Molecular biogeography of planktonic and benthic diatoms in the Yangtze River
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J. Ni | A. Borthwick | Jiawen Wang | Qian Chen | Qingxia Liu | Xianfu Zhao | Yuxin Liu
[1] Qingyun Li,et al. Field Investigation on River Hydrochemical Characteristics and Larval and Juvenile Fish in the Source Region of the Yangtze River , 2019, Water.
[2] J. Ni,et al. Anammox response to natural and anthropogenic impacts over the Yangtze River. , 2019, The Science of the total environment.
[3] Andrzej Cichocki,et al. A Hybrid System for Distinguishing between Brain Death and Coma Using Diverse EEG Features , 2019, Sensors.
[4] S. Spaulding,et al. Biodiversity of diatoms in the Karaj River in the Central Alborz, Iran , 2018, Diatom Research.
[5] A. Franc,et al. Disentangling the processes driving the biogeography of freshwater diatoms: A multiscale approach , 2018 .
[6] A. Lin,et al. What drives the vegetation restoration in Yangtze River basin, China: Climate change or anthropogenic factors? , 2018, Ecological Indicators.
[7] D. Borchardt,et al. Longitudinal patterns and response lengths of algae in riverine ecosystems: A model analysis emphasising benthic-pelagic interactions. , 2018, Journal of theoretical biology.
[8] B. Quéguiner,et al. Nanoplanktonic diatoms are globally overlooked but play a role in spring blooms and carbon export , 2018, Nature Communications.
[9] Tong Zhang,et al. Integrated biogeography of planktonic and sedimentary bacterial communities in the Yangtze River , 2018, Microbiome.
[10] P. Froneman,et al. Variation partitioning of benthic diatom community matrices: Effects of multiple variables on benthic diatom communities in an Austral temperate river system. , 2017, The Science of the total environment.
[11] B. Tóthmérész,et al. Ecological background of diatom functional groups: Comparability of classification systems , 2017 .
[12] K. Taffs,et al. Developing a regional diatom index for assessment and monitoring of freshwater streams in sub-tropical Australia , 2017 .
[13] R. Crawford,et al. Earliest records of Ellerbeckia and Paralia from Cretaceous deposits: a description of three species, two of which are new , 2017 .
[14] Wei Zhang,et al. Impact of the Three Gorges Dam on sediment deposition and erosion in the middle Yangtze River: a case study of the Shashi Reach , 2016 .
[15] T. Sicheritz-Pontén,et al. Upstream Freshwater and Terrestrial Sources Are Differentially Reflected in the Bacterial Community Structure along a Small Arctic River and Its Estuary , 2016, Front. Microbiol..
[16] Zhong-lin Chen,et al. Effect of nitrogen/phosphorus concentration on algal organic matter generation of the diatom Nitzschia palea: Total indicators and spectroscopic characterization. , 2016, Journal of environmental sciences.
[17] Lihuan Qin,et al. Critical nutrient thresholds needed to control eutrophication and synergistic interactions between phosphorus and different nitrogen sources , 2016, Environmental Science and Pollution Research.
[18] Kazutaka Katoh,et al. Application of the MAFFT sequence alignment program to large data—reexamination of the usefulness of chained guide trees , 2016, Bioinform..
[19] B. Tóthmérész,et al. Combined eco-morphological functional groups are reliable indicators of colonisation processes of benthic diatom assemblages in a lowland stream , 2016 .
[20] Stéphane Audic,et al. Insights into global diatom distribution and diversity in the world’s ocean , 2016, Proceedings of the National Academy of Sciences.
[21] Philippe Esling,et al. Environmental Monitoring: Inferring the Diatom Index from Next-Generation Sequencing Data. , 2015, Environmental science & technology.
[22] Gernot Glöckner,et al. Metabarcoding vs. morphological identification to assess diatom diversity in environmental studies , 2015, Molecular ecology resources.
[23] A. Mikaelyan,et al. Alternation of diatoms and coccolithophores in the north-eastern Black Sea: a response to nutrient changes , 2015, Hydrobiologia.
[24] K. T. Kiss,et al. Biogeography and phylogenetic position of a warm-stenotherm centric diatom, Skeletonema potamos (C.I. Weber) hasle and its long-term dynamics in the River Danube. , 2014, Protist.
[25] Zhaoyin Wang,et al. An environmental gradient of vegetative controls upon channel planform in the source region of the Yangtze and Yellow Rivers , 2014 .
[26] S. Diehl,et al. Resource competition across habitat boundaries: asymmetric interactions between benthic and pelagic producers , 2014 .
[27] J. Soininen,et al. Effects of connectivity, dispersal directionality and functional traits on the metacommunity structure of river benthic diatoms , 2013 .
