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Effects of altitude and climate in determining elevational plant species richness patterns: A case study from Los Tuxtlas,Mexico
Authors:Thorsten Krömer  Amparo Acebey  Jürgen Kluge  Michael Kessler
Institution:1. Estación de Biología Tropical “Los Tuxtlas”, Universidad Nacional Autónoma de México, Apartado Postal 94, C.P. 95701 San Andrés Tuxtla, Veracruz, Mexico;2. Faculty of Geography, Philipps-University, Deutschhausstraße 10, 35032 Marburg, Germany;3. Systematic Botany, University of Zurich, Zollikerstrasse 107, CH-8008 Zurich, Switzerland
Abstract:Altitudinal changes of composition and richness of montane plant assemblages are complex, depending on the taxonomic group and gradient conditions, with different factors involved that are directly altitude-dependent (e.g., temperatures, air pressure) and altitude-independent (e.g., precipitation, cloud cover, area). In order to assess the relative impacts of temperature, precipitation, air humidity, and area of altitudinal belts on plant diversity, we analyzed diversity patterns of five species-rich groups, mostly herbaceous plants, in 74 forest plots along three climatically contrasting elevational transects from humid tropical lowland vegetation up to cloud forests at Los Tuxtlas, Mexico. We recorded 278 plant species, with ferns being the most species-rich group followed by orchids, bromeliads, aroids, and piperoids. The most striking results were the contrasting patterns and model results for terrestrial and epiphytic taxa. Whereas the richness of all terrestrial species taken together did not change significantly with elevation, vascular epiphytes showed increasing species numbers with altitude. However, a number of individual terrestrial taxa showed also significant elevation-related changes: aroids showed a marked decline with hight, orchids and piperoids increased, and ferns displayed a hump-shaped pattern with highest richness in mid-altitudes. Among the epiphytes, aroids declined while most other groups increased with altitude. This distinction is relevant for projections of responses of plant communities to climate change, which will lead to increased temperatures and to changing precipitation and cloud condensation regimes and thus will likely affect terrestrial and epiphytic species in different ways.
Keywords:Elevational gradients  Epiphytes  Ferns  Orchids  Terrestrial plants  Veracruz state
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