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Original Articles

Chemical composition of xylem sap of tomato grown on bicarbonate containing medium

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Pages 2005-2021 | Published online: 21 Nov 2008

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Read on this site (6)

Francesco Di Gioia, Eric H. Simonne, Maria Gonnella, Pietro Santamaria, Aparna Gazula & Zenyth Sheppard. (2010) Assessment of Ionic Interferences to Nitrate and Potassium Analyses with Ion-Selective Electrodes. Communications in Soil Science and Plant Analysis 41:14, pages 1750-1768.
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Jan Bialczyk, Zbigniew Lechowski, Dariusz Dziga & Ewa Mej. (2007) Fruit Yield of Tomato Cultivated on Media with Bicarbonate and Nitrate/Ammonium as the Nitrogen Source. Journal of Plant Nutrition 30:1, pages 149-161.
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A.D. Rombolà, W. Brüggemann, M. Tagliavini, B. Marangoni & P.R. Moog. (2000) Iron source affects iron reduction and re‐greening of kiwifruit (Actinidia deliciosa) leaves. Journal of Plant Nutrition 23:11-12, pages 1751-1765.
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JuanJ. Lucena. (2000) Effects of bicarbonate, nitrate and other environmental factors on iron deficiency chlorosis. A review. Journal of Plant Nutrition 23:11-12, pages 1591-1606.
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Articles from other publishers (30)

