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Articles

Global patterns of Sphagnum productivity

Pages 269-279 | Published online: 18 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

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Yuwen Pang, Aleksi Räsänen, Teemu Juselius-Rajamäki, Mika Aurela, Sari Juutinen, Minna Väliranta & Tarmo Virtanen. (2023) Upscaling field-measured seasonal ground vegetation patterns with Sentinel-2 images in boreal ecosystems. International Journal of Remote Sensing 44:14, pages 4239-4261.
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Ting-Ting Li, Zheng-Xiang Wang, Gui-Jun Bu, Li-Qun Lin, Yun Lei, Chang-Yong Liu, Lan-Fang Yang & Cheng-lin Zheng. (2019) Effects of microtopography and water table on Sphagnum palustre L. in subtropical high mountains and implications for peatland restoration. Journal of Bryology 41:2, pages 121-134.
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David J. Cooper, Kristen Kaczynski, Daniel Slayback & Karina Yager. (2015) Growth and Organic Carbon Production in Peatlands Dominated by Distichia muscoides, Bolivia, South America. Arctic, Antarctic, and Alpine Research 47:3, pages 505-510.
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James R. Holmquist, Glen M. MacDonald & Angela Gallego-Sala. (2014) Peatland Initiation, Carbon Accumulation, and 2 ka Depth in the James Bay Lowland and Adjacent Regions. Arctic, Antarctic, and Alpine Research 46:1, pages 19-39.
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TA Hodges & GL Rapson. (2010) Is Empodisma minus the ecosystem engineer of the FBT (fen–bog transition zone) in New Zealand?. Journal of the Royal Society of New Zealand 40:3-4, pages 181-207.
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Petra Hájková & Michal Hájek. (2007) Sphagnum distribution patterns along environmental gradients in Bulgaria. Journal of Bryology 29:1, pages 18-26.
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Articles from other publishers (136)

Chao Liu, Yong-Da Chen, Azim Mallik, Vincent E.J. Jassey, Line Rochefort & Zhao-Jun Bu. (2023) Monthly dynamics of phenolic release and allelopathic effect in hollow and hummock Sphagnum . Botany 101:11, pages 532-541.
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Betty Ehnvall, Anneli M. Ågren, Mats B. Nilsson, Joshua L. Ratcliffe, Koffi Dodji Noumonvi, Matthias Peichl, William Lidberg, Reiner Giesler, Carl-Magnus Mörth & Mats G. Öquist. (2023) Catchment characteristics control boreal mire nutrient regime and vegetation patterns over ~5000 years of landscape development. Science of The Total Environment 895, pages 165132.
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Egle Köster, Jack P. B. Chapman, Janna M. Barel, Aino Korrensalo, Anna M. Laine, Harri T. Vasander & Eeva‐Stiina Tuittila. (2023) Water level drawdown makes boreal peatland vegetation more responsive to weather conditions. Global Change Biology.
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Ping Yu, Kuan Qin, Genhua Niu & Mengmeng Gu. (2023) Alleviate environmental concerns with biochar as a container substrate: a review. Frontiers in Plant Science 14.
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Amanda Grobe. (2023) Plant species composition and vegetation structure of Sphagnum cultivation sites . Applied Vegetation Science 26:3.
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Chulalack Sitthichoptham, Narong Wongkantrakorn, Ekaphan Kraichak & Nuttha Sanevas. (2023) Effects of the Culture Medium, pH Level, and Type of Sugar on the Growth of Sphagnum cuspidatulum Müll. Hal.. Horticultural Science and Technology 41:3, pages 329-338.
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Risto K. Heikkinen, Kaisu Aapala, Aino-Maija Määttänen, Niko Leikola, Linda Kartano & Juha Aalto. (2023) Climate change and land use threats to species of aapa mires, an EU priority habitat. Journal for Nature Conservation 73, pages 126390.
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Natalia G. Koronatova, Natalia P. Kosykh, Ekaterina A. Saib, Vera A. Stepanova, Evgenia K. Vishnyakova & Gustaf Granath. (2022) Weather Factors in Different Growing Periods Determine Inter-Annual Change in Growth of Four Sphagnum Species: Evidence from an Eight-Year Study. Wetlands 42:8.
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Patrícia Singh, Petra Hájková, Martin Jiroušek, Zuzana Lizoňová, Tomáš Peterka, Zuzana Plesková, Anna Šímová, Eva Šmerdová, Táňa Štechová & Michal Hájek. (2022) Can Sphagnum removal reverse the undesired succession of rich fens under different alkalinity and fertility levels? . Ecological Applications 32:8.
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Xiao‐Ying Ma, Hao Xu, Zi‐Yin Cao, Lei Shu & Rui‐Liang Zhu. (2022) Will climate change cause the global peatland to expand or contract? Evidence from the habitat shift pattern of Sphagnum mosses . Global Change Biology 28:21, pages 6419-6432.
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Tiina H. M. Kolari, Antti Sallinen, Franziska Wolff, Timo Kumpula, Kimmo Tolonen & Teemu Tahvanainen. (2021) Ongoing Fen–Bog Transition in a Boreal Aapa Mire Inferred from Repeated Field Sampling, Aerial Images, and Landsat Data. Ecosystems 25:5, pages 1166-1188.
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Gabriel Magnan, Nicole K. Sanderson, Sanna Piilo, Steve Pratte, Minna Väliranta, Simon van Bellen, Hui Zhang & Michelle Garneau. (2021) Widespread recent ecosystem state shifts in high‐latitude peatlands of northeastern Canada and implications for carbon sequestration. Global Change Biology 28:5, pages 1919-1934.
