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Original Articles

The carbohydrates of bryophytes in relation to desiccation tolerance

Pages 185-191 | Published online: 18 Jul 2013

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

Read on this site (3)

Marija Ćosić, Milorad M. Vujičić, Marko S. Sabovljević & Aneta D. Sabovljević. (2019) What do we know about salt stress in bryophytes?. Plant Biosystems - An International Journal Dealing with all Aspects of Plant Biology 153:3, pages 478-489.
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Takeshi Ueno, Yukiko Bekku, Masaki Uchida & Hiroshi Kanda. (2006) Photosynthetic light responses of a widespread moss, Sanionia uncinata, from contrasting water regimes in the high Arctic tundra, Svalbard, Norway. Journal of Bryology 28:4, pages 345-349.
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Simonetta Giordano, Carmine Colacino, Valeria Spagnuolo, Adriana Basile, Assunta Esposito & Rosa Castaldo-Cobianchi. (1993) Morphological adaptation to water uptake and transport in the poikilohydric moss Tortula ruralis. Giornale botanico italiano 127:6, pages 1123-1132.
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Articles from other publishers (72)

Qilin Yang, Ruirui Yang, Bei Gao, Yuqing Liang, Xiujin Liu, Xiaoshuang Li & Daoyuan Zhang. (2023) Metabolomic Analysis of the Desert Moss Syntrichia caninervis Provides Insights into Plant Dehydration and Rehydration Response . Plant And Cell Physiology 64:11, pages 1419-1432.
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Matthew A. Bowker, Kyle D. Doherty, Henry S. Grover, Anita J. Antoninka, Rebecca A. Durham & Philip Ramsey. (2023) Moss establishment in restoration: The role of moss production method and short‐term benefits of abscisic acid. Land Degradation & Development 34:14, pages 4320-4327.
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Yifang Peng, Tianyi Ma, Xin Wang, Meijuan Zhang, Yingxu Xu, Jie Wei, Wei Sha & Jing Li. (2023) Proteomic and Transcriptomic Responses of the Desiccation-Tolerant Moss Racomitrium canescens in the Rapid Rehydration Processes. Genes 14:2, pages 390.
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Marija RajcicV.V., Marija CosicV.V., Tomislav TostiB.B., Danijela MisicM.M., Aneta SabovljevicD.D., Marko SabovljevicS.S. & Milorad VujicicM.M.. (2023) An insight into seasonal changes of carbohydrates and phenolic compounds within the moss Polytrichum formosum (Polytrichaceae). Botanica Serbica 47:1, pages 125-133.
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Audrey Duhin, Ricardo A. R. Machado, Ted C. J. Turlings & Gregory Röder. (2022) Early land plants: Plentiful but neglected nutritional resources for herbivores?. Ecology and Evolution 12:12.
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Jiazhi Shen, Shuangshuang Wang, Litao Sun, Yu Wang, Kai Fan, Chen Li, Hui Wang, Caihong Bi, Fen Zhang & Zhaotang Ding. (2022) Dynamic changes in metabolic and lipidomic profiles of tea plants during drought stress and re-watering. Frontiers in Plant Science 13.
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José Ángel Morales-Sánchez, Kristiina Mark, João Paulo S Souza & Ülo Niinemets. (2022) Desiccation–rehydration measurements in bryophytes: current status and future insights. Journal of Experimental Botany 73:13, pages 4338-4361.
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Mateus Fernandes Oliveira & Adaíses Simone Maciel-Silva. (2022) Biological soil crusts and how they might colonize other worlds: insights from these Brazilian ecosystem engineers. Journal of Experimental Botany 73:13, pages 4362-4379.
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Alicia V Perera-Castro, Águeda M González-Rodríguez & Beatriz Fernández-Marín. (2022) When time is not of the essence: constraints to the carbon balance of bryophytes. Journal of Experimental Botany 73:13, pages 4562-4575.
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Matěj Man, Jan Wild, Martin Macek & Martin Kopecký. (2022) Can high-resolution topography and forest canopy structure substitute microclimate measurements? Bryophytes say no. Science of The Total Environment 821, pages 153377.
