The relationship of tropical bird communities to tree species composition and vegetation structure along an Andean elevational gradient

被引:129
作者
Jankowski, Jill E. [1 ]
Merkord, Christopher L. [2 ]
Rios, William Farfan [3 ]
Cabrera, Karina Garcia [3 ]
Revilla, Norma Salinas [4 ,5 ]
Silman, Miles R. [3 ,6 ]
机构
[1] Univ British Columbia, Dept Zool, Vancouver, BC V6T 1Z4, Canada
[2] Univ S Dakota, Dept Biol, Vermillion, SD 57069 USA
[3] Wake Forest Univ, Dept Biol, Winston Salem, NC 27106 USA
[4] Univ Oxford, Environm Change Inst, Oxford, England
[5] Univ Nacl San Antonio de Abad Cuzco, Herbario Vargas, Cuzco, Peru
[6] Wake Forest Univ, Ctr Energy Environm & Sustainabil, Winston Salem, NC 27106 USA
基金
美国国家科学基金会;
关键词
Andes; avian guilds; beta diversity; climate change; habitat use; montane forest; Neotropics; nestedness; species turnover; CLIMATE-CHANGE; RAIN-FOREST; PRIMARY PRODUCTIVITY; RANGE SHIFTS; ASSEMBLAGES; DIVERSITY; TURNOVER; DISTRIBUTIONS; MONTANE; BIODIVERSITY;
D O I
10.1111/jbi.12041
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Aim Understanding patterns of species turnover along environmental gradients and their consistency across taxonomic groups is central to the study of biodiversity. We may expect congruence in diversity patterns across groups whose ranges could be influenced by species interactions. We explore associations between bird and vegetation communities in the tropical Andes to determine whether patterns of species richness and turnover in birds and trees are congruent with elevation, and whether tree species composition, vegetation structure, elevation, or a combination of these best predicts bird species composition. Location A forested 2600-m elevational gradient on the eastern slope of the Peruvian Andes. Methods Bird surveys and vegetation measurements were conducted at 172 points, and a subset of these were spatially matched with fourteen 1-ha tree inventory plots. Diversity patterns were described for trees, birds, and avian foraging guilds. We used dissimilarity matrices to examine patterns of turnover and nestedness. Turnover of birds and trees was examined by comparing compositional change of adjacent plots along the gradient. Multiple regression on distance matrices was employed to determine contributions of tree species composition, vegetation structure and elevation to explaining variation in bird species composition. Results Species richness was higher for trees than for birds, and whereas diversity in both taxa decreased with elevation, tree richness showed a low-elevation plateau before declining at higher elevations. Tree species had narrower distributions compared to birds, but patterns of turnover were largely congruent between taxa. Nestedness contributed much less to dissimilarity than turnover, although birds showed higher nestedness, particularly at high elevations. Tree species composition, elevation and vegetation structure were all important predictors of bird species composition; the best model explained 78% of bird dissimilarity across plots. Tree species composition was always included in the best models, for all birds and foraging guilds. Main conclusions Our assessment of Andean bird and vegetation communities suggests strong correspondence, perhaps due to direct interactions or similar underlying drivers. We hypothesize that with climate change, range shifts in these groups may not occur independently. Rather, birds may have delayed upslope shifts or may be limited to high-elevation patches where appropriate vegetation communities exist.
引用
收藏
页码:950 / 962
页数:13
相关论文
共 68 条
[11]  
2
[12]   Global warming, elevational range shifts, and lowland biotic attrition in the wet tropics [J].
Colwell, Robert K. ;
Brehm, Gunnar ;
Cardelus, Catherine L. ;
Gilman, Alex C. ;
Longino, John T. .
SCIENCE, 2008, 322 (5899) :258-261
[13]  
Farfan Rios W., 2011, THESIS WAKE FOREST U
[14]   Upslope migration of Andean trees [J].
Feeley, Kenneth J. ;
Silman, Miles R. ;
Bush, Mark B. ;
Farfan, William ;
Cabrera, Karina Garcia ;
Malhi, Yadvinder ;
Meir, Patrick ;
Salinas Revilla, Norma ;
Quisiyupanqui, Mireya Natividad Raurau ;
Saatchi, Sassan .
JOURNAL OF BIOGEOGRAPHY, 2011, 38 (04) :783-791
[15]   Land-use and climate change effects on population size and extinction risk of Andean plants [J].
Feeley, Kenneth J. ;
Silman, Miles R. .
GLOBAL CHANGE BIOLOGY, 2010, 16 (12) :3215-3222
[16]   Patterns of spatial autocorrelation of assemblages of birds, floristics, physiognomy, and primary productivity in the central Great Basin, USA [J].
Fleishman, E ;
Mac Nally, R .
DIVERSITY AND DISTRIBUTIONS, 2006, 12 (03) :236-243
[17]   Elevational Ranges of Birds on a Tropical Montane Gradient Lag behind Warming Temperatures [J].
Forero-Medina, German ;
Terborgh, John ;
Socolar, S. Jacob ;
Pimm, Stuart L. .
PLOS ONE, 2011, 6 (12)
[18]  
Frazer GW., 1999, Gap Light Analyzer (GLA): Imaging software to extract canopy structure and gap light transmission indices from true-color fisheye photographs, users manual and documentation
[19]   Environmental and genetic control of insect abundance and herbivory along a forest elevational gradient [J].
Garibaldi, Lucas A. ;
Kitzberger, Thomas ;
Chaneton, Enrique J. .
OECOLOGIA, 2011, 167 (01) :117-129
[20]   Net primary productivity allocation and cycling of carbon along a tropical forest elevational transect in the Peruvian Andes [J].
Girardin, C. A. J. ;
Malhi, Y. ;
Aragao, L. E. O. C. ;
Mamani, M. ;
Huasco, W. Huaraca ;
Durand, L. ;
Feeley, K. J. ;
Rapp, J. ;
Silva-Espejo, J. E. ;
Silman, M. ;
Salinas, N. ;
Whittaker, R. J. .
GLOBAL CHANGE BIOLOGY, 2010, 16 (12) :3176-3192