[28] Rüdiger Röttgers,et al. Thick-shelled, grazer-protected diatoms decouple ocean carbon and silicon cycles in the iron-limited Antarctic Circumpolar Current , 2013, Proceedings of the National Academy of Sciences.
[29] Robert C. Edgar,et al. UPARSE: highly accurate OTU sequences from microbial amplicon reads , 2013, Nature Methods.
[30] S. Babel,et al. Nitrogen, phosphorus and silicon uptake kinetics by marine diatom Chaetoceros calcitrans under high nutrient concentrations , 2013 .
[31] S. Sabater,et al. Contribution of epilithic diatoms to benthic−pelagic coupling in a temperate river , 2013 .
[32] W. Shuster,et al. Controls on gas transfer velocities in a large river , 2012 .
[33] J. Fuhrman,et al. Beyond biogeographic patterns: processes shaping the microbial landscape , 2012, Nature Reviews Microbiology.
[34] B. Hill,et al. Planktonic and periphytic diatoms as indicators of stress on great rivers of the United States: Testing water quality and disturbance models , 2012 .
[35] A. Falciatore,et al. Exploring the molecular basis of responses to light in marine diatoms. , 2012, Journal of experimental botany.
[36] A. Wüest,et al. Impact of a large tropical reservoir on riverine transport of sediment, carbon, and nutrients to downstream wetlands , 2011 .
[37] Koen Sabbe,et al. A time-calibrated multi-gene phylogeny of the diatom genus Pinnularia. , 2011, Molecular phylogenetics and evolution.
[38] N. Smucker,et al. Spatial factors contribute to benthic diatom structure in streams across spatial scales: Considerations for biomonitoring , 2011 .
[39] C. Huttenhower,et al. Metagenomic biomarker discovery and explanation , 2011, Genome Biology.
[40] Frédéric Rimet,et al. Using diatom life-forms and ecological guilds to assess organic pollution and trophic level in rivers: a case study of rivers in south-eastern France , 2011, Hydrobiologia.
[41] C. Yin,et al. Anaerobic ammonia oxidation in a fertilized paddy soil , 2011, The ISME Journal.
[42] U. Sommer,et al. Light as a driver of phytoplankton growth and production in the freshwater tidal zone of a turbid estuary , 2011 .
[43] Honglin He,et al. Spatio-temporal variation of photosynthetically active radiation in China in recent 50 years , 2010 .
[44] William A. Walters,et al. QIIME allows analysis of high-throughput community sequencing data , 2010, Nature Methods.
[45] Paramvir S. Dehal,et al. FastTree 2 – Approximately Maximum-Likelihood Trees for Large Alignments , 2010, PloS one.
[46] Nico Salmaso,et al. Structure of the diatom community of the River Adige (North-Eastern Italy) along a hydrological gradient , 2010, Hydrobiologia.
[47] Frédéric Rimet,et al. Benthic diatom assemblages and their correspondence with ecoregional classifications: case study of rivers in north-eastern France , 2009, Hydrobiologia.
[48] Martin Hartmann,et al. Introducing mothur: Open-Source, Platform-Independent, Community-Supported Software for Describing and Comparing Microbial Communities , 2009, Applied and Environmental Microbiology.
[49] Paul G Falkowski,et al. Controls on Diatom Biogeography in the Ocean , 2009, Science.
[50] E. Virginia Armbrust,et al. The life of diatoms in the world's oceans , 2009, Nature.
[51] Yangdong D. Pan,et al. Should only live diatoms be used in the bioassessment of small mountain streams? , 2009, Hydrobiologia.
[52] D. Mann,et al. An assessment of potential diatom "barcode" genes (cox1, rbcL, 18S and ITS rDNA) and their effectiveness in determining relationships in Sellaphora (Bacillariophyta). , 2007, Protist.
[53] T. Nõges,et al. Sediment diatom assemblages and composition of pore-water dissolved organic matter reflect recent eutrophication history of Lake Peipsi (Estonia/Russia) , 2007, Hydrobiologia.
[54] S. Passy,et al. Diatom ecological guilds display distinct and predictable behavior along nutrient and disturbance gradients in running waters , 2007 .
[55] W. Graf. Downstream hydrologic and geomorphic effects of large dams on American rivers , 2006 .
[56] David G. Mann,et al. Evolution of the diatoms: insights from fossil, biological and molecular data , 2006 .
[57] E. Berdalet,et al. Effects of small-scale turbulence on the growth of two diatoms of different size in a phosphorus-limited medium , 2006 .
[58] James H. Brown,et al. Microbial biogeography: putting microorganisms on the map , 2006, Nature Reviews Microbiology.
[59] J. Seinfeld,et al. Electron tomography of nanoparticle clusters: Implications for atmospheric lifetimes and radiative forcing of soot , 2005 .