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Gerardo Alejo-Jacuinde & Luis Herrera-Estrella. (2022) Exploring the High Variability of Vegetative Desiccation Tolerance in Pteridophytes. Plants 11:9, pages 1222.
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Wilton R. Sala-Carvalho, Francisco P. Montessi-Amaral, Marisia P. Esposito, Richard Campestrini, Magdalena Rossi, Denilson F. Peralta & Claudia M. Furlan. (2022) Metabolome of Ceratodon purpureus (Hedw.) Brid., a cosmopolitan moss: the influence of seasonality. Planta 255:4.
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Jessica Royles, Sophie Young & Howard Griffiths. (2022) Stable isotope signals provide seasonal climatic markers for moss functional groups. Proceedings of the Royal Society B: Biological Sciences 289:1967.
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Lloyd R. StarkJoshua L. GreenwoodJohn C. Brinda. (2022) How to dry a bryophyte: A review and experimental test of four methods to induce desiccation tolerance. The Bryologist 125:1.
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Cristiane Wisnienski Ribeiro, Rogério Antonio Krupek & Juçara Bordin. (2022) Variação do potencial osmótico do meio e seus efeitos sobre o balanço hídrico em diferentes espécies de briófitas. Hoehnea 49.
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Rose A. Marks, Jeramiah J. Smith, Robert VanBuren & David Nicholas McLetchie. (2020) Expression dynamics of dehydration tolerance in the tropical plant Marchantia inflexa . The Plant Journal 105:1, pages 209-222.
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Jinnan Gong, Nigel Roulet, Steve Frolking, Heli Peltola, Anna M. Laine, Nicola Kokkonen & Eeva-Stiina Tuittila. (2020) Modelling the habitat preference of two key <i>Sphagnum</i> species in a poor fen as controlled by capitulum water content. Biogeosciences 17:22, pages 5693-5719.
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Mandy L. Slate, Benjamin W. Sullivan & Ragan M. Callaway. (2019) Desiccation and rehydration of mosses greatly increases resource fluxes that alter soil carbon and nitrogen cycling. Journal of Ecology 107:4, pages 1767-1778.
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Daisuke Takezawa. 2018. Survival Strategies in Extreme Cold and Desiccation. Survival Strategies in Extreme Cold and Desiccation 167 187 .
Bei Gao, Xiaoshuang Li, Daoyuan Zhang, Yuqing Liang, Honglan Yang, Moxian Chen, Yuanming Zhang, Jianhua Zhang & Andrew J. Wood. (2017) Desiccation tolerance in bryophytes: The dehydration and rehydration transcriptomes in the desiccation-tolerant bryophyte Bryum argenteum. Scientific Reports 7:1.
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Pooja Bansal & Alka Srivastava. (2017) Desiccation-related responses of antioxidative enzymes and photosynthetic pigments in Brachythecium procumbens (Mitt.) A. Jaeger. Acta Physiologiae Plantarum 39:7.
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Lloyd R. Stark. (2017) Ecology of desiccation tolerance in bryophytes: A conceptual framework and methodology. The Bryologist 120:2, pages 130-165.
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Lloyd R. Stark. (2017) Ecology of desiccation tolerance in bryophytes: A conceptual framework and methodology. The Bryologist 120:2, pages 129-164.
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Farah Deeba & Vivek Pandey. 2017. Plant Adaptation Strategies in Changing Environment. Plant Adaptation Strategies in Changing Environment 29 75 .
Paz Zúñiga-González, Gustavo E. Zúñiga, Marisol Pizarro & Angélica Casanova-Katny. (2016) Soluble carbohydrate content variation in Sanionia uncinata and Polytrichastrum alpinum, two Antarctic mosses with contrasting desiccation capacities. Biological Research 49:1.
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Wesley Leoricy Marques, Vijayendran Raghavendran, Boris Ugarte Stambuk & Andreas Karoly Gombert. (2016) Sucrose and Saccharomyces cerevisiae : a relationship most sweet . FEMS Yeast Research 16:1, pages fov107.
