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Items: 1 to 20 of 353

1.

Microbial productivity in variable resource environments.

Lennon JT, Cottingham KL.

Ecology. 2008 Apr;89(4):1001-14.

PMID:
18481525
2.

DOC removal paradigms in highly humic aquatic ecosystems.

Farjalla VF, Amado AM, Suhett AL, Meirelles-Pereira F.

Environ Sci Pollut Res Int. 2009 Jul;16(5):531-8. doi: 10.1007/s11356-009-0165-x. Epub 2009 May 22.

PMID:
19462194
3.

Humic substances-part 7: the biogeochemistry of dissolved organic carbon and its interactions with climate change.

Porcal P, Koprivnjak JF, Molot LA, Dillon PJ.

Environ Sci Pollut Res Int. 2009 Sep;16(6):714-26. doi: 10.1007/s11356-009-0176-7. Epub 2009 May 22. Review.

PMID:
19462191
4.

Elevated pH regulates bacterial carbon cycling in lakes with high photosynthetic activity.

Tank SE, Lesack LF, McQueen DJ.

Ecology. 2009 Jul;90(7):1910-22.

PMID:
19694139
5.

Complementary pathways of dissolved organic carbon removal pathways in clear-water Amazonian ecosystems: photochemical degradation and bacterial uptake.

Amado AM, Farjalla VF, Esteves Fde A, Bozelli RL, Roland F, Enrich-Prast A.

FEMS Microbiol Ecol. 2006 Apr;56(1):8-17.

6.

Toward a mechanistic understanding of how natural bacterial communities respond to changes in temperature in aquatic ecosystems.

Hall EK, Neuhauser C, Cotner JB.

ISME J. 2008 May;2(5):471-81. doi: 10.1038/ismej.2008.9. Epub 2008 Feb 7.

PMID:
18256701
7.

Patterns of resource limitation of bacteria along a trophic gradient in Mediterranean inland waters.

Medina-Sánchez JM, Carrillo P, Delgado-Molina JA, Bullejos FJ, Villar-Argaiz M.

FEMS Microbiol Ecol. 2010 Dec;74(3):554-65. doi: 10.1111/j.1574-6941.2010.00969.x. Epub 2010 Oct 12.

8.

Terrestrial, benthic, and pelagic resource use in lakes: results from a three-isotope Bayesian mixing model.

Solomon CT, Carpenter SR, Clayton MK, Cole JJ, Coloso JJ, Pace ML, Zanden MJ, Weidel BC.

Ecology. 2011 May;92(5):1115-25.

PMID:
21661572
9.
10.

Comparing resource pulses in aquatic and terrestrial ecosystems.

Nowlin WH, Vanni MJ, Yang LH.

Ecology. 2008 Mar;89(3):647-59.

PMID:
18459329
11.

Self-organization of dissolved organic matter to micelle-like microparticles in river water.

Kerner M, Hohenberg H, Ertl S, Reckermann M, Spitzy A.

Nature. 2003 Mar 13;422(6928):150-4.

PMID:
12634782
12.

Consumer versus resource control of species diversity and ecosystem functioning.

Worm B, Lotze HK, Hillebrand H, Sommer U.

Nature. 2002 Jun 20;417(6891):848-51.

PMID:
12075351
13.

Interactive effects of solar UV radiation and climate change on biogeochemical cycling.

Zepp RG, Erickson DJ 3rd, Paul ND, Sulzberger B.

Photochem Photobiol Sci. 2007 Mar;6(3):286-300. Epub 2007 Feb 6.

PMID:
17344963
14.

Flux of aquatic insect productivity to land: comparison of lentic and lotic ecosystems.

Gratton C, Vander Zanden MJ.

Ecology. 2009 Oct;90(10):2689-99.

PMID:
19886479
15.

Ecosystem-level studies of terrestrial carbon reveal contrasting bacterial metabolism in different aquatic habitats.

Attermeyer K, Premke K, Hornick T, Hilt S, Grossart HP.

Ecology. 2013 Dec;94(12):2754-66.

PMID:
24597222
16.

Whole-lake dissolved inorganic 13C additions reveal seasonal shifts in zooplankton diet.

Taipale S, Kankaala P, Tiirola M, Jones RI.

Ecology. 2008 Feb;89(2):463-74.

PMID:
18409435
17.

Differential support of lake food webs by three types of terrestrial organic carbon.

Cole JJ, Carpenter SR, Pace ML, Van de Bogert MC, Kitchell JL, Hodgson JR.

Ecol Lett. 2006 May;9(5):558-68.

PMID:
16643301
18.

Dissolved organic matter concentration and quality influences upon structure and function of freshwater microbial communities.

Docherty KM, Young KC, Maurice PA, Bridgham SD.

Microb Ecol. 2006 Oct;52(3):378-88. Epub 2006 Jun 10.

PMID:
16767520
19.

Polymerized coumaric acid as a model substrate for terrestrial-derived dissolved organic carbon utilized by aquatic microorganisms.

Tittel J, Poerschmann J, Wannicke N, Kamjunke N.

J Microbiol Methods. 2008 Jun;73(3):237-41. doi: 10.1016/j.mimet.2008.02.019. Epub 2008 Mar 2.

PMID:
18400319
20.

Nutrient enrichment reduces constraints on material flows in a detritus-based food web.

Cross WF, Wallace JB, Rosemond AD.

Ecology. 2007 Oct;88(10):2563-75.

PMID:
18027759

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