Elevational diversity gradients across seed plant taxonomic levels in the Lancang River Nature Reserve: role of temperature, water and the mid-domain effect

Jie Gao , Xing Zhang , Zhifeng Luo , Junjie Lan , Yanhong Liu

Journal of Forestry Research ›› 2017, Vol. 29 ›› Issue (4) : 1121 -1127.

PDF
Journal of Forestry Research ›› 2017, Vol. 29 ›› Issue (4) : 1121 -1127. DOI: 10.1007/s11676-017-0509-1
Original Paper

Elevational diversity gradients across seed plant taxonomic levels in the Lancang River Nature Reserve: role of temperature, water and the mid-domain effect

Author information +
History +
PDF

Abstract

It remains unclear whether the elevational diversity gradients observed in seed plants across different taxonomic levels (family, genus, and species) are driven by the same macro-environmental variables. In this study, seed plant elevational distribution data from the Lancang River Nature Reserve (Yunnan, China) were used to investigate spatial patterns in diversity and their environmental correlates, comparing across taxonomic levels. Environmental variables included energy availability, climate seasonality and environmental heterogeneity. All taxonomic levels (family, genus, and species) were found to have strong elevational richness gradients, with the strength of the gradient weakening at higher taxonomic levels. Spatial patterns in richness were explained by a combination of contemporary environmental variables and the mid-domain effect at all taxonomic levels. The independent effects of temperature- and precipitation-related variables were similar in explaining geographical patterns of family, genus and species richness. Energy, seasonality and heterogeneity variables influenced seed plant spatial richness at different taxonomic levels in similar ways.

Keywords

Elevational diversity gradients / Lancang River Nature Reserve / Energy availability / Climate seasonality / Environmental heterogeneity

Cite this article

Download citation ▾
Jie Gao, Xing Zhang, Zhifeng Luo, Junjie Lan, Yanhong Liu. Elevational diversity gradients across seed plant taxonomic levels in the Lancang River Nature Reserve: role of temperature, water and the mid-domain effect. Journal of Forestry Research, 2017, 29(4): 1121-1127 DOI:10.1007/s11676-017-0509-1

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Allouche O, Kalyuzhny M, Moreno-Rueda G, Pizarro M, Kadmon R. Area-heterogeneity tradeoff and the diversity of ecological communities. Proc Natl Acad Sci USA, 2012, 109: 17495-17500.

[2]

Balmford A, Lyon AJE, Lang RM. Testing the higher-taxon approach to conservation planning in a megadiverse group: the macrofungi. Biol Convers, 2000, 93: 209-217.

[3]

Bazzaz FA. Plant species diversity in old-field successional ecosystems in southern Illinois. Ecology, 1975, 56: 485-488.

[4]

Bogonovich M, Robeson SM, Watson MA. Patterns of north American fern and lycophyte richness at three taxonomic levels. Am Fern J, 2014, 103: 193-214.

[5]

Brown JH, Lomolino MV. Biogeography, 1998, Sunderland: Sinauer Associates Inc.

[6]

Carnicer J, Brotons L, Herrando S, Sol D. Improved empirical tests of area-heterogeneity tradeoffs. Proc Natl Acad Sci USA, 2013, 110: E2858-E2860.

[7]

Chen SB, Mao LF, Zhang JL, Zhou KX, Gao JX. Environmental determinants of geographic butterfly richness pattern in eastern China. Biodivers Conserv, 2014, 23: 1453-1467.

[8]

Chen SB, Ferry Slik JW, Mao LF, Bi MJ, Shen MW, Zhou KX. Latitudinal diversity gradients in bryophytes and woody plants: roles of temperature and water availability. J Syst Evol, 2015, 53: 535-545.

[9]

Colwell RK. RangeModel: tools for exploring and assessing geometric constraints on species richness (the mid-domain effect) along transects. Ecography, 2008, 31: 4-7.

[10]

Colwell RK, Rahbek C, Gotelli NJ. The mid-domain effect and species richness patterns: what have we learned so far?. Am Nat, 2004, 163: E1-E23.

[11]

Field R, Hawkins BA, Cornell HV, Currie DJ, Diniz-Filho JAF, Guégan JF, Kaufman DM, Kerr JT, Mittelbach GG, Oberdorff T, O’Brien EM, Turner JRG. Spatial species-richness gradients across scales: a meta-analysis. J Biogeogr, 2009, 36: 132-147.

[12]

Francis AP, Currie DJ. A globally consistent richness climate relationship for angiosperms. Am Nat, 2003, 161: 523-536.

