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Original Articles

Molecular Analysis of In Vitro Shoot Organogenesis

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Pages 325-335 | Published online: 10 Aug 2010

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Ling Meng, Shibo Zhang & PeggyG. Lemaux. (2010) Toward Molecular Understanding of In Vitro and In Planta Shoot Organogenesis. Critical Reviews in Plant Sciences 29:2, pages 108-122.
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Ekrem Gurel, Songul Gurel & PeggyG. Lemaux. (2008) Biotechnology Applications for Sugar Beet. Critical Reviews in Plant Sciences 27:2, pages 108-140.
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Cátia Pereira, Itziar A. Montalbán, Ana Pedrosa, Jéssica Tavares, Alexey Pestryakov, Nina Bogdanchikova, Jorge Canhoto & Paloma Moncaleán. (2021) Regeneration of Pinus halepensis (Mill.) through Organogenesis from Apical Shoot Buds. Forests 12:3, pages 363.
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Siamak Shirani Bidabadi & S. Mohan Jain. (2020) Cellular, Molecular, and Physiological Aspects of In Vitro Plant Regeneration. Plants 9:6, pages 702.
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Jenny Paola Corredor-Prado, Daniela De Conti, Djalma Roecker Júnior, Gabriela Claudia Cangahuala-Inocente, Miguel Pedro Guerra, Lirio Luiz Dal Vesco & Rosete Pescador. (2018) Proteomic Identification of Differentially Altered Proteins During Regeneration from Nodular Cluster Cultures in Vriesea reitzii (Bromeliaceae). Journal of Plant Growth Regulation 38:2, pages 586-599.
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Jing Nie, Chao Wen, Lin Xi, Suhui Lv, Qingcui Zhao, Yaping Kou, Nan Ma, Liangjun Zhao & Xiaofeng Zhou. (2018) The AP2/ERF transcription factor CmERF053 of chrysanthemum positively regulates shoot branching, lateral root, and drought tolerance. Plant Cell Reports 37:7, pages 1049-1060.
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I.A. Iliev. (2017) Factors affecting the axillary and adventitious shoot formation in woody plants in vitro. Acta Horticulturae:1155, pages 15-28.
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Marta Libik-Konieczny, Małgorzata Kozieradzka-Kiszkurno, Christine Desel, Żaneta Michalec-Warzecha, Zbigniew Miszalski & Robert Konieczny. (2014) The localization of NADPH oxidase and reactive oxygen species in in vitro-cultured Mesembryanthemum crystallinum L. hypocotyls discloses their differing roles in rhizogenesis. Protoplasma 252:2, pages 477-487.
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Bin Gao, Lusheng Fan, Xingxing Li, Huifang Yang, Fengluan Liu, Ling Wang, Lin Xi, Nan Ma & Liangjun Zhao. (2013) RcRR1, a Rosa canina Type-A Response Regulator Gene, Is Involved in Cytokinin-Modulated Rhizoid Organogenesis. PLoS ONE 8:8, pages e72914.
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José M. Alvarez, Millán Cortizo, Natalia Bueno, Ana Rodríguez & Ricardo J. Ordás. (2012) CLAVATA1-LIKE, a leucine-rich-repeat protein receptor kinase gene differentially expressed during adventitious caulogenesis in Pinus pinaster and Pinus pinea. Plant Cell, Tissue and Organ Culture (PCTOC) 112:3, pages 331-342.
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BLAIR NAMETH, STEVEN J. DINKA, STEVEN P. CHATFIELD, ADAM MORRIS, JENNY ENGLISH, DORRETT LEWIS, ROSALINDA ORO & MANISH N. RAIZADA. (2013) The shoot regeneration capacity of excised Arabidopsis cotyledons is established during the initial hours after injury and is modulated by a complex genetic network of light signalling. Plant, Cell & Environment 36:1, pages 68-86.
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Bhagyalakshmi Neelwarne. 2012. Red Beet Biotechnology. Red Beet Biotechnology 175 198 .
Marcos Viejo, María E. Santamaría, José L. Rodríguez, Luis Valledor, Mónica Meijón, Marta Pérez, Jesús Pascual, Rodrigo Hasbún, Mario Fernández Fraga, María Berdasco, Peter E. Toorop, María J. Cañal & Roberto Rodríguez Fernández. 2012. Plant Cell Culture Protocols. Plant Cell Culture Protocols 277 301 .
Carlos Trujillo-Moya, Carmina Gisbert, Santiago Vilanova & Fernando Nuez. (2011) Localization of QTLs for in vitroplant regeneration in tomato. BMC Plant Biology 11:1.
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Jérôme Duclercq, Brigitte Sangwan-Norreel, Manuella Catterou & Rajbir S. Sangwan. (2011) De novo shoot organogenesis: from art to science. Trends in Plant Science 16:11, pages 597-606.
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Neerja Tyagi, Lynn S. Dahleen & Phil Bregitzer. (2010) Candidate Genes within Tissue Culture Regeneration QTL Revisited with a Linkage Map Based on Transcript‐Derived Markers. Crop Science 50:5, pages 1697-1707.
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Beatriz M. Souza, Jeanne B. Molfetta-Machado, Luciano Freschi, Antonio Figueira, Eduardo Purgatto, Marcos S. Buckeridge, Marie-Anne Van Sluys & Helenice Mercier. (2010) Axillary bud development in pineapple nodal segments correlates with changes on cell cycle gene expression, hormone level, and sucrose and glutamate contents. In Vitro Cellular & Developmental Biology - Plant 46:3, pages 281-288.
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Michael R. Davey & Paul AnthonyIvan Iliev, Alena Gajdošová, Gabriela Libiaková & Shri Mohan Jain. 2010. Plant Cell Culture. Plant Cell Culture 1 23 .
Michael C. FlickingerGeert‐Jan De Klerk. 2009. Encyclopedia of Industrial Biotechnology. Encyclopedia of Industrial Biotechnology 1 16 .
Yanghuan Bao, Palitha Dharmawardhana, Todd C Mockler & Steven H Strauss. (2009) Genome scale transcriptome analysis of shoot organogenesis in Populus. BMC Plant Biology 9:1.
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Xiang Yu Zhao, Ying Hua Su, Zhi Juan Cheng & Xian Sheng Zhang. (2008) Cell Fate Switch during In Vitro Plant Organogenesis . Journal of Integrative Plant Biology 50:7, pages 816-824.
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Steven P. Chatfield & Manish N. Raizada. (2007) Ethylene and shoot regeneration: hookless1 modulates de novo shoot organogenesis in Arabidopsis thaliana. Plant Cell Reports 27:4, pages 655-666.
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Mohammad Ahmadabadi, Stephanie Ruf & Ralph Bock. (2006) A leaf-based regeneration and transformation system for maize (Zea mays L.). Transgenic Research 16:4, pages 437-448.
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Vijendra K. Sharma, Robert Hänsch, Ralf R. Mendel & Jutta Schulze. (2006) Node-derived cultures with high-morphogenic competence in barley and wheat. Plant Cell, Tissue and Organ Culture 88:1, pages 21-33.
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Chun-Rong Zhang, Xue-Lin Huang, Jian-Yong Wu, Bi-Hong Feng & Yun-Feng Chen. (2006) Identification of thidiazuron-induced ESTs expressed differentially during callus differentiation of alfalfa (Medicago sativa). Physiologia Plantarum 128:4, pages 732-739.
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