Seasonal changes in the chemical quality and biodegradability of dissolved organic matter exported from soils to streams in coastal temperate rainforest watersheds

被引:0
作者
Jason B. Fellman
Eran Hood
David V. D’Amore
Richard T. Edwards
Dan White
机构
[1] University of Alaska,Institute of Arctic Biology
[2] Fairbanks,Environmental Science Program
[3] University of Alaska Southeast,Institute of Northern Engineering
[4] U.S.D.A. Forest Service,undefined
[5] Pacific Northwest Research Station,undefined
[6] University of Alaska Fairbanks,undefined
来源
Biogeochemistry | 2009年 / 95卷
关键词
Biodegradable dissolved organic carbon; Dissolved organic matter; Dissolved organic nitrogen; Fluorescence; PARAFAC; Peatland; Biogeochemistry;
D O I
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中图分类号
学科分类号
摘要
The composition and biodegradability of streamwater dissolved organic matter (DOM) varies with source material and degree of transformation. We combined PARAFAC modeling of fluorescence excitation–emission spectroscopy and biodegradable dissolved organic carbon (BDOC) incubations to investigate seasonal changes in the lability of DOM along a soil-stream continuum in three soil types: bog, forested wetland and upland forest. The percent BDOC ranged from 7 to 38% across all sites, and was significantly greater in soil compared to streamwater in the bog and forested wetland, but not in the upland forest. The percent BDOC also varied significantly over the entire sampling period in soil and streamwater for the bog and forested wetland, as BDOC peaked during the spring runoff and was lowest during the summer months. Moreover, the chemical quality of DOM in wetland soil and streamwater was similar during the spring runoff and fall wet season, as demonstrated by the similar contribution of protein-like fluorescence (sum of tyrosine and tryptophan fluorescence) in soil water and in streams. These findings suggest that the tight coupling between terrestrial and aquatic ecosystems is responsible for the delivery of labile DOM from wetland soils to streams. The contribution of protein-like fluorescence was significantly correlated with BDOC (p < 0.001) over the entire sampling period indicating DOM is an important source of C and N for heterotrophic microbes. Taken together, our findings suggest that the production of protein-rich, labile DOM and subsequent loss in stream runoff might be an important loss of labile C and N from coastal temperate watersheds.
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页码:277 / 293
页数:16
相关论文
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  • [1] Agren A(2007)Importance of seasonality and small streams for the landscape regulation of dissolved organic carbon export J Geophys Res 112 G0300-953
  • [2] Buffam I(2001)Fluorescence excitation–emission matrix characterization of some sewage-impacted rivers Environ Sci Technol 35 948-790
  • [3] Jansson M(2006)Connecting organic carbon in streamwater and soils in a peatland catchment J Geophy Res 111 G02010-311
  • [4] Laudon H(1996)Bioavailability of water extractable organic carbon fractions in forest and agricultural soil profiles Soil Biol Biochem 28 783-1265
  • [5] Baker A(2004)Fluorescent dissolved organic matter in marine sediment pore waters Mar Chem 89 289-152
  • [6] Billet MF(2002)Marine carbon and nitrogen in south-eastern Alaskan stream food webs. Evidence from artificial and natural streams Can J Fish Aquat Sci 59 1257-346
  • [7] Deacon CM(1993)Preferential use of organic nitrogen for growth by a non-mycorrhizal arctic sedge Nature 361 150-8149
  • [8] Palmer SM(1996)Characterization of marine and terrestrial DOM in seawater using excitation–emission matrix spectroscopy Mar Chem 51 325-167
  • [9] Dawson JC(2005)Fluorescence spectroscopy reveals ubiquitous presence of oxidized and reduced quinones in DOM Environ Sci Technol 39 8142-92
  • [10] Hope D(2001)Is in-stream processing an important control on spatial changes in carbon fluxes in headwater catchments Sci Total Environ 265 153-1916