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Original Articles

Variable silicon content of rice cultivars grown on everglades histosolsFootnote1

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Pages 2363-2368 | Published online: 21 Nov 2008

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Rui Xu, Jianfeng Huang, Huijun Guo, Changming Wang & Hui Zhan. (2023) Functions of silicon and phytolith in higher plants. Plant Signaling & Behavior 18:1.
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Namiki Mitani-Ueno, Naoki Yamaji & Jian Feng Ma. (2011) Silicon efflux transporters isolated from two pumpkin cultivars contrasting in Si uptake. Plant Signaling & Behavior 6:7, pages 991-994.
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MaqsoodA. Gill, Rahmatullah, M. Irfan & MuhammadA. Maqsood. (2007) Silicon Requirement of Coarse and Fine Varieties of Rice. Journal of Plant Nutrition 30:2, pages 163-170.
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Makoto Tsuda, Miho Morita, Daigo Makihara & Yoshihiko Hirai. (2000) The Involvement of Silicon Deposition in Salinity-Induced White Head in Rice (Oryza sativa L.). Plant Production Science 3:3, pages 328-334.
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Zhongwen Liao, H. J. Woodard & L. R. Hossner. (1994) The relationship of soil and leaf nutrients to rice leaf oranging. Journal of Plant Nutrition 17:10, pages 1781-1802.
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C. W. Deren, B. Glaz & G. H. Snyder. (1993) Leaf‐tissue silicon content of sugarcane genotypes grown on everglades histosols . Journal of Plant Nutrition 16:11, pages 2273-2280.
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Articles from other publishers (25)

B.N. Devanna, Rushil Mandlik, Gaurav Raturi, Sreeja S. Sudhakaran, Yogesh Sharma, Shivani Sharma, Nitika Rana, Ruchi Bansal, Vitthal Barvkar, Durgesh K. Tripathi, S.M. Shivaraj & Rupesh Deshmukh. (2021) Versatile role of silicon in cereals: Health benefits, uptake mechanism, and evolution. Plant Physiology and Biochemistry 165, pages 173-186.
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Wendy L. Zellner. (2021) Drastic Differences in Silicon Concentrations between Roots and Leaves of 10 Different Solanum lycopersicum L. Varieties. HortScience 56:7, pages 838-846.
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Jennifer K. Boldt & James E. Altland. (2021) Petunia (Petunia ×hybrida) Cultivars Vary in Silicon Accumulation and Distribution. HortScience 56:3, pages 305-312.
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William H. Brightly, Sue E. Hartley, Colin P. Osborne, Kimberley J. Simpson & Caroline A. E. Strömberg. (2020) High silicon concentrations in grasses are linked to environmental conditions and not associated with C 4 photosynthesis . Global Change Biology 26:12, pages 7128-7143.
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Mateja Grašič. (2019) Mnogotere vloge silicija izboljšajo uspevanje rastlin. Acta Biologica Slovenica 62:1, pages 3-57.
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Partha Talukdar, Sue E. Hartley, Anthony J. Travis, Adam H. Price & Gareth J. Norton. (2019) Genotypic differences in shoot silicon concentration and the impact on grain arsenic concentration in rice. Journal of Plant Nutrition and Soil Science 182:2, pages 265-276.
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Gyanendra Nath MitraGyanendra Nath Mitra. 2015. Regulation of Nutrient Uptake by Plants. Regulation of Nutrient Uptake by Plants 181 187 .
Brenda Servaz Tubaña & Joseph Raymond Heckman. 2015. Silicon and Plant Diseases. Silicon and Plant Diseases 7 51 .
Eeva M. Soininen, Kari Anne Bråthen, Juan German Herranz Jusdado, Stefan Reidinger & Susan E. Hartley. (2012) More than herbivory: levels of silica‐based defences in grasses vary with plant species, genotype and location. Oikos 122:1, pages 30-41.
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Mihail Garbuzov, Stefan Reidinger & Susan E. Hartley. (2011) Interactive effects of plant-available soil silicon and herbivory on competition between two grass species. Annals of Botany 108:7, pages 1355-1363.
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Nand Fageria, Virupax Baligar & Charles Jones. 2010. Growth and Mineral Nutrition of Field Crops, Third Edition. Growth and Mineral Nutrition of Field Crops, Third Edition 195 218 .
Leilson Antônio de Faria Júnior, Janice Guedes de Carvalho, Paulo Jorge de Pinho, Ana Rosa Ribeiro Bastos & Eric Victor Oliveira Ferreira. (2009) Produção de matéria seca, teor e acúmulo de silício em cultivares de arroz sob doses de silício. Ciência e Agrotecnologia 33:4, pages 1034-1040.
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Ricardo Antônio Polanczyk, Dirceu Pratissoli, Henrique de Sá Paye, Victor A Pereira, Fabíola LS Barros, Regina GS Oliveira, Renato R Passos & Sebastião Martins Filho. (2008) Indução de resistência à mosca minadora em crisântemo usando composto silicatado. Horticultura Brasileira 26:2, pages 240-243.
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U. N. Nanayakkara, W. Uddin & L. E. Datnoff. (2008) Effects of Soil Type, Source of Silicon, and Rate of Silicon Source on Development of Gray Leaf Spot of Perennial Ryegrass Turf. Plant Disease 92:6, pages 870-877.
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U. N. Nanayakkara, W. Uddin & L. E. Datnoff. (2007) Application of silicon sources increases silicon accumulation in perennial ryegrass turf on two soil types. Plant and Soil 303:1-2, pages 83-94.
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Q.-S. Wu, X.-Y. Wan, N. Su, Z.-J. Cheng, J.-K. Wang, C.-L. Lei, X. Zhang, L. Jiang, J.-F. Ma & J.-M. Wan. (2006) Genetic dissection of silicon uptake ability in rice (Oryza sativa L.). Plant Science 171:4, pages 441-448.
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Wei-Min Dai, Ke-Qin Zhang, Bin-Wu Duan, Kang-Le Zheng, Jie-Yun Zhuang & Run Cai. (2005) Genetic Dissection of Silicon Content in Different Organs of Rice. Crop Science 45:4, pages 1345-1352.
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Dieter Neumann. 2003. Silicon Biomineralization. Silicon Biomineralization 149 160 .
Lawrence E. Datnoff, Kenneth W. Seebold & Fernando J. Correa-V. 2001. Silicon in Agriculture. Silicon in Agriculture 171 184 .
C.W. Deren. 2001. Silicon in Agriculture. Silicon in Agriculture 149 158 .
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Emanuel Epstein. (1999) SILICON. Annual Review of Plant Physiology and Plant Molecular Biology 50:1, pages 641-664.
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L.E. Datnoff, C.W. Deren & G.H. Snyder. (1997) Silicon fertilization for disease management of rice in Florida. Crop Protection 16:6, pages 525-531.
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N.K. Savant, G.H. Snyder & L.E. Datnoff. 1996. Advances in Agronomy Volume 58. Advances in Agronomy Volume 58 151 199 .
W.H.O. Ernst, R.D. Vis & F. Piccolo. (1995) Silicon in Developing Nuts of the Sedge Schoenus nigricans. Journal of Plant Physiology 146:4, pages 481-488.
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