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Original Articles

Microbial Biomass and Community Composition Involved in Cycling of Organic Phosphorus in Sediments of Lake Dianchi, Southwest China

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Pages 249-260 | Received 01 Mar 2016, Accepted 01 Apr 2016, Published online: 16 Aug 2016

References

  • Auman AJ, Stolyar S, Costello AM, Lidstrom ME. 2000. Molecular characterization of methanotrophic isolates from freshwater lake sediment. Appl Environ Microbiol 66:5259–5266.
  • Bai Y, Shi Q, Wen D, Li Z, Jefferson WA, Feng C, Tang X. 2012. Bacterial Communities in the Sediments of Dianchi Lake, a Partitioned Eutrophic Waterbody in China. PloS one 7:e37796. doi: 10.1371/journal.phne.0037796.
  • Chen Y, Bai X, Li X, Hu Z, Liu W, Hu W. 2007. A primary study of the methane flux on the water-air interface of eight lakes in winter, China. J Lake Sc 19:11–17. (In Chinese with English Abstract).
  • Condron LM, Moir JO, Tiessen H, Stewart JWB. 1990. Critical evaluation of methods for determining total organic phosphorus in tropical soils. Soil Sci Soc Am J 54:1261–1266.
  • Costello AM, Auman AJ, Macalady JL, Scow KM, Lidstrom ME. 2002. Estimation of methanotroph abundance in a freshwater lake sediment. Environ Microbiol 4:443–450.
  • Ding SM, Fan X, Zhang C. 2010. Caution Needed in Pretreatment of Sediments for Refining Phosphorus-31 Nuclear Magnetic Resonance Analysis: Results from a Comprehensive Assessment of Pretreatment with Ethylenediaminetetraacetic Acid. J Environ Qual 39:1668–1678.
  • Dong SX, Dong JJ, Song HC, Zhou JS, Xie J, Xia CF, Gao TR. 2006. Study on the biogas fermentation with blue algae from Dianchi Lake. Renew Energ 2:16–18. (In Chinese with English Abstract).
  • Findlay RH, King GM, Watling L. 1989. Efficacy of phospholipid analysis in determining microbial biomass in sediments. Appl Environ Microbiol 55:2888–2893.
  • Frostegård Å, Tunlid A, Bååth E. 1991. Microbial biomass measured as total lipid phosphate in soils of different organic content. J Microbiol Meth 14:151–163.
  • Gächter R, Meyer JS, Mares A. 1988. Contribution of bacteria to release and fixation of phosphorus in lake sediments. Limnol Oceanogr 33:1542–1558.
  • Gao L, Zhou JM, Yang H, Chen J. 2005. Phosphorus fractions in sediment profiles and their potential contributions to eutrophication in Dianchi Lake. Environ Geol 48:835–844.
  • Giles CD, Lee LG, Cade-Menun BJ, Hill JE, Isles PDF, Schroth AW, Druschel GK. 2015. Characterization of Organic Phosphorus Form and Bioavailability in Lake Sediments using P Nuclear Magnetic Resonance and Enzymatic Hydrolysis. J Environ Qual 44:882–894.
  • Golterman H, Paing J, Serrano L, Gomez E. 1998. Presence of and phosphate release from polyphosphates or phytate phosphate in lake sediments. Hydrobiologia 364:99–104.
  • Golterman HL. 1996. Fractionation of sediment phosphate with chelating compounds: a simplification, and comparison with other methods. Hydrobiologia 335:87–95.
  • He Z, Ohno T, Cade-Menun BJ, Erich MS, Honeycutt CW. 2006. Spectral and chemical characterization of phosphates associated with humic substances. Soil Sci Soc Am J 70:1741–1751.
  • He Z, Tazisong IA, Senwo ZN. 2015. Forms and lability of phosphorus in humic and fulvic acids. In: Z He, F Wu. (Eds.), Labile Orgnaic Matter—Chemical Composition, Function, and Significance in Soil and the Environment. Madison, WI: SSSA Special Publication 62, p 61–78.
  • Hu J, Shen Q, Liu Y, Liu J. 2007. Mobility of different phosphorus pools in the sediment of Lake Dianchi during cyanobacterial blooms. Environ Monit Assess 132:141–153.
  • Hupfer M, Rübe B, Schmieder P. 2004. Origin and diagenesis of polyphosphate in lake sediments: A 31P-NMR study. Limnol Oceanogr 49:1–10.
  • Jørgensen C, Jensen HS, Andersen FØ, Egemose S, Reitzel K. 2011. Occurrence of orthophosphate monoesters in lake sediments: significance of myo-and scyllo-inositol hexakisphosphate. J Environ Monit 13:2328–2334.
