Mediative Mechanism of Freezing/Thawing on Greenhouse Gas Emissions in an Inland Saline-Alkaline Wetland: a Metagenomic Analysis
暂无分享,去创建一个
[1] Jiquan Chen,et al. Land uses changed the dynamics and controls of carbon-water exchanges in alkali-saline Songnen Plain of Northeast China , 2021, Ecological Indicators.
[2] E. Bai,et al. Effects of in situ freeze-thaw cycles on winter soil respiration in mid-temperate plantation forests. , 2021, The Science of the total environment.
[3] M. Schloter,et al. Climate change alters temporal dynamics of alpine soil microbial functioning and biogeochemical cycling via earlier snowmelt , 2021, The ISME Journal.
[4] Min Liu,et al. Microbial abundance and activity of nitrite/nitrate-dependent anaerobic methane oxidizers in estuarine and intertidal wetlands: Heterogeneity and driving factors. , 2020, Water research.
[5] Dawen Gao,et al. Resilience of methane cycle and microbial functional genes to drought and flood in an alkaline wetland: A metagenomic analysis. , 2020, Chemosphere.
[6] Lidong Shen,et al. Different responses of nitrite- and nitrate-dependent anaerobic methanotrophs to increasing nitrogen loading in a freshwater reservoir. , 2020, Environmental pollution.
[7] Dawen Gao,et al. Long-term harvesting of reeds affects greenhouse gas emissions and microbial functional genes in alkaline wetlands. , 2019, Water research.
[8] Dawen Gao,et al. Responses of N2O emissions to spring thaw period in a typical continuous permafrost region of the Daxing'an Mountains, northeast China , 2019, Atmospheric Environment.
[9] Y. Prairie,et al. Large‐scale biogeography and environmental regulation of methanotrophic bacteria across boreal inland waters , 2019, Molecular ecology.
[10] Dawen Gao,et al. The potential source of nitrous oxide in the pristine riparian marsh during freeze-thaw cycles, case study in Northeast China , 2019, Ecological Engineering.
[11] C. Lovejoy,et al. Contrasting Winter Versus Summer Microbial Communities and Metabolic Functions in a Permafrost Thaw Lake , 2019, Front. Microbiol..
[12] Chunjie Gong,et al. A cold adapt and ethanol tolerant endoglucanase from a marine Bacillus subtilis , 2018, Chinese Journal of Chemical Engineering.
[13] Yanyu Song,et al. Shifts in soil bacterial and archaeal communities during freeze-thaw cycles in a seasonal frozen marsh, Northeast China. , 2018, The Science of the total environment.
[14] R. Desjardins,et al. Micrometeorological Measurements Reveal Large Nitrous Oxide Losses during Spring Thaw in Alberta , 2018 .
[15] R. Sanford,et al. Genomics and Ecology of Novel N2O-Reducing Microorganisms. , 2018, Trends in microbiology.
[16] Jizhong Zhou,et al. Warming enhances old organic carbon decomposition through altering functional microbial communities , 2017, The ISME Journal.
[17] S. Bertilsson,et al. Seasonal Variation in Abundance and Diversity of Bacterial Methanotrophs in Five Temperate Lakes , 2017, Frontiers in microbiology.
[18] P. Rochette,et al. Nongrowing season N2O and CO2 emissions — Temporal dynamics and influence of soil texture and fall-applied manure 1 , 2016, Canadian Journal of Soil Science.
[19] S. Bertilsson,et al. Methane oxidation at the water‐ice interface of an ice‐covered lake , 2016 .
[20] D. Rand,et al. Functional Responses of Salt Marsh Microbial Communities to Long-Term Nutrient Enrichment , 2016, Applied and Environmental Microbiology.
[21] B. Singh,et al. Water addition regulates the metabolic activity of ammonia oxidizers responding to environmental perturbations in dry subhumid ecosystems. , 2015, Environmental microbiology.
[22] Wang-ming Zhou,et al. Dynamics of greenhouse gas formation in relation to freeze/thaw soil depth in a flooded peat marsh of Northeast China , 2014 .
[23] P. Zheng,et al. Evidence for nitrite-dependent anaerobic methane oxidation as a previously overlooked microbial methane sink in wetlands , 2014, Proceedings of the National Academy of Sciences.
[24] M. A. Glaring,et al. An exceptionally cold-adapted alpha-amylase from a metagenomic library of a cold and alkaline environment , 2014, Applied Microbiology and Biotechnology.
[25] R. Artz,et al. Microbial communities in natural and disturbed peatlands: A review , 2013 .
[26] N. Fierer,et al. Sensitivity of soil respiration and microbial communities to altered snowfall , 2013 .
[27] Xuejun Liu,et al. No significant nitrous oxide emissions during spring thaw under grazing and nitrogen addition in an alpine grassland , 2012 .
[28] Keith A. Smith,et al. Selection of the most suitable sampling time for static chambers for the estimation of daily mean N2O flux from soils , 2012 .
[29] D. Jézéquel,et al. Production and consumption of methane in freshwater lake ecosystems. , 2011, Research in microbiology.
[30] Patrick M. Crill,et al. Freshwater Methane Emissions Offset the Continental Carbon Sink , 2011, Science.
[31] Kate M. Buckeridge,et al. Soil biogeochemistry during the early spring in low arctic mesic tundra and the impacts of deepened snow and enhanced nitrogen availability , 2010 .
[32] R. Conrad,et al. Influence of temperature on the composition and activity of denitrifying soil communities. , 2010, FEMS microbiology ecology.
[33] S. Zechmeister-Boltenstern,et al. Nitrifiers and denitrifiers respond rapidly to changed moisture and increasing temperature in a pristine forest soil. , 2010, FEMS microbiology ecology.
[34] P. Virkajärvi,et al. N2O emissions from boreal grass and grass - clover pasture soils , 2010 .
[35] Michael Y. Galperin,et al. The genome sequence of the psychrophilic archaeon, Methanococcoides burtonii: the role of genome evolution in cold adaptation , 2009, The ISME Journal.
[36] Yiyon Wang,et al. Emission of CO2, CH4 and N2O from freshwater marsh in northeast of China. , 2008, Journal of environmental management.
[37] K. Butterbach‐Bahl,et al. Fluxes of nitrous oxide, methane and carbon dioxide during freezing–thawing cycles in an Inner Mongolian steppe , 2008, Plant and Soil.
[38] Marie-France Dignac,et al. Is soil carbon mostly root carbon? Mechanisms for a specific stabilisation , 2005, Plant and Soil.
[39] Werner Liesack,et al. Effects of temperature and fertilizer on activity and community structure of soil ammonia oxidizers. , 2003, Environmental microbiology.
[40] R. Conrad,et al. Functional patterns and temperature response of cellulose-fermenting microbial cultures containing different methanogenic communities , 2001, Applied Microbiology and Biotechnology.
[41] Z. Xiaoping,et al. CONCEPT, DISTRIBUTION LAW AND FORMATION MACHANISM OF INLAND SALINE ALKALINE WETLAND ── Taking Songliao Plain for Example , 2000 .
[42] S. Malhi,et al. Denitrification and nitrous oxide emissions from a Black Chernozemic soil during spring thaw in Alberta , 1997 .