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Henrik Serk, Mats B. Nilsson, Elisabet Bohlin, Ina Ehlers, Thomas Wieloch, Carolina Olid, Samantha Grover, Karsten Kalbitz, Juul Limpens, Tim Moore, Wiebke Münchberger, Julie Talbot, Xianwei Wang, Klaus-Holger Knorr, Verónica Pancotto & Jürgen Schleucher. (2021) Global CO2 fertilization of Sphagnum peat mosses via suppression of photorespiration during the twentieth century. Scientific Reports 11:1.
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Jack Longman, Daniel Veres, Aritina Haliuc, Walter Finsinger, Vasile Ersek, Daniela Pascal, Tiberiu Sava & Robert Begy. (2021) Carbon accumulation rates of Holocene peatlands in central–eastern Europe document the driving role of human impact over the past 4000 years. Climate of the Past 17:6, pages 2633-2652.
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Samuel Hamard, Martin Küttim, Regis Céréghino & Vincent E. J. Jassey. (2021) Peatland microhabitat heterogeneity drives phototrophic microbe distribution and photosynthetic activity. Environmental Microbiology 23:11, pages 6811-6827.
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Anna M. Laine, Aino Korrensalo, Nicola A. K. Kokkonen & Eeva‐Stiina Tuittila. (2021) Impact of long‐term water level drawdown on functional plant trait composition of northern peatlands. Functional Ecology 35:10, pages 2342-2357.
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Yinying Zhou, Yuxin Huang, Xiaoxue Peng, Junfeng Xu & Yuekai Hu. (2021) Sphagnum response to nitrogen deposition and nitrogen critical load: A meta-analysis. Global Ecology and Conservation 30, pages e01791.
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Anna Sinyutkina. (2021) Drainage consequences and self-restoration of drained raised bogs in the south-eastern part of Western Siberia: Peat accumulation and vegetation dynamics. CATENA 205, pages 105464.
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Henrik Serk, Mats B. Nilsson, João Figueira, Thomas Wieloch & Jürgen Schleucher. (2021) CO 2 fertilization of Sphagnum peat mosses is modulated by water table level and other environmental factors . Plant, Cell & Environment 44:6, pages 1756-1768.
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Tiina H. M. Kolari, Pasi Korpelainen, Timo Kumpula & Teemu Tahvanainen. (2021) Accelerated vegetation succession but no hydrological change in a boreal fen during 20 years of recent climate change. Ecology and Evolution 11:12, pages 7602-7621.
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Yong‐Da Chen, Angela Moles, Zhao‐Jun Bu, Ming‐Ming Zhang, Zu‐Cheng Wang & Hong‐Yan Zhao. (2021) Induced defense and its cost in two bryophyte species. American Journal of Botany 108:5, pages 777-787.
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Melanie A. Heck, Volker M. Lüth, Nico Gessel, Matthias Krebs, Mira Kohl, Anja Prager, Hans Joosten, Eva L. Decker & Ralf Reski. (2020) Axenic in vitro cultivation of 19 peat moss ( Sphagnum L.) species as a resource for basic biology, biotechnology, and paludiculture . New Phytologist 229:2, pages 861-876.
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Fia Bengtsson, Håkan Rydin, Jennifer L. Baltzer, Luca Bragazza, Zhao‐Jun Bu, Simon J. M. Caporn, Ellen Dorrepaal, Kjell Ivar Flatberg, Olga Galanina, Mariusz Gałka, Anna Ganeva, Irina Goia, Nadezhda Goncharova, Michal Hájek, Akira Haraguchi, Lorna I. Harris, Elyn Humphreys, Martin Jiroušek, Katarzyna Kajukało, Edgar Karofeld, Natalia G. Koronatova, Natalia P. Kosykh, Anna M. Laine, Mariusz Lamentowicz, Elena Lapshina, Juul Limpens, Maiju Linkosalmi, Jin‐Ze Ma, Marguerite Mauritz, Edward A. D. Mitchell, Tariq M. Munir, Susan M. Natali, Rayna Natcheva, Richard J. Payne, Dmitriy A. Philippov, Steven K. Rice, Sean Robinson, Bjorn J. M. Robroek, Line Rochefort, David Singer, Hans K. Stenøien, Eeva‐Stiina Tuittila, Kai Vellak, James Michael Waddington & Gustaf Granath. (2020) Environmental drivers of Sphagnum growth in peatlands across the Holarctic region . Journal of Ecology 109:1, pages 417-431.
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Anna Sinyutkina. (2021) Investigating peat deposits with ground-penetrating radar – a case study of drained bogs in Western Siberia, Russia. E3S Web of Conferences 258, pages 12007.
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Caitlyn L. Lyons, Brian A. Branfireun, Jim McLaughlin & Zoë Lindo. (2020) Simulated climate warming increases plant community heterogeneity in two types of boreal peatlands in north–central Canada. Journal of Vegetation Science 31:5, pages 908-919.
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R. Kelman Wieder, Dale H. Vitt, Melanie A. Vile, Jeremy A. Graham, Jeremy A. Hartsock, Jacqueline M.A. Popma, Hope Fillingim, Melissa House, James C. Quinn, Kimberli D. Scott, Meaghan Petix & Kelly J. McMillen. (2020) Experimental nitrogen addition alters structure and function of a boreal poor fen: Implications for critical loads. Science of The Total Environment 733, pages 138619.
