Environmental Controls of Cryptogam Composition and Diversity in Anthropogenic and Natural Peatland Ecosystems of Chilean Patagonia

被引:0
作者
Carolina A. León
Gisela Oliván Martínez
Aurora Gaxiola
机构
[1] Universidad Bernardo OHiggins,Centro de Investigación en Recursos Naturales y Sustentabilidad
[2] Universidad Complutense de Madrid,Departamento de Biología Vegetal I, Facultad de Ciencias Biológicas
[3] Pontificia Universidad Católica de Chile,Departamento de Ecología
[4] Instituto de Ecología y Biodiversidad,undefined
来源
Ecosystems | 2018年 / 21卷
关键词
bogs; wetlands; southern South America; Chiloé; CCA and GAM;
D O I
暂无
中图分类号
学科分类号
摘要
Peatlands exhibit highly characteristic ecological traits and are unique complex ecosystems. Nevertheless, knowledge about southern South American peatlands is very limited. In this study, we analyzed species composition of bryophytes and lichens of Southern Hemisphere peatlands, specifically from eight peatlands of Isla Grande de Chiloé (Chiloé Island) in southern Chile (42°–43°S and 75°–73°W). Two kinds of Sphagnum peatlands were studied: natural and anthropogenic peatlands. Our results indicate the existence of clear environmental gradients affecting the structure of bryo-lichenic communities in the Sphagnum peatlands of Chiloé. Canonical correspondence analysis suggests that variation in bryophyte and lichen species composition mainly follows ombrotrophic–minerotrophic and lithotrophic-thalassotrophic gradients. Surface-water chemistry is the most significant factor accounting for changes in floristic composition among our study sites. In contrast to our expectations, bog origin (natural or anthropic) was not the most significant factor accounting for changes in floristic composition among peatlands. Other elements, such as the water source supplying peatlands or the influence of sea spray, were more relevant in the bryo-lichenic flora species occurrence in the peatlands of Chiloé. We also observed clear differences in ecological niches among species in general additive model response curves. Therefore, our results show that despite the origin, the ecology of peatlands follows common rules with peatlands from the Northern Hemisphere.
引用
收藏
页码:203 / 215
页数:12
相关论文
共 144 条
[11]  
Díaz IA(2001)Rapid ecosystem shifts in peatlands: linking plant physiology and succession Palaeontol Electron 4 9-229
[12]  
Díaz-Forestier J(1996)PAST: paleontological statistics software package for education and data analysis Rev Geol de Chile 23 217-116
[13]  
Díaz MF(2003)Los depósitos de turba en Chile y sus perspectivas de utilización Meylania 28 1-77
[14]  
Gaxiola A(2004)The European species of the The Holocene 14 65-386
[15]  
Gutiérrez AG(1994)- Oikos 69 373-160
[16]  
Hernandez-Pellicer C(2008)- J Veg Sci 19 151-382
[17]  
Ippi S(2007) complex, including some related or similar species Folia Geobot 42 363-12
[18]  
Jaña-Prado R(2010)Contrasting pathways to ombrotrophy in three raised bogs from Ireland and Cumbria, England Austral Ecol 35 1-310
[19]  
Jara-Arancio P(2009)Organisms as ecosystem engineers J Ecol 97 299-141
[20]  
Jimenez J(2014)South Patagonian ombrotrophic bog vegetation reflects biogeochemical gradients at the landscape level Anales del Jardín Botánico de Madrid 71 e003-133