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Rodney D. Seppelt, Alison J. Downing, Kirsten K. Deane-Coe, Yuanming Zhang & Jing Zhang. 2016. Biological Soil Crusts: An Organizing Principle in Drylands. Biological Soil Crusts: An Organizing Principle in Drylands 101 120 .
N.Ya. Kyyak & Ya.D. Khorkavtsiv. (2015) Adaptation of the bryophytes to water deficit in the dump area at sulfur deposit sites. Ukrainian Botanical Journal 72:6, pages 566-573.
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Li Wang, Yunxiang Mao, Fanna Kong, Min Cao & Peipei Sun. (2015) Genome-wide expression profiles of Pyropia haitanensis in response to osmotic stress by using deep sequencing technology. BMC Genomics 16:1.
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R. Cruz de Carvalho, A. Bernardes da Silva, C. Branquinho & J. Marques da Silva. (2015) Influence of dehydration rate on cell sucrose and water relations parameters in an inducible desiccation tolerant aquatic bryophyte. Environmental and Experimental Botany 120, pages 18-22.
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Laura Klavina. 2015. Polysaccharides. Polysaccharides 145 160 .
RICARDO CRUZ DE CARVALHO, ANABELA BERNARDES DA SILVA, RENATA SOARES, ANDRÉ M. ALMEIDA, ANA VARELA COELHO, JORGE MARQUES DA SILVA & CRISTINA BRANQUINHO. (2014) Differential proteomics of dehydration and rehydration in bryophytes: evidence towards a common desiccation tolerance mechanism. Plant, Cell & Environment 37:7, pages 1499-1515.
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Marcelo Garcés Cea, Stephan Claverol, Carla Alvear Castillo, Claudia Rabert Pinilla & León Bravo Ramírez. (2014) Desiccation tolerance of Hymenophyllacea filmy ferns is mediated by constitutive and non-inducible cellular mechanisms. Comptes Rendus Biologies 337:4, pages 235-243.
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Jessica Bramley-Alves, Diana H. King, Sharon A. Robinson & Rebecca E. Miller. 2014. Photosynthesis in Bryophytes and Early Land Plants. Photosynthesis in Bryophytes and Early Land Plants 309 324 .
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Jessica Royles, Jérôme Ogée, Lisa Wingate, Dominic A. Hodgson, Peter Convey & Howard Griffiths. (2013) Temporal separation between CO 2 assimilation and growth? Experimental and theoretical evidence from the desiccation‐tolerant moss S yntrichia ruralis . New Phytologist 197:4, pages 1152-1160.
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Abou Yobi, Bernard W.M. Wone, Wenxin Xu, Danny C. Alexander, Lining Guo, John A. Ryals, Melvin J. Oliver & John C. Cushman. (2013) Metabolomic Profiling in Selaginella lepidophylla at Various Hydration States Provides New Insights into the Mechanistic Basis of Desiccation Tolerance. Molecular Plant 6:2, pages 369-385.
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Abou Yobi, Bernard W. M. Wone, Wenxin Xu, Danny C. Alexander, Lining Guo, John A. Ryals, Melvin J. Oliver & John C. Cushman. (2012) Comparative metabolic profiling between desiccation‐sensitive and desiccation‐tolerant species of Selaginella reveals insights into the resurrection trait . The Plant Journal 72:6, pages 983-999.
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Erin E. Shortlidge, Todd N. Rosenstiel & Sarah M. Eppley. (2012) Tolerance to environmental desiccation in moss sperm. New Phytologist 194:3, pages 741-750.
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Challabathula Dinakar, Dimitar Djilianov & Dorothea Bartels. (2012) Photosynthesis in desiccation tolerant plants: Energy metabolism and antioxidative stress defense. Plant Science 182, pages 29-41.
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Melvin J. Oliver, Lining Guo, Danny C. Alexander, John A. Ryals, Bernard W.M. Wone & John C. Cushman. (2011) A Sister Group Contrast Using Untargeted Global Metabolomic Analysis Delineates the Biochemical Regulation Underlying Desiccation Tolerance in Sporobolus stapfianus       . The Plant Cell 23:4, pages 1231-1248.
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