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Laura J. Raymond-Léonard, Mathieu Bouchard & I. Tanya Handa. (2020) Dead wood provides habitat for springtails across a latitudinal gradient of forests in Quebec, Canada. Forest Ecology and Management 472, pages 118237.
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Zhengyu Xia & Zicheng Yu. (2020) Temperature-Dependent Oxygen Isotope Fractionation in Plant Cellulose Biosynthesis Revealed by a Global Dataset of Peat Mosses. Frontiers in Earth Science 8.
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Hanna Virpiranta, Michal Banasik, Sanna Taskila, Tiina Leiviskä, Maiju Halttu, Ville-Hermanni Sotaniemi & Juha Tanskanen. (2020) Isolation of Efficient Metal-Binding Bacteria from Boreal Peat Soils and Development of Microbial Biosorbents for Improved Nickel Scavenging. Water 12:7, pages 2000.
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Renske J.E. Vroom, Ralph J.M. Temmink, Gijs van Dijk, Hans Joosten, Leon P.M. Lamers, Alfons J.P. Smolders, Matthias Krebs, Greta Gaudig & Christian Fritz. (2020) Nutrient dynamics of Sphagnum farming on rewetted bog grassland in NW Germany. Science of The Total Environment 726, pages 138470.
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Aino Korrensalo, Lauri Mehtätalo, Pavel Alekseychik, Salli Uljas, Ivan Mammarella, Timo Vesala & Eeva-Stiina Tuittila. (2019) Varying Vegetation Composition, Respiration and Photosynthesis Decrease Temporal Variability of the CO2 Sink in a Boreal Bog. Ecosystems 23:4, pages 842-858.
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Anshu Rastogi, Michal Antala, Maciej Gąbka, Stanisław Rosadziński, Marcin Stróżecki, Marian Brestic & Radosław Juszczak. (2020) Impact of warming and reduced precipitation on morphology and chlorophyll concentration in peat mosses (Sphagnum angustifolium and S. fallax). Scientific Reports 10:1.
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G. Gaudig, M. Krebs & H. Joosten. (2020) Sphagnum growth under N saturation: interactive effects of water level and P or K fertilization . Plant Biology 22:3, pages 394-403.
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Mingyang Cong, Yueyue Xu, Luyan Tang, Wenjing Yang & Minfei Jian. (2020) Predicting the dynamic distribution of Sphagnum bogs in China under climate change since the last interglacial period. PLOS ONE 15:4, pages e0230969.
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Victor L. Mironov, Aleksei Y. Kondratev & Anna V. Mironova. (2019) Growth of Sphagnum is strongly rhythmic: contribution of the seasonal, circalunar and third components. Physiologia Plantarum 168:4, pages 765-776.
Crossref
Martin Küttim, Liisa Küttim, Mati Ilomets & Anna M. Laine. (2019) Controls of Sphagnum growth and the role of winter . Ecological Research 35:1, pages 219-234.
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Richard J. Norby, Joanne Childs, Paul J. Hanson & Jeffrey M. Warren. (2019) Rapid loss of an ecosystem engineer: Sphagnum decline in an experimentally warmed bog . Ecology and Evolution 9:22, pages 12571-12585.
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Samuel Hamard, Bjorn J. M. Robroek, Pierre-Marie Allard, Constant Signarbieux, Shuaizhen Zhou, Tongchai Saesong, Flore de Baaker, Alexandre Buttler, Geneviève Chiapusio, Jean-Luc Wolfender, Luca Bragazza & Vincent E. J. Jassey. (2019) Effects of Sphagnum Leachate on Competitive Sphagnum Microbiome Depend on Species and Time. Frontiers in Microbiology 10.
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Qian-Nan Yang, Hong-Chun Li, Hong-Yan Zhao, Hong-Kai Li, Zhao-Jun Bu, Sheng-Zhong Wang, Chun-Yen Chou & Zi-Ping Liu. (2019) Hydroclimate controls of the distribution and abundance of mosses in Hani mire, Northeast China: Modern vegetation survey and peat-core analysis. Quaternary International 528, pages 30-40.
Crossref
Alice Noble, Alistair Crowle, David J. Glaves, Sheila M. Palmer & Joseph Holden. (2019) Fire temperatures and Sphagnum damage during prescribed burning on peatlands. Ecological Indicators 103, pages 471-478.
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Ting-Ting Li, Tao Liu, Yun Lei, Zhong-Qiang Li, Can Dai & Zheng-Xiang Wang. (2019) Effects of the Substrate and Planting Method on Sphagnum palustre Growth in Subtropical High-Mountain Regions and the Underlying Mechanisms. Wetlands 39:4, pages 879-893.
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R. Kelman Wieder, Dale H. Vitt, Melanie A. Vile, Jeremy A. Graham, Jeremy A. Hartsock, Hope Fillingim, Melissa House, James C. Quinn, Kimberli D. Scott, Meaghan Petix & Kelly J. McMillen. (2019) Experimental nitrogen addition alters structure and function of a boreal bog: critical load and thresholds revealed. Ecological Monographs 89:3.
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Andreas Heinemeyer, Rebecca Berry & Thomas J. Sloan. (2019) Assessing soil compaction and micro-topography impacts of alternative heather cutting as compared to burning as part of grouse moor management on blanket bog. PeerJ 7, pages e7298.
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Paul H. Lunt, Ralph M. Fyfe & Alan D. Tappin. (2019) Role of recent climate change on carbon sequestration in peatland systems. Science of The Total Environment 667, pages 348-358.
