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Kluge / Ting | Crassulacean Acid Metabolism | Buch | 978-3-642-67040-4 | www.sack.de

Buch, Englisch, 212 Seiten, Format (B × H): 170 mm x 244 mm, Gewicht: 402 g

Reihe: Ecological Studies

Kluge / Ting

Crassulacean Acid Metabolism

Analysis of an Ecological Adaptation
1. Auflage 2011
ISBN: 978-3-642-67040-4
Verlag: Springer

Analysis of an Ecological Adaptation

Buch, Englisch, 212 Seiten, Format (B × H): 170 mm x 244 mm, Gewicht: 402 g

Reihe: Ecological Studies

ISBN: 978-3-642-67040-4
Verlag: Springer


The acid metabolism of certain succulent plants, now known as Crassulacean Acid Metabolism (CAM) has fascinated plant physiologists and biochemists for the last one and a half centuries. However, since the basic discoveries of De Saussure in 1804 that stem joints of Opuntia were able to remove CO from the 2 atmosphere during the night, and of Heyne in 1815 (see Wolf, 1960) that organic acids accumulate in the leaves of Bryophyllum calycinum during the night, the two main aspects of CAM, diurnal CO gas exchange and metabolism of malic acid, 2 have first been studied nearly independently. Hence, it is not surprising that most research to elucidate the mechanism of CAM has been during the last 15 years since CO exchange and malate metabolism were studied and interpreted in its 2 context. These efforts finally resulted in a clear realization that the CAM phenom enon is a variation on the mode of how plants can photosynthetically harvest CO from the atmosphere. 2 The interpretation of CAM in this sense was stimulated by the discovery of another variant of photosynthesis, the C -pathway (see Black, 1973; Hatch and 4 Slack, 1970; Hatch, 1976). Because this newly discovered photosynthetic pathway is recognized to be very closely related to the CAM pathway, the work on the latter became intensified during these last years.

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Terminology.- 1. Taxonomy and Geographical Distribution of CAM Plants.- 1.1 Cactaceae.- 1.2 Crassulaceae.- 1.3 Euphorbiaceae.- 1.4 Aizoaceae (Mesembryanthemaceae).- 1.5 Bromeliaceae.- 1.6 Asclepiadaceae.- 1.7 Orchidaceae.- 1.8 Liliaceae.- 1.9 Agavaceae.- 1.10 Asteraceae.- 1.11 Vitaceae.- 1.12 Geraniaceae.- 1.13 Other Families.- 1.14 Conclusions.- 2. Morphology, Anatomy, and Ultrastructure of CAM Plants.- 2.1 What is a Succulent?.- 2.2 Quantitative Indices of Succulence.- 2.3 Succulence and the Occurrence of CAM.- 2.4 The Presence of the Photosynthetic Apparatus as a Prior Condition for the Occurrence of CAM.- 2.5 The Architecture and Ultrastructure of CAM-Performing Cells.- 3. The Metabolic Pathway of CAM.- 3.1 The Processes of the Dark Period.- 3.2 The Processes of the Light Period.- 3.3 Carbon Isotope Composition.- 3.4 The Proposed Total Carbon Flow in CAM.- 3.5 Comparison of CAM with Other Carboxylation Pathways in Plants.- 3.6 Translocation of CAM Products in the Plant.- 4. Control and Modification of CAM.- 4.1 Definitions.- 4.2 Metabolic Control of CAM.- 4.3 Modification of the Diurnal Malic Acid Cycle by External Factors.- 4.4 Seasonal Control of CAM.- 4.5 Developmental Control of CAM.- 4.6 Conclusions.- 5. Gas Exchange of CAM Plants.- 5.1 CO2 Exchange.- 5.2 Oxygen Exchange.- 5.3 Water Vapor Exchange and Stomata of CAM Plants.- 6. Ecology, Productivity, and Economic Use of CAM Plants.- 6.1 The Hypothesis: Ecological Advantage of CAM.- 6.2 Verification of the Hypothesis.- 6.3 Productivity.- 6.4 Economic Exploitation.- References.- Taxonomic Index.



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