Interactive effects between plant functional types and soil factors on tundra species diversity and community composition

被引:22
|
作者
Iturrate-Garcia, Maitane [1 ]
O'Brien, Michael J. [1 ,2 ]
Khitun, Olga [3 ]
Abiven, Samuel [4 ]
Niklaus, Pascal A. [1 ]
Schaepman-Strub, Gabriela [1 ]
机构
[1] Univ Zurich, Dept Evolutionary Biol & Environm Studies, Zurich, Switzerland
[2] CSIC, Estn Expt Zonas Aridas, Almeria, Spain
[3] Russian Acad Sci, Komarov Bot Inst, St Petersburg, Russia
[4] Univ Zurich, Dept Geog, Zurich, Switzerland
来源
ECOLOGY AND EVOLUTION | 2016年 / 6卷 / 22期
基金
瑞士国家科学基金会;
关键词
active layer thickness; carbon-to-nitrogen ratio; cellulose-to-lignin ratio; edaphic factors; moisture; nonvascular species; pH; vascular species; vegetation cover; BELOW-GROUND PROPERTIES; ALASKAN ARCTIC TUNDRA; VASCULAR PLANTS; ALPINE VEGETATION; ORGANIC-MATTER; RICHNESS; ECOSYSTEM; RESPONSES; PRODUCTIVITY; CLIMATE;
D O I
10.1002/ece3.2548
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Plant communities are coupled with abiotic factors, as species diversity and community composition both respond to and influence climate and soil characteristics. Interactions between vegetation and abiotic factors depend on plant functional types (PFT) as different growth forms will have differential responses to and effects on site characteristics. However, despite the importance of different PFT for community assembly and ecosystem functioning, research has mainly focused on vascular plants. Here, we established a set of observational plots in two contrasting habitats in northeastern Siberia in order to assess the relationship between species diversity and community composition with soil variables, as well as the relationship between vegetation cover and species diversity for two PFT (nonvascular and vascular). We found that nonvascular species diversity decreased with soil acidity and moisture and, to a lesser extent, with soil temperature and active layer thickness. In contrast, no such correlation was found for vascular species diversity. Differences in community composition were found mainly along soil acidity and moisture gradients. However, the proportion of variation in composition explained by the measured soil variables was much lower for nonvascular than for vascular species when considering the PFT separately. We also found different relationships between vegetation cover and species diversity according the PFT and habitat. In support of niche differentiation theory, species diversity and community composition were related to edaphic factors. The distinct relationships found for nonvascular and vascular species suggest the importance of considering multiple PFT when assessing species diversity and composition and their interaction with edaphic factors. Synthesis: Identifying vegetation responses to edaphic factors is a first step toward a better understanding of vegetation-soil feedbacks under climate change. Our results suggest that incorporating differential responses of PFT is important for predicting vegetation shifts, primary productivity, and in turn, ecosystem functioning in a c hanging climate.
引用
收藏
页码:8126 / 8137
页数:12
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