Crossref
Mariusz Lamentowicz, Mariusz Gałka, Katarzyna Marcisz, Michał Słowiński, Katarzyna Kajukało-Drygalska, Milva Druguet Dayras & Vincent E. J. Jassey. (2019) Unveiling tipping points in long-term ecological records from Sphagnum -dominated peatlands . Biology Letters 15:4, pages 20190043.
Crossref
Adriano Mazziotta, Gustaf Granath, Håkan Rydin, Fia Bengtsson & Jon Norberg. (2018) Scaling functional traits to ecosystem processes: Towards a mechanistic understanding in peat mosses. Journal of Ecology 107:2, pages 843-859.
Crossref
M. A. Minor, S. G. Ermilov & D. А. Philippov. (2019) Hydrology-driven environmental variability determines abiotic characteristics and Oribatida diversity patterns in a Sphagnum peatland system. Experimental and Applied Acarology 77:1, pages 43-58.
Crossref
Xinhou Zhang, Rong Mao, Changchun Song, Yan Liu & Zhaojie Ren. (2018) Is Moss Stoichiometry Influenced by Microtopography in a Boreal Peatland of Northeast China?. Chinese Geographical Science 28:6, pages 1038-1047.
Crossref
Ting-Ting Li, Yun Lei, Can Dai, Lan-Fang Yang, Zhong-Qiang Li & Zheng-Xiang Wang. (2018) Effects of both substrate and nitrogen and phosphorus fertilizer on Sphagnum palustre growth in subtropical high-mountain regions and implications for peatland recovery. Wetlands Ecology and Management 26:4, pages 651-663.
Crossref
Simon van Bellen, Gabriel Magnan, Lauren Davies, Duane Froese, Gillian Mullan‐Boudreau, Claudio Zaccone, Michelle Garneau & William Shotyk. (2018) Testate amoeba records indicate regional 20th‐century lowering of water tables in ombrotrophic peatlands in central‐northern Alberta, Canada. Global Change Biology 24:7, pages 2758-2774.
Crossref
J. Mastný, E. Kaštovská, J. Bárta, A. Chroňáková, J. Borovec, H. Šantrůčková, Z. Urbanová, K.R. Edwards & T. Picek. (2018) Quality of DOC produced during litter decomposition of peatland plant dominants. Soil Biology and Biochemistry 121, pages 221-230.
Crossref
Mateusz Samson, Sandra Słowińska, Michał Słowiński, Mariusz Lamentowicz, Jan Barabach, Kamila Harenda, Małgorzata Zielińska, Bjorn J. M. Robroek, Vincent E. J. Jassey, Alexandre Buttler & Bogdan H. Chojnicki. (2018) The Impact of Experimental Temperature and Water Level Manipulation on Carbon Dioxide Release in a Poor Fen in Northern Poland. Wetlands 38:3, pages 551-563.
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Aino Korrensalo, Laura Kettunen, Raija Laiho, Pavel Alekseychik, Timo Vesala, Ivan Mammarella & Eeva-Stiina Tuittila. (2018) Boreal bog plant communities along a water table gradient differ in their standing biomass but not their biomass production. Journal of Vegetation Science 29:2, pages 136-146.
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Joshua L. Ratcliffe, Angela Creevy, Roxane Andersen, Evgeny Zarov, Paul P.J. Gaffney, Mark A. Taggart, Yuri Mazei, Andrey N. Tsyganov, James G. Rowson, Elena D. Lapshina & Richard J. Payne. (2017) Ecological and environmental transition across the forested-to-open bog ecotone in a west Siberian peatland. Science of The Total Environment 607-608, pages 816-828.
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Bjorn J. M. Robroek, Vincent E. J. Jassey, Richard J. Payne, Magalí Martí, Luca Bragazza, Albert Bleeker, Alexandre Buttler, Simon J. M. Caporn, Nancy B. Dise, Jens Kattge, Katarzyna Zając, Bo H. Svensson, Jasper van Ruijven & Jos T. A. Verhoeven. (2017) Taxonomic and functional turnover are decoupled in European peat bogs. Nature Communications 8:1.
Crossref
Juul Limpens, Elisabet Bohlin & Mats B. Nilsson. (2017) Phylogenetic or environmental control on the elemental and organo-chemical composition of Sphagnum mosses?. Plant and Soil 417:1-2, pages 69-85.
Crossref
Anthony P. Walker, Kelsey R. Carter, Lianhong Gu, Paul J. Hanson, Avni Malhotra, Richard J. Norby, Stephen D. Sebestyen, Stan D. Wullschleger & David J. Weston. (2017) Biophysical drivers of seasonal variability in Sphagnum gross primary production in a northern temperate bog . Journal of Geophysical Research: Biogeosciences 122:5, pages 1078-1097.
Crossref
Tobi A. Oke & Heather A. Hager. (2017) Assessing environmental attributes and effects of climate change on Sphagnum peatland distributions in North America using single- and multi-species models. PLOS ONE 12:4, pages e0175978.
Crossref
Eva van den Elzen, Martine A. R. Kox, Sarah F. Harpenslager, Geert Hensgens, Christian Fritz, Mike S. M. Jetten, Katharina F. Ettwig & Leon P. M. Lamers. (2017) Symbiosis revisited: phosphorus and acid buffering stimulate N<sub>2</sub> fixation but not <i>Sphagnum</i> growth. Biogeosciences 14:5, pages 1111-1122.
Crossref
Aino Korrensalo, Pavel Alekseychik, Tomáš Hájek, Janne Rinne, Timo Vesala, Lauri Mehtätalo, Ivan Mammarella & Eeva-Stiina Tuittila. (2017) Species-specific temporal variation in photosynthesis as a moderator of peatland carbon sequestration. Biogeosciences 14:2, pages 257-269.
