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of recalcitrant dissolved organic matter: Long-term carbon storage in the global ocean.
Nature Rev. Microbiol ., 8, 593-599.
Jobbágy, E.G. and Jackson, R.B. (2000). The vertical distribution of soil organic carbon
and its relation to climate and vegetation. Ecol. Applicat ., 10 , 423-436.
Jørgensen, L., Stedmon, C.A., Kragh, T., Markager, S., Middelboe, M., and Søndergaard,
M. (2011). Global trends in the fluorescence characteristics and distribution of marine
dissolved organic matter. Mar. Chem ., 126 , 139-148.
Kalbitz, K., Solinger, S., Park, J.H., Michalzik, B., and Matzner, E. (2000). Controls on the
dynamics of dissolved organic matter in soils: A review. Soil Sci ., 165 , 277-304.
Kawasaki, N. and Benner, R. (2007). Bacterial release of dissolved organic matter dur-
ing cell growth and decline: Molecular origin and composition. Limnol. Oceanogr .,
51 (5),2170-2180.
Kramer, G.D. and Herndl, G.J. (2004). Photo- and bioreactivity of chromophoric dissolved
organic matter produced by marine bacterioplankton. Aquat. Microb. Ecol ., 36 (3),
239-246.
Lakowicz, J.R. (2006). Principles of Fluorescence Spectroscopy , 3rd ed. New York:
Springer Science+Business Media.
Lochmuller, C.H. and Saavedra, S.S. (1986). Conformational changes in a soil fulvic acid meas-
ured by time dependent fluorescence depolarization. Anal. Chem ., 38 , 1978-1981.
Louchouarn, P., Opsahl, S., and Benner, R. (2000). Isolation and quantification of dissolved
lignin from natural waters using solid-phase extraction (SPE) and GC/MS selected
ion monitoring (sim). Anal. Chem ., 13 , 2780 -2787.
Maie, N., Scully, N., Pisani, O., and Jaffé R. (2007). Composition of a protein-like fluoro-
phore of dissolved organic matter in coastal wetland and estuarine ecosystems, Water
Res ., 41 (3), 563-570.
McDowell, W.H. and Wood, T. (1984). Podzolization-Soilo processes control dissolved
organic carbon concentrations in stream water. Soil Sci ., 137 , 23-32.
McKnight, D.M., Aiken, G.R., and Smith, R.L. (1991). Aquatic fulvic acids in microbially
based ecosystems: Results from two desert lakes in Antarctica. Limnol. Oceanogr .,
36 , 998-1006.
McKnight, D.M., Harnish, R., Wershaw, R.L., Baron, J.S., and Schiff, S. (1997). Chemical
characteristics of particulate, colloidal, and dissolved organic material in Loch Vale
Watershed. Rocky Mt. Natl. Park Biogeochem ., 36 , 99-124.
Middelboe, M. and Lyck, P.G. (2002). Regeneration of dissolved organic matter by viral
lysis in marine microbial communities. Aquat. Microb. Ecol ., 27 , 187-194.
Monteith, D.T., Stoddard, J.L., Evans, C.D., de Wit, H.A., Forsius, M., Hogasen, T.,
Wilander, A., Skjelkvale, B.L., Jeffries, D.S., Vuorenmaa, J., Keller, B., Kopacek,
J., and Vesely, J. (2007). Dissolved organic carbon trends resulting from changes in
atmospheric deposition chemistry. Nature , 450 , 537-541.
Moran, M.A., Sheldon, W.M., and Zepp, R.G. (2000). Carbon loss and optical property
changes during long-term photochemical and biological degradation of estuarine dis-
solved organic matter. Limnol. Oceanogr ., 45 , 1254-1264.
Mulholland, P.J. (2003). Large-scale patterns in dissolved organic carbon concentration,
flux and sources. In S.E.G. Findlay and R.L. Sinsabaugh (Eds.), Aquatic Ecosystems:
Interactivity of Dissolved Organic Matter ( pp. 139-160). Aquatic Ecology Series. San
Diego: Academic Press.
Murphy, K.R., Ruiz, G.M., Dunsmuir, W.T.M, and Waite, T.D. (2006). Optimized param-
eters for rapid fluorescence-based verification of ballast water exchange by ships.
Environ. Sci. Technol ., 40 , 2357-2362.
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