Genetic Improvement of Carnation

Author:

Sharma PoojaORCID,Nath Amarjit K.,Kumar Akhil,Shyam Anshul

Publisher

Springer Nature Singapore

Reference43 articles.

1. Bovy AG, Angenent GC, Dons HJM, vanAtvorst AG (1999) Heterologous expression of the Arabidopsis etr1-1 allele inhibits the senescence of carnation flowers. Plant Sci 5:301–308

2. Brugliera F, Tull D, Holton TA, Karan M, Treloar N, Simpson K, Skurczynska J, Mason JG (2000) Introduction of a cytochrome b5 enhances the activity of flavonoid 3¢,5¢-hydroxylase (a cytochrome P450) in transgenic carnation. In: Sixth International Congress of Plant Molecular Biology, University of Laval, Quebec, June 2000, pp S6-S8

3. Casanova E, Valdés AE, Zuker A, Fernández B, Vainstein A, Trillas MI, Moysset L (2004) rolC-transgenic carnation plants: adventitious organogenesis and levels of endogenous auxin and cytokinins. Plant 167:551–560. https://doi.org/10.1016/j.plantsci.2004.04.029

4. Century K, Reuber TL, Ratcliffe OJ (2008) Regulating the regulators: the future prospects for transcription-factor-based agricultural biotechnology products. Plant Physiol 147:20–29. https://doi.org/10.1104/pp.108.117887

5. Chandler SF (2007) Practical lessons in the commercialisation of genetically modified plants long vase life carnation. Acta Hortic 764:71–82. https://doi.org/10.17660/ActaHortic.2007.764.8

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