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Ralph J.M. Temmink, Christian Fritz, Gijs van Dijk, Geert Hensgens, Leon P.M. Lamers, Matthias Krebs, Greta Gaudig & Hans Joosten. (2017) Sphagnum farming in a eutrophic world: The importance of optimal nutrient stoichiometry. Ecological Engineering 98, pages 196-205.
Crossref
Christoph Leuschner & Heinz EllenbergChristoph Leuschner & Heinz Ellenberg. 2017. Ecology of Central European Non-Forest Vegetation: Coastal to Alpine, Natural to Man-Made Habitats. Ecology of Central European Non-Forest Vegetation: Coastal to Alpine, Natural to Man-Made Habitats 117 187 .
Aino KorrensaloTomáš HájekTimo VesalaLauri MehtätaloEeva-Stiina Tuittila. (2016) Variation in photosynthetic properties among bog plants. Botany 94:12, pages 1127-1139.
Crossref
R. Kelman Wieder, Melanie A. Vile, Cara M. Albright, Kimberli D. Scott, Dale H. Vitt, James C. Quinn & Medora Burke-Scoll. (2016) Effects of altered atmospheric nutrient deposition from Alberta oil sands development on Sphagnum fuscum growth and C, N and S accumulation in peat. Biogeochemistry 129:1-2, pages 1-19.
Crossref
Zicheng Yu, David W. Beilman & Julie Loisel. (2016) Transformations of landscape and peat-forming ecosystems in response to late Holocene climate change in the western Antarctic Peninsula. Geophysical Research Letters 43:13, pages 7186-7195.
Crossref
Jeremy A. Graham & Dale H. Vitt. (2016) The limiting roles of nitrogen and moisture on Sphagnum angustifolium growth over a depth to water table gradient. Plant and Soil 404:1-2, pages 427-439.
Crossref
Fia Bengtsson, Gustaf Granath & Håkan Rydin. (2016) Photosynthesis, growth, and decay traits in Sphagnum – a multispecies comparison . Ecology and Evolution 6:10, pages 3325-3341.
Crossref
Anna M. Laine, David Wilson, Jukka Alm, Julia Schneider & Eeva-Stiina Tuittila. (2016) Spatial variation in potential photosynthesis in Northern European bogs. Journal of Vegetation Science 27:2, pages 365-376.
Crossref
Sanna Taskila, Riikka Särkelä & Juha Tanskanen. (2015) Valuable applications for peat moss. Biomass Conversion and Biorefinery 6:1, pages 115-126.
Crossref
Niko Silvan & Kari Jokinen. (2016) Early Snowmelt Enhances the Carbon Sequestration of Hummock-Forming <i>Sphagnum</i> Mosses on Boreal Wetlands. Open Journal of Ecology 06:03, pages 103-112.
Crossref
Kirsten K. Deane-Coe, Marguerite Mauritz, Gerardo Celis, Verity Salmon, Kathryn G. Crummer, Susan M. Natali & Edward A. G. Schuur. (2015) Experimental Warming Alters Productivity and Isotopic Signatures of Tundra Mosses. Ecosystems 18:6, pages 1070-1082.
Crossref
Wei Xing, Kunshan Bao, Wenyong Guo, Xianguo Lu & Guoping Wang. (2015) Peatland initiation and carbon dynamics in northeast China: links to Holocene climate variability. Boreas 44:3, pages 575-587.
Crossref
P.A. Moore, P.J. Morris & J.M. Waddington. (2015) Multi-decadal water table manipulation alters peatland hydraulic structure and moisture retention. Hydrological Processes 29:13, pages 2970-2982.
Crossref
Tom N. Walker, Susan E. Ward, Nicholas J. Ostle & Richard D. Bardgett. (2015) Contrasting growth responses of dominant peatland plants to warming and vegetation composition. Oecologia 178:1, pages 141-151.
Crossref
C. Helfter, C. Campbell, K. J. Dinsmore, J. Drewer, M. Coyle, M. Anderson, U. Skiba, E. Nemitz, M. F. Billett & M. A. Sutton. (2015) Drivers of long-term variability in CO<sub>2</sub> net ecosystem exchange in a temperate peatland. Biogeosciences 12:6, pages 1799-1811.
Crossref
Graeme T. Swindles, T. Edward Turner, Helen M. Roe, Valerie A. Hall & Heidi A. Rea. (2015) Testing the cause of the Sphagnum austinii (Sull. ex Aust.) decline: Multiproxy evidence from a raised bog in Northern Ireland. Review of Palaeobotany and Palynology 213, pages 17-26.
Crossref
Nicholas M. Battram, Nick Eyles, Pui Sai Lau & Myrna J. Simpson. (2015) Organic matter biomarker analysis as a potential chemostratigraphic tool for Late Pleistocene tills from the Hudson Bay Lowlands, Canada. Palaeogeography, Palaeoclimatology, Palaeoecology 418, pages 377-385.
Crossref
Helen Moor, Kristoffer Hylander & Jon Norberg. (2015) Predicting climate change effects on wetland ecosystem services using species distribution modeling and plant functional traits. AMBIO 44:S1, pages 113-126.