  • Jensen HS, Reitzel K, Egemose S. 2015. Evaluation of aluminum treatment efficiency on water quality and internal phosphorus cycling in six Danish lakes. Hydrobiologia 751:189–199.
  • Keeney DR. 1973. The nitrogen cycle in sediment-water systems. J Environ Qual 2:15–29.
  • Liu Y, Wang Y, Sheng H, Dong F, Zou R, Zhao L, Guo H, Zhu X, He B. 2014. Quantitative evaluation of lake eutrophication responses under alternative water diversion scenarios: a water quality modeling based statistical analysis approach. Sci Total Environ 468:219–227.
  • Liu Y, Yao H, Huang C. 2009. Assessing the effect of air-drying and storage on microbial biomass and community structure in paddy soils. Plant Soil 317:213–221.
  • Lovley DR, Coates JD, Blunt-Harris EL, Phillips EJP, Woodward JC. 1996. Humic substances as electron acceptors for microbial respiration. Nature 382:445–448.
  • Lu J, Wang H, Pan M, Xia J, Xing W, Liu G. 2012. Using sediment seed banks and historical vegetation change data to develop restoration criteria for a eutrophic lake in China. Ecol Eng 39:95–103.
  • McDowell RW, Condron LM, Stewart I, Cave V. 2005. Chemical nature and diversity of phosphorus in New Zealand pasture soils using 31 P nuclear magnetic resonance spectroscopy and sequential fractionation. Nutr Cycl Agroecosys 72:241–254.
  • McMahon KD, Read EK. 2013. Microbial Contributions to Phosphorus Cycling in Eutrophic Lakes and Wastewater. Annu Rev Microbiol 67:199–219.
  • Meyers PA, Ishiwatari R. 1993. Lacustrine organic geochemistry—an overview of indicators of organic matter sources and diagenesis in lake sediments. Org Geochem 20:867–900.
  • Murphy J, Riley JP. 1962. A modified single solution method for the determination of phosphate in natural waters. Anal Chim Acta 27:31–36.
  • Olsson R, Giesler R, Loring JS, Persson P. 2011. Enzymatic Hydrolysis of Organic Phosphates Adsorbed on Mineral Surfaces. Environ Sci Technol 46:285–291.
  • Qian Y, Liang X, Chen Y, Lou L, Cui X, Tang J, Li P, Cao R. 2011. Significance of biological effects on phosphorus transformation processes at the wate–sediment interface under different environmental conditions. Ecol Eng 37:816–825.
  • Qu X, Xie L, Lin Y, Bai Y, Zhu Y, Xie F, Giesy JP, Wu F. 2013. Quantitative and qualitative characteristics of dissolved organic matter from eight dominant aquatic macrophytes in Lake Dianchi, China. Environ Sci Pollut Res 20:7413–7423.
  • Ruban V, López-Sánchez JF, Pardo P, Rauret G, Muntau H, Quevauviller P. 1999. Selection and evaluation of sequential extraction procedures for the determination of phosphorus forms in lake sediment. J Environ Monit 1:51–56.
  • Ruban V, López-Sánchez JF, Pardo P, Rauret G, Muntau H, Quevauviller P. 2001. Harmonized protocol and certified reference material for the determination of extractable contents of phosphorus in freshwater sediments - A synthesis of recent works. Fresen J Anal Chem 370:224–228.
  • Søndergaard M, Jensen JP, Jeppesen E. 2003. Role of sediment and internal loading of phosphorus in shallow lakes. Hydrobiologia 506–509:135–145.
  • Schindler DW, Hecky RE, Findlay DL, Stainton MP, Parker BR, Paterson MJ, Beaty KG, Lyng M, Kasian SEM. 2008. Eutrophication of lakes cannot be controlled by reducing nitrogen input: results of a 37-year whole-ecosystem experiment. PNAS 105:11254–11258.
  • Shinohara R, Imai A, Kawasaki N, Komatsu K, Kohzu A, Miura S, Sano T, Satou T, Tomioka N. 2012. Biogenic Phosphorus Compounds in Sediment and Suspended Particles in a Shallow Eutrophic Lake: A 31P-Nuclear Magnetic Resonance (31P NMR) Study. Environ Sci Technol 46:10572–10578.
  • Smoot JC, Findlay RH. 2001. Spatial and seasonal variation in a reservoir sedimentary microbial community as determined by phospholipid analysis. Microb Ecol 42:350–358.
  • Steger K, Premke K, Gudasz C, Sundh I, Tranvik LJ. 2011. Microbial biomass and community composition in boreal lake sediments. Limnol Oceanogr 56:725–733.
  • Torres IC, Turner BL, Reddy KR. 2014. The Chemical Nature of Phosphorus in Subtropical Lake Sediments. Aquat Geochem 20:437–457.
  • Turner BL, Cade-Menun BJ, Condron LM, Newman S. 2005. Extraction of soil organic phosphorus. Talanta 66:294–306.
