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Biotectonics : Tectonics as the Driver of Bioregionalisation / by Malte C. Ebach, Bernard Michaux

By: Ebach, Malte C., autor
Contributor(s): Michaux, Bernard, autor | SpringerLink
Material type: materialTypeLabelE-bookSeries: (Biomedical and Life Sciences (SpringerNature-11642)); (Biomedical and Life Sciences (SpringerNature-43708)).SpringerBriefs in Evolutionary Biology,Publisher: Cham : Springer International Publishing : Imprint: Springer, 2020Edition: First edition 2020.Description: 1 recurso en línea (XII, 67 páginas) : 16 ilustraciones, 5 ilustraciones a color.ISBN: 9783030517731.Subject: Tectónica de placasOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Prologue -- Chapter 1 Introduction to Neotectonics and Bioregionalisation -- Chapter 2 Traversing Terranes: The Australides -- Chapter 3 Neotectonics and Australian Biogeography -- Chapter 4: Biotectonics: Making and Breaking Barriers -- Epilogue -- Glossary -- Appendix.
Abstract: Tectonic plates are constantly moving, either crashing into one another creating a mosaic of mountains and shallow seas, or tearing apart and isolating large swathes of land. In both cases plate tectonics separates populations leading to the evolution of biota. Tectonics is also responsible for the destruction life, for instance when large coral reefs or shallow seas are compressed to form mountain peaks. Could recent research into these processes provide enough evidence to show that tectonics may be the ultimate driver of life on Earth? Our book delves into the current research in tectonics, particularly neotectonics, and its impact on rapid changes on biogeographical classification, also known as bioregionalisation. We also introduce a new term biotectonics that studies the impact of tectonics on biogeoregionalisation. The question we ask is how tectonics directly influences the distribution of biota in four case studies: the Mesozic and early Palaeogene Australides, which spans the Proto-Pacific coast of the South America, Antaractica and Australiasia; and the Neogene of Australia. To conclude we examine the role of neotectonics on tranistion zones and the Amazon Basin and make a case for biotectonic extinction
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería QE39 2020 EB (Browse shelf(Opens below)) Acceso electrónico eBook.23102128
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Prologue -- Chapter 1 Introduction to Neotectonics and Bioregionalisation -- Chapter 2 Traversing Terranes: The Australides -- Chapter 3 Neotectonics and Australian Biogeography -- Chapter 4: Biotectonics: Making and Breaking Barriers -- Epilogue -- Glossary -- Appendix.

Tectonic plates are constantly moving, either crashing into one another creating a mosaic of mountains and shallow seas, or tearing apart and isolating large swathes of land. In both cases plate tectonics separates populations leading to the evolution of biota. Tectonics is also responsible for the destruction life, for instance when large coral reefs or shallow seas are compressed to form mountain peaks. Could recent research into these processes provide enough evidence to show that tectonics may be the ultimate driver of life on Earth? Our book delves into the current research in tectonics, particularly neotectonics, and its impact on rapid changes on biogeographical classification, also known as bioregionalisation. We also introduce a new term biotectonics that studies the impact of tectonics on biogeoregionalisation. The question we ask is how tectonics directly influences the distribution of biota in four case studies: the Mesozic and early Palaeogene Australides, which spans the Proto-Pacific coast of the South America, Antaractica and Australiasia; and the Neogene of Australia. To conclude we examine the role of neotectonics on tranistion zones and the Amazon Basin and make a case for biotectonic extinction

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