Functional trait expression of grassland species shift with short- and long-term nutrient additions

被引:0
|
作者
Kimberly J. La Pierre
Melinda D. Smith
机构
[1] Yale University,Department of Ecology and Evolutionary Biology
[2] Colorado State University,Department of Biology, Graduate Degree Program in Ecology
[3] University of California,Department of Integrative Biology
来源
Plant Ecology | 2015年 / 216卷
关键词
Baseline species; Effect trait; Enriched species; Nutrient addition; Response trait; Tallgrass prairie;
D O I
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中图分类号
学科分类号
摘要
Humans are altering nutrient availability worldwide, likely affecting plant trait expression, with consequences for community composition and ecosystem function. Here, we examined the responses of plant species dominant under ambient nutrient conditions (baseline species) versus those that become dominant under increased nutrient conditions (enriched species) in a tallgrass prairie ecosystem. The expression of 8 functional traits was quantified for 3 baseline and 3 enriched species within one short-term and one long-term nutrient addition experiment. We found that enriched species occupied a trait space characterized by traits that generally correspond with faster growth rates than baseline species. Additionally, the enriched species shifted in their trait expression relative to the control more than the baseline species with nutrient additions, particularly within the long-term experiment. The trait space shifts of individual species with nutrient additions scaled up to affect community aggregate trait values within both experiments. However, traits that responded to nutrient additions at the community level were not strong predictors of aboveground net primary productivity (ANPP) within the short-term experiment. In contrast, in the long-term experiment, one response trait (community aggregate height) strongly correlated with variation in ANPP with nutrient additions. The link between plant functional traits and community and ecosystem responses to chronic nutrient additions shown here will provide important insight into key mechanisms driving grassland responses to global change.
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页码:307 / 318
页数:11
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