Photosynthesis in Algae: Biochemical and Physiological Mechanisms / Advances in Photosynthesis and Respiration Bd.45 (PDF)
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This volume presents 15 chapters by world experts on their subjects, ranging from reviews of algal diversity and genetics to in-depth reviews of special algal groups such as diatoms (which account for over 30% of marine carbon capture). Other chapters chart the ways in which this carbon capture occurs or how there are a multiplicity of ways in which algae intercept sun light and deploy this energy for carbon capture. A fascinating aspect here is the way in which sun light is harvested. A special chapter is devoted to the very recent and exciting possibility that algae use coherent light energy transformation to enhance the efficiency of light capture, an aspect of quantum physics that has implications for future developments at several levels and a variety of industries. Just how and why algae use Chlorophyll a as the major light capture pigment is discussed in several chapters. However, attention is also given to those cyanobacteria, which have been found to use the special Near-Infra Red absorbing chlorophylls mentioned above. And attention is also given to those algae that employ phycobiliproteins to fill in the "green window", i.e., the spectralregion from 400 - 650 nm, which is not efficiently covered by chlorophyll and carotenoid pigments. Photoinhibition and photoprotection is the subject area of several chapters and one which it is essential to understand a we work towards greater efficiency of algal photosynthesis. A final chapter is devoted to understanding the molecular basis for coral bleaching, a much-neglected area that is essential in trying to come up with solutions to this very worrying phenomenon, caused by global warming and ocean acidification.
This is a book for research scientists, environmentalists, planners in a range of areas including those of marine resources, nutrient control and pollution of water bodies and that growing body of concerned citizens interested in controlling carbon emissions and global warming. Special attention has been given to generating a set of articles that will be read by university students, informed laymen and all those whose wish to understand the rapid changes that havecome about in our knowledge of algae over the past decade.
Arthur Robert Grossman Arthur Grossman has been a Staff Scientist at The Carnegie Institution for Science, Department of Plant Biology since 1982, and holds a courtesy appointment as Professor in the Department of Biology at Stanford University. He has performed research across fields ranging from plant biology, microbiology, marine biology, ecology, genomics, engineering and photosynthesis and initiated large scale algal genomics by leading the
John Raven FRS is an Emeritus Professor at the University of Dundee UK, an Honorary Fellow of the James Hutton Institute UK, a Visiting Professor at the University of Technology Sydney, and an Adjunct Professor at the University of Western Australia. He has wide research interests, including astrobiology, bioenergetics, biogeochemistry, ecophysiology, evolutionary biology and palaeobiology. The majority of his publications have involved studies on algae. He has published 482 scientific papers (Web of Science, 30 July 2019), and is a Clavirate Analytics Highly Cited Researcher in the Cross Field research area. Among his contributions to our knowledge of algal photosynthesis are studies of inorganic carbon acquisition mechanisms in the laboratory and in nature, photosynthetic electron flow pathways other than from water to carbon dioxide, interactions of photosynthetic and respiratory reactions in organismal bioenergetics, and the extremes of photon flux density at which algal photosynthesis and photolithotrophic growth can occur.
- 2020, 1st ed. 2020, 514 Seiten, Englisch
- Herausgegeben: Anthony W. D. Larkum, Arthur R. Grossman, John A. Raven
- Verlag: Springer-Verlag GmbH
- ISBN-10: 3030333973
- ISBN-13: 9783030333973
- Erscheinungsdatum: 03.06.2020
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