Biodiversity hotspots and Ocbil theory
BACKGROUND: Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered, infertile landscapes (Ocbils). SCOPE: This paper reviews recent multi-disciplinary literature inspired by or reacting to aspects...
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Published in | Plant and soil Vol. 403; no. 1-2; pp. 167 - 216 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Cham
Springer International Publishing
01.06.2016
Springer Springer Nature B.V |
Subjects | |
Online Access | Get full text |
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Abstract | BACKGROUND: Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered, infertile landscapes (Ocbils). SCOPE: This paper reviews recent multi-disciplinary literature inspired by or reacting to aspects of Ocbil theory and discusses how it can assist conservation in biodiversity hotspots. CONCLUSIONS: Ocbils occur in at least 12 out of 35 known terrestrial hotspots, but also in other biologically significant sites. Most evidence comes from the Southwest Australian and Greater Cape Floristic Regions, South America’s Pantepui, and the Campo Rupestre of Brazil, though predictions of the theory have been corroborated in 22 sites across South America, Western and Eastern Africa, Southern Asia, and Oceania. Most hypotheses have been corroborated, indicating that Ocbil theory has survived largely intact after 6 years of independent scientific critique, quantitative experimentation, and development. The theory also has been extended to allow identification and characterization of OCBISs (old, climatically-buffered, infertile seascapes), and OCFELs (old, climatically-buffered, fertile landscapes). We illustrate that the principles of Ocbil theory are key to conservation of biodiversity at global scale and provide new directions for research that can improve the theoretical and practical contributions of Ocbil theory. |
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AbstractList | Background
Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered, infertile landscapes (Ocbils).
Scope
This paper reviews recent multi-disciplinary literature inspired by or reacting to aspects of Ocbil theory and discusses how it can assist conservation in biodiversity hotspots.
Conclusions
Ocbils occur in at least 12 out of 35 known terrestrial hotspots, but also in other biologically significant sites. Most evidence comes from the Southwest Australian and Greater Cape Floristic Regions, South America’s Pantepui, and the Campo Rupestre of Brazil, though predictions of the theory have been corroborated in 22 sites across South America, Western and Eastern Africa, Southern Asia, and Oceania. Most hypotheses have been corroborated, indicating that Ocbil theory has survived largely intact after 6 years of independent scientific critique, quantitative experimentation, and development. The theory also has been extended to allow identification and characterization of OCBISs (old, climatically-buffered, infertile seascapes), and OCFELs (old, climatically-buffered, fertile landscapes). We illustrate that the principles of Ocbil theory are key to conservation of biodiversity at global scale and provide new directions for research that can improve the theoretical and practical contributions of Ocbil theory. Background Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered, infertile landscapes (Ocbils). Scope This paper reviews recent multi-disciplinary literature inspired by or reacting to aspects of Ocbil theory and discusses how it can assist conservation in biodiversity hotspots. Conclusions Ocbils occur in at least 12 out of 35 known terrestrial hotspots, but also in other biologically significant sites. Most evidence comes from the Southwest Australian and Greater Cape Floristic Regions, South America's Pantepui, and the Campo Rupestre of Brazil, though predictions of the theory have been corroborated in 22 sites across South America, Western and Eastern Africa, Southern Asia, and Oceania. Most hypotheses have been corroborated, indicating that Ocbil theory has survived largely intact after 6 years of independent scientific critique, quantitative experimentation, and development. The theory also has been extended to allow identification and characterization of OCBISs (old, climatically-buffered, infertile seascapes), and OCFELs (old, climatically-buffered, fertile landscapes). We illustrate that the principles of Ocbil theory are key to conservation of biodiversity at global scale and provide new directions for research that can improve the theoretical and practical contributions of Ocbil theory. Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered, infertile landscapes (Ocbils). This paper reviews recent multi-disciplinary literature inspired by or reacting to aspects of Ocbil theory and discusses how it can assist conservation in biodiversity hotspots. Ocbils occur in at least 12 out of 35 known terrestrial hotspots, but also in other biologically significant sites. Most evidence comes from the Southwest Australian and Greater Cape Floristic Regions, South America's Pantepui, and the Campo Rupestre of Brazil, though predictions of the theory have been corroborated in 22 sites across South America, Western and Eastern Africa, Southern Asia, and Oceania. Most hypotheses have been corroborated, indicating that Ocbil theory has survived largely intact after 6 years of independent scientific critique, quantitative experimentation, and development. The theory also has been extended to allow identification and