Effects of nitrogen addition on plant functional traits in freshwater wetland of Sanjiang Plain, Northeast China

被引:0
作者
Rong Mao
Xinhou Zhang
Changchun Song
机构
[1] Chinese Academy of Sciences,Northeast Institute of Geography and Agroecology
[2] Ministry of Land and Resources of China,Key Laboratory of Marine Hydrocarbon Resources and Environmental Geology
来源
Chinese Geographical Science | 2014年 / 24卷
关键词
nitrogen addition; leaf chemical traits; leaf morphological traits; whole-plant traits; Sanjiang Plain;
D O I
暂无
中图分类号
学科分类号
摘要
To clarify the responses of plant functional traits to nitrogen (N) enrichment, we investigated the whole-plant traits (plant height and aboveground biomass), leaf morphological (specific leaf area (SLA) and leaf dry mass content (LDMC)) and chemical traits (leaf N concentration (LNC) and leaf phosphorus (P) concentration (LPC)) of Deyeuxia angustifolia and Glyceria spiculosa following seven consecutive years of N addition at four rates (0 g N/(m2·yr), 6 g N/(m2·yr), 12 g N/(m2·yr) and 24 g N/(m2·yr)) in a freshwater marsh in the Sanjiang Plain, Northeast China. The results showed that, for both D. angustifolia and G. spiculosa, N addition generally increased plant height, leaf, stem and total aboveground biomass, but did not cause changes in SLA and LDMC. Moreover, increased N availability caused an increase in LNC, and did not affect LPC. Thus, N addition decreased leaf C:N ratio, but caused an increase in leaf N:P ratio, and did not affect leaf C:P ratio. Our results suggest that, in the mid-term, elevated N loading does not alter leaf morphological traits, but causes substantial changes in whole-plant traits and leaf chemical traits in temperate freshwater wetlands. These may help to better understand the effects of N enrichment on plant functional traits and thus ecosystem structure and functioning in freshwater wetlands.
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页码:674 / 681
页数:7
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  • [1] Aerts R(2000)The mineral nutrition of wild plants revisited: A re-evaluation of processes and patterns Advances in Ecological Research 30 1-67
  • [2] Chapin F S(2011)Effects of nutrient addition on leaf chemistry, morphology, and photosynthetic capacity of three bog shrubs Oecologia 167 355-368
  • [3] Bubier J L(2010)Response of leaf anatomy of Plant Ecology 209 375-382
  • [4] Smith R(2000) to soil resource availability in a semi-arid grassland Aquatic Botany 68 61-78
  • [5] Juutinen S(2003)Effects of 4 years of nitrogen and phosphorus additions on Everglades plant communities Australian Journal of Botany 51 335-380
  • [6] Chen F S(2002)A handbook of protocols for standardised and easy measurement of plant functional traits worldwide Functional Ecology 16 563-574
  • [7] Zeng D H(2008)Functional traits, productivity and effects on nitrogen cycling of 33 grassland species Ecology Letters 11 516-531
  • [8] Fahey T J(1998)Plant functional traits and soil carbon sequestration in contrasting biomes Journal of Vegetation Science 9 113-122
  • [9] Chiang C(2009)Plant functional traits and environmental filters at a regional scale Plant and Soil 316 311-322
  • [10] Craft C B(2007)Nitrogen enrichment lowers Ecosystems 10 347-359