[13]

Grytnes JA, Beaman JH. Elevational species richness patterns for vascular plants on Mount Kinbalu, Borneo. J Biogeogr, 2006, 33: 1838-1849.

[14]

Heikkinen RK, Luoto M, Kuussaari M, Pöyry J. New insights into butterfly—environment relationships using partitioning methods. Proc R Soc B, 2005, 272: 2203-2210.

[15]

Hubbell SP. The unified neutral theory of biodiversity and biogeography, 2001, Princeton: Princeton University Press.

[16]

Kaspari M. Taxonomic level, trophic biology and the regulation of local abundance. Glob Ecol Biogeogr, 2001, 10: 229-244.

[17]

Kerr JT, Southwood TRE, Cihlar J. Remotely sensed habitat diversity predicts butterfly species richness and community similarity in Canada. Proc Nat Acad Sci USA, 2001, 98: 11365-11370.

[18]

Körner C. Why are there global gradients in species richness? Mountains might hold the answer. Trends Ecol Evol, 2000, 15: 513-514.

[19]

Körner C. The use of ‘altitude’ in ecological research. Trends Ecol Evol, 2007, 22: 569-574.

[20]

Kreft H, Jetz W. Global patterns and determinants of vascular plant diversity. PNAS, 2007, 104: 5925-5930.

[21]

Lomolino MV. Elevation gradients of species-density: historical and prospective views. Glob Ecol Biogeogr, 2001, 10: 3-13.

[22]

Lomolino MV, Riddle BR, Whittaker RJ, Brown JH. Biogeography, 2010, Sunderland: Sinauer Associates, Inc..

[23]

McCain CM. The mid-domain effect applied to elevational gradients: species richness of small mammals in Costa Rica. J Biogeogr, 2004, 2004(31): 19-31.

[24]

Montoya D, Rodríguez MA, Zavala MA, Hawkins BA. Contemporary richness of holarctic trees and the historical pattern of glacial retreat. Ecography, 2007, 30: 173-182.

[25]

O’Brien EM. Climatic gradients in woody plant species richness: towards an explanation based on an analysis of southern Africa’s woody flora. J Biogeogr, 1993, 20: 181-198.

[26]

Ohsawa M. Latitudinal comparison of altitudinal changes in forest structure, leaf-type, and species richness in humid monsoon Asia. Vegetatio, 1995, 121: 3-10.

[27]

Rahbek C. The role of spatial scale and the perception of large-scale species-richness patterns. Ecol Lett, 2005, 8: 224-239.

[28]

Rahbek C, Graves GR. Multiscale assessment of patterns of avian species richness. Proc Natl Acad Sci USA, 2001, 98: 4534-4539.

[29]

Sanders NJ. Elevational gradients in ant species richness: area, geometry, and Rapoport’s rule. Ecography, 2002, 25: 25-32.

[30]

Sanders NJ, Moss J, Wagner D. Patterns of ant species richness along elevational gradients in an arid ecosystem. Glob Ecol Biogeogr, 2003, 12: 93-102.

[31]

Stein A, Gerstner K, Kreft H. Environmental heterogeneity as a universal driver of species richness across taxa, biomes and spatial scales. Ecol Lett, 2014, 17: 70-81.

[32]

Stevens GC. Extending Rapoport’s rule to Pacific marine fishes. J Biogeogr, 1996, 23: 149-154.

[33]

Tello JS, Stevens RD. Multiple environmental determinants of regional species richness and effects of geographic range size. Ecography, 2010, 33: 796-808.

[34]

Walsh CJ, Mac-Nally R (2003) Hierarchical Partitioning, R Project for Statistical Computing. http://cran.r-project.org/

[35]

Wang ZH, Tang ZY, Fang JY. Altitudinal patterns of seed plant richness in the Gaoligong Mountains, south-east Tibet, China. Divers Distrib, 2007, 13: 845-854.

[36]

Wang J, Du F, Yang YM, Tian K, Wang YX. Research on the nature reserve of Lancang River in Yunnan, China, 2010, Beijing: Science Press.

[37]

White PJT, Kerr JT. Human impacts on environment-diversity relationships: evidence for biotic homogenization from butterfly species richness patterns. Glob Ecol Biogeogr, 2007, 16: 290-299.

[38]

Willig MR, Kaufman DM, Stevens RD. Latitudinal gradients of biodiversity: pattern, process, scale, and synthesis. Annu Rev Ecol Evol Syst, 2003, 34: 273-309.

AI Summary AI Mindmap
PDF

108

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/