[60] Olivier Aumont,et al. Response of diatoms distribution to global warming and potential implications: A global model study , 2005 .
[61] J. Soininen. Determinants of Benthic Diatom Community Structurein Boreal Streams: the Role of Environmental and Spatial Factors at Different Scales , 2004 .
[62] C. P. Jacovides,et al. Ratio of PAR to broadband solar radiation measured in Cyprus , 2004 .
[63] A. Poulíčková,et al. Littoral diatoms as indicators for the eutrophication of shallow lakes , 2003, Hydrobiologia.
[64] R. Weitzell,et al. THE EFFECT OF TEMPERATURE AND MIXED SPECIES COMPOSITION ON DIATOM MOTILITY AND ADHESION , 2003 .
[65] J. Nishioka,et al. A Mesoscale Iron Enrichment in the Western Subarctic Pacific Induces a Large Centric Diatom Bloom , 2003, Science.
[66] Pierre Legendre,et al. All-scale spatial analysis of ecological data by means of principal coordinates of neighbour matrices , 2002 .
[67] Zhongyuan Chen,et al. Yangtze River of China: historical analysis of discharge variability and sediment flux , 2001 .
[68] David J. S. Montagnes,et al. Effect of temperature on diatom volume, growth rate, and carbon and nitrogen content: Reconsidering some paradigms , 2001 .
[69] Andrew J. Watson,et al. A mesoscale phytoplankton bloom in the polar Southern Ocean stimulated by iron fertilization , 2000, Nature.
[70] V. Smetácek,et al. Diatoms and the ocean carbon cycle. , 1999, Protist.
[71] J. Randerson,et al. Primary production of the biosphere: integrating terrestrial and oceanic components , 1998, Science.
[72] Thomas L. Madden,et al. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. , 1997, Nucleic acids research.
[73] P. Legendre,et al. SPECIES ASSEMBLAGES AND INDICATOR SPECIES:THE NEED FOR A FLEXIBLE ASYMMETRICAL APPROACH , 1997 .
[74] A. Engelen,et al. Wavelength-dependent induction of thymine dimers and growth rate reduction in the marine diatom Cyclotella sp. exposed to ultraviolet radiation , 1997 .
[75] Y. Zong. IMPLICATIONS OF PARALIA SULCATA ABUNDANCE IN SCOTTISH ISOLATION BASINS , 1997 .
[76] David G. Mann,et al. Biodiversity, biogeography and conservation of diatoms , 1996 .
[77] R. Wetzel,et al. Uptake of dissolved inorganic and organic bphosphorus compounds by phytoplankton and bacterioplankton , 1992 .
[78] S. Bartell,et al. Dynamics of Lotic Ecosystems. , 1984 .
[79] J. Stanford,et al. The serial discontinuity concept of lotic ecosystems , 1983 .
[80] J. Monteith. SOLAR RADIATION AND PRODUCTIVITY IN TROPICAL ECOSYSTEMS , 1972 .
[81] Zhang Man,et al. Effect of dams on the regime of the mid-lower Yangtze River runoff and countermeasures , 2018 .
[82] M. Gehlen,et al. Influence of diatom diversity on the ocean biological carbon pump , 2017, Nature Geoscience.
[83] River Algae , 2016 .
[84] T. Fukushima,et al. Impacts of long-term increase in silicon concentration on diatom blooms in Lake Kasumigaura, Japan , 2014 .
[85] Frédéric Rimet,et al. Life-forms, cell-sizes and ecological guilds of diatoms in European rivers , 2012 .
[86] I. Kaczmarska,et al. Barcoding of diatoms: nuclear encoded ITS revisited. , 2010, Protist.
[87] J. Diniz‐Filho,et al. Geographical patterns of micro-organismal community structure: are diatoms ubiquitously distributed across boreal streams? , 2010 .
[88] F. Bushman,et al. QIIME allows integration and analysis of high-throughput community sequencing data. Nat. Meth. , 2010 .
[89] B. Chessman,et al. Development of blooms of Cyclotella meneghiniana and Nitzschia spp. (Bacillariophyceae) in a shallow river and estimation of effective suppression flows , 2007, Hydrobiologia.
[90] D. Mann,et al. 3. Biodiversity, biogeography and conservation of diatoms , 2004, Hydrobiologia.
[91] Hilde van der Togt,et al. Publisher's Note , 2003, J. Netw. Comput. Appl..
[92] LI Hai-bin,et al. Comparison of Three Spatial Interpolation Methods for Climate Variables in China , 2002 .
[93] M. Kelly. USE OF THE TROPHIC DIATOM INDEX TO MONITOR EUTROPHICATION IN RIVERS , 1998 .
[94] G. Minshall,et al. The River Continuum Concept , 1980 .
[95] F. A. Richards,et al. The influence of organisms on the composition of sea-water , 1963 .