Chunyu Wang, Sien Li, Mousong Wu, Xuhui Wang, Shangjin Wang, Zhenyu Guo, Siyu Huang, Hanbo Yang & Liang Gao. (2023) High efficiency and low greenhouse gas emissions intensity of maize in drip irrigation under mulch system. Agriculture, Ecosystems & Environment 346, pages 108344.
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Yanyou Wu & Sen RaoYanyou Wu & Sen Rao. 2023. Root-Derived Bicarbonate Assimilation in Plants. Root-Derived Bicarbonate Assimilation in Plants 149 213 .
Hong Ren, Ming Zhao, Baoyuan Zhou, Wenbin Zhou, Kemin Li, Hua Qi, Ying Jiang & Congfeng Li. (2022) Understanding physiological mechanisms of variation in grain filling of maize under high planting density and varying nitrogen applicate rate. Frontiers in Nutrition 9.
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Irshad Ahmad, Zhengang Yan, Muhammad Kamran, Khushnuma Ikram, Muhammad Usman Ghani & Fujiang Hou. (2022) Nitrogen management and supplemental irrigation affected greenhouse gas emissions, yield and nutritional quality of fodder maize in an arid region. Agricultural Water Management 269, pages 107650.
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Mitchell Andrews & John A. Raven. (2022) Root or shoot nitrate assimilation in terrestrial vascular plants – does it matter?. Plant and Soil 476:1-2, pages 31-62.
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K. Yao & Y. Y. Wu. (2021) Rhizospheric Bicarbonate Improves Glucose Metabolism and Stress Tolerance of Broussonetia papyrifera L. Seedlings under Simulated Drought Stress. Russian Journal of Plant Physiology 68:1, pages 126-135.
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Qianmin Jia, Liye Yang, Haoyun An, Shan Dong, Shenghua Chang, Cheng Zhang, Yongjie Liu & Fujiang Hou. (2020) Nitrogen fertilization and planting models regulate maize productivity, nitrate and root distributions in semi-arid regions. Soil and Tillage Research 200, pages 104636.
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Xiao-yan LIANG, Feng GUO, Ye FENG, Jia-lei ZHANG, Sha YANG, Jing-jing MENG, Xin-guo LI & Shu-bo WAN. (2020) Single-seed sowing increased pod yield at a reduced seeding rate by improving root physiological state of Arachis hypogaea. Journal of Integrative Agriculture 19:4, pages 1019-1032.
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E. Leibar-Porcel, M.R. McAinsh & I.C. Dodd. (2020) Root-zone CO 2 enrichment increases biomass accumulation in lettuce and pepper grown hydroponically and aeroponically . Acta Horticulturae:1273, pages 93-100.
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Sen Rao & Yanyou Wu. (2017) Root-derived bicarbonate assimilation in response to variable water deficit in Camptotheca acuminate seedlings. Photosynthesis Research 134:1, pages 59-70.
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Nabil Killiny. (2016) Generous hosts: What makes Madagascar periwinkle (Catharanthus roseus) the perfect experimental host plant for fastidious bacteria?. Plant Physiology and Biochemistry 109, pages 28-35.
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B. L. Dalsing & C. Allen. (2013) Nitrate Assimilation Contributes to Ralstonia solanacearum Root Attachment, Stem Colonization, and Virulence. Journal of Bacteriology 196:5, pages 949-960.
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Dahai Guan, Mahdi M. Al-Kaisi, Yushi Zhang, Liusheng Duan, Weiming Tan, Mingcai Zhang & Zhaohu Li. (2014) Tillage practices affect biomass and grain yield through regulating root growth, root-bleeding sap and nutrients uptake in summer maize. Field Crops Research 157, pages 89-97.
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Jonathan M. Jacobs, Lavanya Babujee, Fanhong Meng, Annett Milling & Caitilyn Allen. (2012) The In Planta Transcriptome of Ralstonia solanacearum: Conserved Physiological and Virulence Strategies during Bacterial Wilt of Tomato . mBio 3:4.
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K. K. Christensen-Dalsgaard, M. T. Tyree & P. G. Mussone. (2011) Surface tension phenomena in the xylem sap of three diffuse porous temperate tree species. Tree Physiology 31:4, pages 361-368.
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Ramadan A. Alhendawi. (2010) Comparisons between Effects of Bicarbonate and High pH on Iron Uptake, FeIII Reducing Capacity of the Roots, PEP Carboxylase Activity, Organic Acid Composition and Cation-anion Balance of the Xylem Sap of Maize Seedlings. American Journal of Plant Nutrition and Fertilization Technology 1:1, pages 36-47.
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Ajmi Larbi, Fermín Morales, Anunciación Abadía & Javier Abadía. (2010) Changes in iron and organic acid concentrations in xylem sap and apoplastic fluid of iron-deficient Beta vulgaris plants in response to iron resupply. Journal of Plant Physiology 167:4, pages 255-260.
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Ana Flor López-Millán, Fermín Morales, Yolanda Gogorcena, Anunciación Abadía & Javier Abadía. (2009) Metabolic responses in iron deficient tomato plants. Journal of Plant Physiology 166:4, pages 375-384.
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Adrian J. Charlton, James A. Donarski, Mark Harrison, Stephen A. Jones, John Godward, Sarah Oehlschlager, Juan L. Arques, Mike Ambrose, Catherine Chinoy, Philip M. Mullineaux & Claire Domoney. (2008) Responses of the pea (Pisum sativum L.) leaf metabolome to drought stress assessed by nuclear magnetic resonance spectroscopy. Metabolomics 4:4, pages 312-327.
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ASHLEY FRANKS, G. LOUISE MARK-BYRNE, J. MAXWELL DOW & FERGAL O’GARA. (2007) A putative RNA-binding protein has a role in virulence in Ralstonia solanacearum GMI1000. Molecular Plant Pathology 0:0, pages 071106214813002-???.
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Roberto B. F. Branco, Rumy Goto, Ary G. Carneiro Júnior, Vandeir F. Guimarães, João D. Rodrigues, Paulo C.O. Trivelin & Liciana V. de A. Silveira. (2007) Enxertia e água de irrigação carbonatada no transporte de 15N e na produção do tomateiro. Revista Brasileira de Engenharia Agrícola e Ambiental 11:4, pages 374-379.
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M. Nikolic & V. Römheld. 2007. The Apoplast of Higher Plants: Compartment of Storage, Transport and Reactions. The Apoplast of Higher Plants: Compartment of Storage, Transport and Reactions 353 371 .
Jan Bialczyk, Zbigniew Lechowski, Dariusz Dziga & Krzysztof Molenda. (2005) Carbohydrate and free amino acid contents in tomato plants grown in media with bicarbonate and nitrate or ammonium. Acta Physiologiae Plantarum 27:4, pages 523-529.
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A. D. Rombolà, Y. Gogorcena, A. Larbi, F. Morales, E. Baldi, B. Marangoni, M. Tagliavini & J. Abadía. (2005) Iron deficiency-induced changes in carbon fixation and leaf elemental composition of sugar beet (Beta vulgaris) plants. Plant and Soil 271:1-2, pages 39-45.
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Darby G. Brown & Caitilyn Allen. (2004) Ralstonia solanacearum genes induced during growth in tomato: an inside view of bacterial wilt. Molecular Microbiology 53:6, pages 1641-1660.
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Miroslav Nikolic & Volker Römheld. (2003) Nitrate Does Not Result in Iron Inactivation in the Apoplast of Sunflower Leaves. Plant Physiology 132:3, pages 1303-1314.
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Enid T. González & Caitilyn Allen. (2003) Characterization of a Ralstonia solanacearum Operon Required for Polygalacturonate Degradation and Uptake of Galacturonic Acid . Molecular Plant-Microbe Interactions® 16:6, pages 536-544.
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Maria Neudes S. Oliveira, Marco Antonio Oliva, Carlos Alberto Martínez & Marco Aurélio P. e Silva. (2003) Variação diurna e sazonal do pH e composição mineral da seiva do xilema em tomateiro. Horticultura Brasileira 21:1, pages 10-14.
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Francisco Pérez Alfocea, María E. Balibrea, Juan J. Alarcón & María C. Bolarín. (2000) Composition of Xylem and Phloem Exudates in Relation to the Salt-tolerance of Domestic and Wild Tomato Species. Journal of Plant Physiology 156:3, pages 367-374.
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Z. F. Gao & S. H. Lips. (2006) Effects of increasing inorganic carbon supply to roots on net nitrate uptake and assimilation in tomato seedlings. Physiologia Plantarum 101:1, pages 206-212.
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