Buch, Englisch, 336 Seiten, Format (B × H): 221 mm x 286 mm, Gewicht: 1049 g
Buch, Englisch, 336 Seiten, Format (B × H): 221 mm x 286 mm, Gewicht: 1049 g
ISBN: 978-0-19-958309-6
Verlag: Oxford University Press (UK)
Summarizes the state of the art of chemical interactions in aquatic systems, providing a firm foundation for future studies
Integrates work on marine and freshwater systems in order to foster collaboration between these separate research communities
Adopts a wide approach to the topic, including research on defence adaptations and chemical signalling
Includes contributions from the leading researchers in the field
In recent years it has become increasingly clear that chemical interactions play a fundamental role in aquatic habitats and have far-reaching evolutionary and ecological consequences. A plethora of studies have shown that aquatic organisms from most taxa and functional groups respond to minute concentrations of chemical substances released by other organisms. However, our knowledge of this "chemical network" is still negligible. Chemical interactions can be divided into two larger sub-areas based on the function of the chemical substance. First, there are interactions where chemical substances are toxic to other organisms and are used as a defence against consumers (including both herbivores and predators) or a weapon against competitors (allelopathy). Second, chemical substances may be used as a source for information of the environment; for example: how can I find the optimal habitat, the best food, the nicest partner, and avoid being eaten? Aquatic organisms are able to detect and respond to extremely low concentrations of chemical cues to answer all these questions. The book aims at connecting these intriguing chemical interactions with traditional knowledge of organism interactions.
Chemical Ecology of Aquatic Systems covers a wide range of studies, both plant and animal, from different geographic regions and habitats - pelagic as well as benthic. Most of the chemical interactions are similar in freshwater and marine habitats and this book therefore strives at integrating work on both systems.
Zielgruppe
This accessible, research level text is aimed at graduate students and professional researchers in the fields of limnology, marine ecology, evolutionary biology, behavioural ecology, and chemical ecology.
Autoren/Hrsg.
Fachgebiete
- Naturwissenschaften Biowissenschaften Biowissenschaften Evolutionsbiologie
- Naturwissenschaften Biowissenschaften Biowissenschaften Meeres- und Süßwasserökologie
- Geowissenschaften Geologie Limnologie (Süßwasser)
- Geowissenschaften Umweltwissenschaften Angewandte Ökologie
- Naturwissenschaften Biowissenschaften Biowissenschaften Ökologie
Weitere Infos & Material
Christer Brönmark and Lars-Anders Hansson: Chemical ecology of aquatic systems - an introduction
1: Jelle Atema: Aquatic odour dispersal fields: opportunities and limits of detection, communication, and navigation
2: Eric von Elert: Information conveyed by chemical cues
3: Thomas Breithaupt and Jörg D. Hardege: Pheromones mediating sex and dominance in aquatic animals
4: Gabriele Gerlach and Cornelia Hinz: Chemical signals and kin biased behaviour
5: Gabriele Gerlach and Jelle Atema: The use of chemical cues in habitat recognition and settlement
6: Ole B. Stabell: Migration and navigation
7: Marc Weissburg: Death from downstream: chemosensory navigation and predator-prey processes
8: Linda Weiss, Christian Laforsch, and Ralph Tollrian: The taste of predation and the defences of prey
9: Douglas P. Chivers, Grant E. Brown, and Maud C.O. Ferrari: The evolution of alarm substances and disturbance cues in aquatic animals
10: Andrew M. Turner and Scott D. Peacor: Scaling up infochemicals: ecological consequences of chemosensory assessment of predation risk
11: Charles D. Derby and Richard K. Zimmer: Neuroecology of predator-prey interactions
12: Ulrich K. Steiner and Josh R. Auld: Why is the jack of all trades a master of none? Studying the evolution of inducible defences in aquatic systems
13: Georg Pohnert: How to explore the sometimes unusual chemistry of aquatic defence chemicals
14: Elisabeth M. Gross, Catherine Legrand, Karin Rengefors, and Urban Tillmann: Allelochemical interactions among aquatic primary producers
15: Henrik Pavia, Finn Baumgartner, Gunnar Cervin, Swantje Enge, Julia Kubanek, Göran M. Nylund, Erik Selander, J. Robin Svensson, and Gunilla B. Toth: Chemical defences against herbivores
16: Cynthia Kicklighter: Chemical defences against predators
17: Miquel Lürling: Info-disruption: pollutants interfering with the natural chemical information conveyance in aquatic systems
18: Christer Brönmark and Lars-Anders Hansson: Aquatic chemical ecology: new directions and challenges for the future
Index