characterization of OCBISs (old, climatically-buffered, infertile seascapes), and OCFELs (old, climatically-buffered, fertile landscapes). We illustrate that the principles of Ocbil theory are key to conservation of biodiversity at global scale and provide new directions for research that can improve the theoretical and practical contributions of Ocbil theory. Issue Title: Biodiversity hotspots Background Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered, infertile landscapes (Ocbils). Scope This paper reviews recent multi-disciplinary literature inspired by or reacting to aspects of Ocbil theory and discusses how it can assist conservation in biodiversity hotspots. Conclusions Ocbils occur in at least 12 out of 35 known terrestrial hotspots, but also in other biologically significant sites. Most evidence comes from the Southwest Australian and Greater Cape Floristic Regions, South America's Pantepui, and the Campo Rupestre of Brazil, though predictions of the theory have been corroborated in 22 sites across South America, Western and Eastern Africa, Southern Asia, and Oceania. Most hypotheses have been corroborated, indicating that Ocbil theory has survived largely intact after 6 years of independent scientific critique, quantitative experimentation, and development. The theory also has been extended to allow identification and characterization of OCBISs (old, climatically-buffered, infertile seascapes), and OCFELs (old, climatically-buffered, fertile landscapes). We illustrate that the principles of Ocbil theory are key to conservation of biodiversity at global scale and provide new directions for research that can improve the theoretical and practical contributions of Ocbil theory. BACKGROUND: Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered, infertile landscapes (Ocbils). SCOPE: This paper reviews recent multi-disciplinary literature inspired by or reacting to aspects of Ocbil theory and discusses how it can assist conservation in biodiversity hotspots. CONCLUSIONS: Ocbils occur in at least 12 out of 35 known terrestrial hotspots, but also in other biologically significant sites. Most evidence comes from the Southwest Australian and Greater Cape Floristic Regions, South America’s Pantepui, and the Campo Rupestre of Brazil, though predictions of the theory have been corroborated in 22 sites across South America, Western and Eastern Africa, Southern Asia, and Oceania. Most hypotheses have been corroborated, indicating that Ocbil theory has survived largely intact after 6 years of independent scientific critique, quantitative experimentation, and development. The theory also has been extended to allow identification and characterization of OCBISs (old, climatically-buffered, infertile seascapes), and OCFELs (old, climatically-buffered, fertile landscapes). We illustrate that the principles of Ocbil theory are key to conservation of biodiversity at global scale and provide new directions for research that can improve the theoretical and practical contributions of Ocbil theory. |
Audience | Academic |
Author | Silveira, Fernando A. O. Fiedler, Peggy L. Hopper, Stephen D. |
Author_xml | – sequence: 1 givenname: Stephen D. surname: Hopper fullname: Hopper, Stephen D. – sequence: 2 givenname: Fernando A. O. surname: Silveira fullname: Silveira, Fernando A. O. – sequence: 3 givenname: Peggy L. surname: Fiedler fullname: Fiedler, Peggy L. |
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7 P Ashbolt (2764_CR15) 2012; 1 2764_CR164 A Moussalli (2764_CR257) 2009; 18 PJ Edwards (2764_CR113) 2015; 206 MF Fay (2764_CR118) 2001; 56 S Alcantara (2764_CR4) 2015 L Merwin (2764_CR243) 2012; 39 2764_CR52 S Le Stradic (2764_CR213) 2016 S Kilbane (2764_CR187) 2013; 8 N Myers (2764_CR262) 1988; 8 N Shackleford (2764_CR336) 2013; 23 RM Kooyman (2764_CR191) 2013; 8 ME Herberstein (2764_CR157) 2014; 25 R Lange (2764_CR208) 2013; 24 F Rivadavia (2764_CR310) 2012; 110 J Schnitzler (2764_CR330) 2011; 60 FF Coelho (2764_CR81) 2014; 74 BW Molony (2764_CR252) 2011; 94 MD Crisp (2764_CR94) 2011; 2 LM Dupont (2764_CR108) 2011; 38 BW Van Wilgen (2764_CR369) 2013; 11 M Brundrett (2764_CR60) 2009; 320 RA Bradstock (2764_CR50) 2012 DYP Tng (2764_CR359) 2012; 196 KR Thiele (2764_CR357) 2014; 97 SL Krauss (2764_CR194) 2013 M Arakaki (2764_CR12) 2011; 108 JV Schneider (2764_CR329) 2014; 78 A Borkent (2764_CR38) 2004; 3449 J Bor |
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Snippet | BACKGROUND: Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old,... Background Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old,... Background Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old,... Issue Title: Biodiversity hotspots Background Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices... Ocbil theory aims to develop hypotheses explaining the evolution and ecology of, and best conservation practices for, biota on very old, climatically buffered,... |
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SubjectTerms | Biodiversity Biodiversity conservation Biodiversity hot spots Biomedical and Life Sciences Biota Brazil Conservation biology Conservation practices Eastern Africa Ecology Evolution Flora Habitats Landscapes Life Sciences MARSCHNER REVIEW Observations Pacific Ocean Islands Paleoclimatology Plant biodiversity Plant Physiology Plant Sciences Plants prediction Soil fertility Soil Science & Conservation South Asia Vegetation |
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Title | Biodiversity hotspots and Ocbil theory |
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