  • Vestal JR, White DC. 1989. Lipid Analysis in Microbial Ecology—Quantitative approaches to the study of microbial communities. Bioscience 39(8):535–541.
  • Wang FS, Liu C, Wu M, Yu Y, Wu F, Lü S, Wei Z, Xu G. 2009. Stable isotopes in sedimentary organic matter from Lake Dianchi and their indication of eutrophication history. Water Air Soil Pollut 199:159–170.
  • White DC, Davis WM, Nickels JS, King JD, Bobbie RJ. 1979. Determination of the sedimentary microbial biomass by extractible lipid phosphate. Oecologia 40:51–62.
  • White DC, Stair JO, Ringelberg DB. 1996. Quantitative comparisons of in situ microbial biodiversity by signature biomarker analysis. J Ind Microbiol 17:185–196.
  • Wu F, Jin X, Zhang R, Liao H, Wang S, Jiang X, Wang L, Guo J, Li W, Zhao X. 2010. Effects and significance of organic nitrogen and phosphorus in the lake aquatic environment. J Lake Sci 22:1–7. (In Chinese with English Abstract).
  • Wu F, Qing H, Wan G. 2001. Regeneration of N, P and Si Near the Sediment/water Interface of Lakes from Southwestern China Plateau. Water Res 35:1334–1337.
  • Xia X, Dongye M, Zhang Z. 2004. Modern sedimentation of phosphorus and its microbial decomposition and concentration: an example from Dianchi Lake, Yunnan, China. Acta Ecologica Sinica 78:763–767.
  • Xiong Y, Wu F, Fang J, Wang L, Li Y, Liao H. 2010. Organic geochemical record of environmental changes in Lake Dianchi, China. J Paleolimnol 44:217–231.
  • Yang Y, Zhao Q, Cui Y, Wang Y, Xie S, Liu Y. 2016. Spatio-temporal Variation of Sediment Methanotrophic Microorganisms in a Large Eutrophic Lake. Microbial Ecology 71(1):9–17.
  • Zaady E, Ben-David EA, Sher Y, Tzirkin R, Nejidat A. 2010. Inferring biological soil crust successional stage using combined PLFA, DGGE, physical and biophysiological analyses. Soil Biol Biochem 42:842–849.
  • Zhang L, Wang S, Jiao L, Ni Z, Xi H, Liao J, Zhu C. 2013. Characteristics of phosphorus species identified by 31P NMR in different trophic lake sediments from the Eastern Plain, China. Ecol Eng 60:336–343.
  • Zhang R, Wu F, Liu C, Fu P, Li W, Wang L, Liao H, Guo J. 2008. Characteristics of organic phosphorus fractions in different trophic sediments of lakes from the middle and lower reaches of Yangtze River region and Southwestern Plateau, China. Environ Pollut 152:366–372.
  • Zhao DY, Ma T, Zeng J, Yan WM, Jiang CL, Feng JW, Xu YN, Zhao HZ. 2011. Phospholipid fatty acids analysis of the vertical distribution of microbial communities in eutrophic lake sediments. Int J Environ Sci Tech 8:571–580.
  • Zhao G, Du J, Jia Y, Lv Y, Han G, Tian X. 2012. The importance of bacteria in promoting algal growth in eutrophic lakes with limited available phosphorus. Ecol Eng 42:107–111.
  • Zhu Y, Meng W, Wu F, He Z, Liu Y, Feng W, Guo J, Giesy JP. 2016. Bioavailability and preservation of organic phosphorus in lake sediments: Insights from enzymatic hydrolysis and 31P nuclear magnetic resonance. Unpublished work.
  • Zhu Y, Wu F, He Z. 2015a. Bioavailability and Preservation of Organic Phosphorus in Freshwater Sediments and Its Role in Lake Eutrophication. In: Z He, F Wu. (Eds.), Labile Orgnaic Matter—Chemical Composition, Function, and Significance in Soil and the Environment. Madison, WI: SSSA Special Publication 62, p 275–293. DOI: 10.2136/sssaspecpub62.2014.0044.
  • Zhu Y, Wu F, He Z, Giesy JP, Feng W, Mu Y, Feng C, Zhao X, Liao H, Tang Z. 2015b. Influence of Natural Organic Matter on the Bioavailability and Preservation of Organic Phosphorus in Lake Sediments. Chem Geol 397:51–60.
  • Zhu Y, Wu F, He Z, Guo J, Qu X, Xie F, Giesy JP, Liao H, Guo F. 2013a. Characterization of Organic Phosphorus in Lake Sediments by Sequential Fractionation and Enzymatic Hydrolysis. Environ Sci Technol 47:7679–7687.
  • Zhu Y, Zhang R, Wu F, Qu X, Xie F, Fu Z. 2013b. Phosphorus fractions and bioavailability in relation to particle size characteristics in sediments from Lake Hongfeng, Southwest China. Environ Earth Sci 68:1041–1052.

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