Crossref
Melanie A. Vile, R. Kelman Wieder, Tatjana Živković, Kimberli D. Scott, Dale H. Vitt, Jeremy A. Hartsock, Christine L. Iosue, James C. Quinn, Meaghan Petix, Hope M. Fillingim, Jacqueline M. A. Popma, Katherine A. Dynarski, Todd R. Jackman, Cara M. Albright & Dennis D. Wykoff. (2014) N2-fixation by methanotrophs sustains carbon and nitrogen accumulation in pristine peatlands. Biogeochemistry 121:2, pages 317-328.
Crossref
Marjolein van der Linden, Monique MPD Heijmans & Bas van Geel. (2014) Carbon accumulation in peat deposits from northern Sweden to northern Germany during the last millennium. The Holocene 24:9, pages 1117-1125.
Crossref
Sunghyun Kim, Yongkyu Kim, Youngjoo Kim, Kyeonghoon Kim, S. Wang, Hojeong Kang & Byungho Yoo. (2014) Effects of planting method and nitrogen addition on Sphagnum growth in microcosm wetlands. Paddy and Water Environment 12:S1, pages 185-192.
Crossref
C. G. Laing, G. Granath, L. R. Belyea, K. E. Allton & H. Rydin. (2014) Tradeoffs and scaling of functional traits in Sphagnum as drivers of carbon cycling in peatlands . Oikos 123:7, pages 817-828.
Crossref
Jakub Hruška, Pavel Krám, Filip Moldan, Filip Oulehle, Christopher D. Evans, Richard F. Wright, Jiří Kopáček & Bernard J. Cosby. (2014) Changes in Soil Dissolved Organic Carbon Affect Reconstructed History and Projected Future Trends in Surface Water Acidification. Water, Air, & Soil Pollution 225:7.
Crossref
Mariusz Gałka & Mariusz Lamentowicz. (2014) Sphagnum succession in a Baltic bog in central-eastern Europe over the last 6200 years and paleoecology of Sphagnum contortum . The Bryologist 117:1, pages 22-36.
Crossref
Laura Kangas, Liisa Maanavilja, Tomáš Hájek, Eija Juurola, Rodney A. Chimner, Lauri Mehtätalo & Eeva‐Stiina Tuittila. (2014) Photosynthetic traits of Sphagnum and feather moss species in undrained, drained and rewetted boreal spruce swamp forests . Ecology and Evolution 4:4, pages 381-396.
Crossref
Steven K. Rice & J. Hans C. Cornelissen. 2014. Photosynthesis in Bryophytes and Early Land Plants. Photosynthesis in Bryophytes and Early Land Plants 79 93 .
P. Porada, B. Weber, W. Elbert, U. Pöschl & A. Kleidon. (2013) Estimating global carbon uptake by lichens and bryophytes with a process-based model. Biogeosciences 10:11, pages 6989-7033.
Crossref
Päivi Kaislahti Tillman, Steffen Holzkämper, Thorbjørn Joest Andersen, Gustaf Hugelius, Peter Kuhry & Pirita Oksanen. (2013) Stable isotopes in Sphagnum fuscum peat as late-Holocene climate proxies in northeastern European Russia . The Holocene 23:10, pages 1381-1390.
Crossref
Zoë Lindo, Marie-Charlotte Nilsson & Michael J. Gundale. (2013) Bryophyte-cyanobacteria associations as regulators of the northern latitude carbon balance in response to global change. Global Change Biology 19:7, pages 2022-2035.
Crossref
H. Genet, S. F. Oberbauer, S. J. Colby, C. L. Staudhammer & G. Starr. (2012) Growth responses of Sphagnum hollows to a growing season lengthening manipulation in Alaskan Arctic tundra. Polar Biology 36:1, pages 41-50.
Crossref
M. R. Turetsky, B. Bond‐Lamberty, E. Euskirchen, J. Talbot, S. Frolking, A. D. McGuire & E‐S. Tuittila. (2012) The resilience and functional role of moss in boreal and arctic ecosystems. New Phytologist 196:1, pages 49-67.
Crossref
Christopher Freeman, Nathalie Fenner & Anil H. Shirsat. (2012) Peatland geoengineering: an alternative approach to terrestrial carbon sequestration. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 370:1974, pages 4404-4421.
Crossref
Kate H. Orwin & Nicholas J. Ostle. (2012) Moss species effects on peatland carbon cycling after fire. Functional Ecology 26:4, pages 829-836.
Crossref
J. Loisel, A. V. Gallego-Sala & Z. Yu. (2012) Global-scale pattern of peatland <i>Sphagnum</i> growth driven by photosynthetically active radiation and growing season length. Biogeosciences 9:7, pages 2737-2746.
Crossref
C. Fritz, G. van Dijk, A. J. P. Smolders, V. A. Pancotto, T. J. T. M. Elzenga, J. G. M. Roelofs & A. P. Grootjans. (2011) Nutrient additions in pristine Patagonian Sphagnum bog vegetation: can phosphorus addition alleviate (the effects of) increased nitrogen loads . Plant Biology 14:3, pages 491-499.
Crossref
Gustaf Granath, Joachim Strengbom & Håkan Rydin. (2012) Direct physiological effects of nitrogen on Sphagnum: a greenhouse experiment. Functional Ecology 26:2, pages 353-364.
Crossref
Simone I. Lang, Johannes H. C. Cornelissen, Gaius R. Shaver, Matthias Ahrens, Terry V. Callaghan, Ulf Molau, Cajo J. F. Ter Braak, Adam Hölzer & Rien Aerts. (2011) Arctic warming on two continents has consistent negative effects on lichen diversity and mixed effects on bryophyte diversity. Global Change Biology 18:3, pages 1096-1107.
