The global biogeography of semi-arid periodic vegetation patterns

被引:226
作者
Deblauwe, Vincent
Barbier, Nicolas [1 ,3 ]
Couteron, Pierre [2 ]
Lejeune, Olivier [4 ,5 ]
Bogaert, Jan [6 ]
机构
[1] Univ Oxford, Ctr Environm OUCE ECI, Oxford OX1 3QY, England
[2] IFP, Pondicherry 605001, India
[3] India Inst Rech Dev IRD, Joint Res Unit UMR Bot & CoMputAt Plant Architect, F-34398 Montpellier, France
[4] Ecole Normale Super, Dept Math Appl, F-75230 Paris 05, France
[5] Univ Libre Bruxelles, Fac Sci, B-1050 Brussels, Belgium
[6] Univ Libre Bruxelles, Lab Ecol Paysage, B-1050 Brussels, Belgium
来源
GLOBAL ECOLOGY AND BIOGEOGRAPHY | 2008年 / 17卷 / 06期
关键词
Aridity; banded vegetation; bioclimatic envelope; hierarchical partitioning; maximum entropy; periodic vegetation pattern; self-organization; tiger bush;
D O I
10.1111/j.1466-8238.2008.00413.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Aim Vegetation exhibiting landscape-scale regular spatial patterns has been reported for arid and semi-arid areas world-wide. Recent theories state that such structures are bound to low-productivity environments and result from a self-organization process. Our objective was to test this relationship between periodic pattern occurrence and environmental factors at a global scale and to parametrize a predictive distribution model. Location Arid and semi-arid areas world-wide. Methods We trained an empirical predictive model (Maxent) for the occurrence of periodic vegetation patterns, based on environmental predictors and known occurrences verified on Landsat satellite images. Results This model allowed us to discover previously unreported pattern locations, and to report the first ever examples of spotted patterns in natural systems. Relationships to the main environmental drivers are discussed. Main conclusions These results confirm that periodic patterned vegetations are ubiquitous at the interface between arid and semi-arid regions. Self-organized patterning appears therefore to be a biome-scale response to environmental conditions, including soil and topography. The set of correlations between vegetation patterns and their environmental conditions presented in this study will need to be reproduced in future modelling attempts.
引用
收藏
页码:715 / 723
页数:9
相关论文
共 52 条
[2]   Grass-mediated capture of resource flows and the maintenance of banded mulga in a semi-arid woodland [J].
Anderson, VJ ;
Hodgkinson, KC .
AUSTRALIAN JOURNAL OF BOTANY, 1997, 45 (02) :331-342
[3]  
Audry P., 1962, Prospection ecologique. Etudes en Afrique occidentale. Observations sur less sols et la vegetation en Mauretanie du Sud-est et sur la bordure adjacente du Mali (1959 et 1961).
[4]   Self-organized vegetation patterning as a fingerprint of climate and human impact on semi-arid ecosystems [J].
Barbier, N ;
Couteron, P ;
Lejoly, J ;
Deblauwe, V ;
Lejeune, O .
JOURNAL OF ECOLOGY, 2006, 94 (03) :537-547
[5]   Spatial decoupling of facilitation and competition at the origin of gapped vegetation patterns [J].
Barbier, Nicolas ;
Couteron, Pierre ;
Lefever, Rene ;
Deblauwe, Vincent ;
Lejeune, Olivier .
ECOLOGY, 2008, 89 (06) :1521-1531
[6]   OBSERVATIONS ON VEGETATION ARCS IN THE NORTHERN REGION, SOMALI REPUBLIC [J].
BOALER, SB ;
HODGE, CAH .
JOURNAL OF ECOLOGY, 1964, 52 (03) :511-+
[7]   Positive interactions among plants [J].
Callaway, RM .
BOTANICAL REVIEW, 1995, 61 (04) :306-349
[8]   HIERARCHICAL PARTITIONING [J].
CHEVAN, A ;
SUTHERLAND, M .
AMERICAN STATISTICIAN, 1991, 45 (02) :90-96
[9]   Global pattern of potential evaporation calculated from the Penman-Monteith equation using satellite and assimilated data [J].
Choudhury, BJ .
REMOTE SENSING OF ENVIRONMENT, 1997, 61 (01) :64-81
[10]  
CORNET A F, 1988, P221