassulaceen-Säures

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International Year of Planet Earth 2007–2009erations of this chapter follow this sequential scheme. Hence, first the reactions dominating at night will be discussed, followed by a consideration of the light-dependent parts of CAM. Finally, a picture of total carbon flow of CAM will be drawn. The important problems of CAM regulation are covere
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Wissenschaftsjahr 2008 — Die Mathematikn time. Furthermore, some of the CAM activities may undergo alterations correlated with the seasonal time of the year. This chapter considers how the regularity of the diurnal and seasonal cycles are controlled, and how the basic CAM cycle is modified by external factors and pertubations from unusua
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International Year of Planet Earth 2007–2009les, 1975; Osmond, 1978). The net CO. uptake occurring at night is the essential and most outstanding feature of gas exchange in CAM plants. As early as 1804, De Saussure observed that stem sections obtained from an . species were capable of removing both oxygen and carbon dioxide from a closed atmo
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Internationales Polarjahr 2007/2008turnal acid accumulation of succulents as a mechanism to conserve carbon in those plants which have large CO. diffusion distances and a relatively small number of stomata. The main sentences of Pfeffer’s postulate are cited here in the original from Pfeffer’s . (1897): “Für diese Pflanzen, bei denen
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Morphology, Anatomy, and Ultrastructure of CAM Plants,CAM is usually regarded as a typical feature of succulents because of its occurrence in many succulent species. However, two questions must be asked:
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