Crossref
EIJI FUKUTA, AKIKO SASAKI & TAKAYUKI NAKATSUBO. (2012) Microclimate and production of peat moss Sphagnum palustre L. in the warm‐temperate zone . Plant Species Biology 27:1, pages 110-118.
Crossref
Renato Gerdol & Renzo Vicentini. (2011) Response to heat stress of populations of two Sphagnum species from alpine bogs at different altitudes. Environmental and Experimental Botany 74, pages 22-30.
Crossref
Anna M. Laine, Eija Juurola, Tomáš Hájek & Eeva-Stiina Tuittila. (2011) Sphagnum growth and ecophysiology during mire succession. Oecologia 167:4, pages 1115-1125.
Crossref
F. Delarue, F. Laggoun-Défarge, J. R. Disnar, N. Lottier & S. Gogo. (2010) Organic matter sources and decay assessment in a Sphagnum-dominated peatland (Le Forbonnet, Jura Mountains, France): impact of moisture conditions. Biogeochemistry 106:1, pages 39-52.
Crossref
Emanuela Samaritani, Andy Siegenthaler, Mika Yli‐Petäys, Alexandre Buttler, Pascal‐Antoine Christin & Edward A. D. Mitchell. (2011) Seasonal Net Ecosystem Carbon Exchange of a Regenerating Cutaway Bog: How Long Does it Take to Restore the C‐Sequestration Function?. Restoration Ecology 19:4, pages 480-489.
Crossref
J. Limpens, G. Granath, U. Gunnarsson, R. Aerts, S. Bayley, L. Bragazza, J. Bubier, A. Buttler, L. J. L. van den Berg, A‐J. Francez, R. Gerdol, P. Grosvernier, M. M. P. D. Heijmans, M. R. Hoosbeek, S. Hotes, M. Ilomets, I. Leith, E. A. D. Mitchell, T. Moore, M. B. Nilsson, J‐F. Nordbakken, L. Rochefort, H. Rydin, L. J. Sheppard, M. Thormann, M. M. Wiedermann, B. L. Williams & B. Xu. (2011) Climatic modifiers of the response to nitrogen deposition in peat‐forming Sphagnum mosses: a meta‐analysis . New Phytologist 191:2, pages 496-507.
Crossref
Zhaojun Bu, Joosten Hans, Hongkai Li, Gaolin Zhao, Xingxing Zheng, Jinze Ma & Jing Zeng. (2011) The response of peatlands to climate warming: A review. Acta Ecologica Sinica 31:3, pages 157-162.
Crossref
Zhao-Jun Bu, Håkan Rydin & Xu Chen. (2010) Direct and interaction-mediated effects of environmental changes on peatland bryophytes. Oecologia 166:2, pages 555-563.
Crossref
Edit Ötvös & Ildikó Jócsák. 2012. Bryophyte Ecology and Climate Change. Bryophyte Ecology and Climate Change 55 70 .
S. Frolking, N. T. Roulet, E. Tuittila, J. L. Bubier, A. Quillet, J. Talbot & P. J. H. Richard. (2010) A new model of Holocene peatland net primary production, decomposition, water balance, and peat accumulation. Earth System Dynamics 1:1, pages 1-21.
Crossref
E.H. Schultheis, K.N. Hopfensperger & J.C. Brenner. (2010) Potential Impacts of Climate Change on Sphagnum Bogs of the Southern Appalachian Mountains . Natural Areas Journal 30:4, pages 417-424.
Crossref
N. A. Soudzilovskaia, J. H. C. Cornelissen, H. J. During, R. S. P. van Logtestijn, S. I. Lang & R. Aerts. (2010) Similar cation exchange capacities among bryophyte species refute a presumed mechanism of peatland acidification. Ecology 91:9, pages 2716-2726.
Crossref
Angela Breeuwer, Monique M. P. D. Heijmans, Bjorn J. M. Robroek & Frank Berendse. (2010) Field Simulation of Global Change: Transplanting Northern Bog Mesocosms Southward. Ecosystems 13:5, pages 712-726.
Crossref
Merritt R. TuretskyMichelle C. MackTeresa N. HollingsworthJennifer W. Harden. (2010) The role of mosses in ecosystem succession and function in Alaska’s boreal forestThis article is one of a selection of papers from The Dynamics of Change in Alaska’s Boreal Forests: Resilience and Vulnerability in Response to Climate Warming.. Canadian Journal of Forest Research 40:7, pages 1237-1264.
Crossref
Päivi Kaislahti Tillman, Steffen Holzkämper, Peter Kuhry, A. Britta K. Sannel, Neil J. Loader & Iain Robertson. (2010) Stable carbon and oxygen isotopes in Sphagnum fuscum peat from subarctic Canada: Implications for palaeoclimate studies. Chemical Geology 270:1-4, pages 216-226.
Crossref
Bjorn J.M. Robroek, Jasper van Ruijven, Matthijs G.C. Schouten, Angela Breeuwer, Patrick H. Crushell, Frank Berendse & Juul Limpens. (2009) Sphagnum re-introduction in degraded peatlands: The effects of aggregation, species identity and water table. Basic and Applied Ecology 10:8, pages 697-706.
Crossref
Erin L. McClymont, Dmitri Mauquoy, Dan Yeloff, Peter Broekens, Bas van Geel, Dan J. Charman, Richard D. Pancost, Frank M. Chambers & Richard P. Evershed. (2009) The disappearance of Sphagnum imbricatum from Butterburn Flow, UK: a reply to comments by Bjorn Robroek et al. The Holocene 19:7, pages 1094-1097.
Crossref
Bjorn J.M. RobroekJean G.M. Waucomont & Matthijs G.C. Schouten. (2009) Holocene comment and reply. The Holocene 19:7, pages 1093-1094.
Crossref
Angela Breeuwer, Monique M. P. D. Heijmans, Maurits Gleichman, Bjorn J. M. Robroek & Frank Berendse. (2009) Response of Sphagnum species mixtures to increased temperature and nitrogen availability. Plant Ecology 204:1, pages 97-111.
Crossref
Gustaf Granath, Joachim Strengbom, Angela Breeuwer, Monique M. P. D. Heijmans, Frank Berendse & Håkan Rydin. (2009) Photosynthetic performance in Sphagnum transplanted along a latitudinal nitrogen deposition gradient. Oecologia 159:4, pages 705-715.
Crossref
Simone I. Lang, Johannes H. C. Cornelissen, Adam Hölzer, Cajo J. F. Ter Braak, Matthias Ahrens, Terry V. Callaghan & Rien Aerts. (2009) Determinants of cryptogam composition and diversity in Sphagnum ‐dominated peatlands: the importance of temporal, spatial and functional scales . Journal of Ecology 97:2, pages 299-310.
Crossref
David W. Beilman, Glen M. MacDonald, Laurence C. Smith & Paula J. Reimer. (2009) Carbon accumulation in peatlands of West Siberia over the last 2000 years. Global Biogeochemical Cycles 23:1, pages n/a-n/a.
Crossref
A. BRITTA K. SANNEL & PETER KUHRY. (2009) Holocene peat growth and decay dynamics in sub-arctic peat plateaus, west-central Canada. Boreas 38:1, pages 13-24.
Crossref
Zicheng Yu, David W. Beilman & Miriam C. Jones. 2009. Carbon Cycling in Northern Peatlands. Carbon Cycling in Northern Peatlands 55 69 .
S.K. Rice. 2009. Encyclopedia of Inland Waters. Encyclopedia of Inland Waters 88 96 .
J. Limpens, B.J.M. Robroek, M.M.P.D. Heijmans & H.B.M. Tomassen. (2008) Mixing ratio and species affect the use of substrate‐derived CO 2 by Sphagnum . Journal of Vegetation Science 19:6, pages 841-848.
Crossref
Maciej Gąbka & Mariusz Lamentowicz. (2008) Vegetation-Environment Relationships in Peatlands Dominated by Sphagnum fallax in Western Poland. Folia Geobotanica 43:4, pages 413-429.
Crossref
URBAN GUNNARSSON, LAINE BORESJÖ BRONGE, HÅKAN RYDIN & MIKAEL OHLSON. (2008) Near-zero recent carbon accumulation in a bog with high nitrogen deposition in SW Sweden. Global Change Biology 14:9, pages 2152-2165.
Crossref
Moritz Meyer, Ulli Seibt & Howard Griffiths. (2008) To concentrate or ventilate? Carbon acquisition, isotope discrimination and physiological ecology of early land plant life forms. Philosophical Transactions of the Royal Society B: Biological Sciences 363:1504, pages 2767-2778.
Crossref
Angela Breeuwer, Monique Heijmans, Bjorn J. M. Robroek, Juul Limpens & Frank Berendse. (2008) The effect of increased temperature and nitrogen deposition on decomposition in bogs. Oikos 117:8, pages 1258-1268.
Crossref
Angela Breeuwer, Monique M. P. D. Heijmans, Bjorn J. M. Robroek & Frank Berendse. (2008) The effect of temperature on growth and competition between Sphagnum species. Oecologia 156:1, pages 155-167.
Crossref
Bjorn J. M. Robroek, Juul Limpens, Angela Breeuwer, Jasper Ruijven & Matthijs G. C. Schouten. (2007) Precipitation determines the persistence of hollow Sphagnum species on hummocks. Wetlands 27:4, pages 979-986.
Crossref
Cheng-Yuan Xu, W. S. F. Schuster & Kevin L. Griffin. (2007) Seasonal variation of temperature response of respiration in invasive Berberis thunbergii (Japanese barberry) and two co-occurring native understory shrubs in a northeastern US deciduous forest. Oecologia 153:4, pages 809-819.
Crossref
RENATO GERDOL, ALESSANDRO PETRAGLIA, LUCA BRAGAZZA, PAOLA IACUMIN & LISA BRANCALEONI. (2007) Nitrogen deposition interacts with climate in affecting production and decomposition rates in Sphagnum mosses. Global Change Biology 13:8, pages 1810-1821.
Crossref
B. J. M. ROBROEK, J. LIMPENS, A. BREEUWER, P. H. CRUSHELL & M. G. C. SCHOUTEN. (2007) Interspecific competition between Sphagnum mosses at different water tables. Functional Ecology 21:4, pages 805-812.
Crossref
Bjorn J.M. Robroek, Juul Limpens, Angela Breeuwer & Matthijs G.C. Schouten. (2006) Effects of water level and temperature on performance of four Sphagnum mosses. Plant Ecology 190:1, pages 97-107.
Crossref
William R. Buck, Bruce Allen & Ronald A. Pursell. (2006) Recent literature on bryophytes—109(2). The Bryologist 109:2, pages 276-295.
Crossref
R. Kelman Wieder. 2006. Boreal Peatland Ecosystems. Boreal Peatland Ecosystems 145 164 .
Håkan Rydin, Urban Gunnarsson & Sebastian Sundberg. 2006. Boreal Peatland Ecosystems. Boreal Peatland Ecosystems 47 65 .

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