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      Cytogenetic Studies of Chrysanthemum: A Review

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      https://www.riss.kr/link?id=A106523199

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      다국어 초록 (Multilingual Abstract)

      Chrysanthemum is a valuable ornamental plant worldwide, and several of its species are used as herbal tea, medicinal plants, and dietary supplements, among others. Commercial cultivars have been developed through interspecific hybridization and artifi...

      Chrysanthemum is a valuable ornamental plant worldwide, and several of its species are used as herbal tea, medicinal plants, and dietary supplements, among others. Commercial cultivars have been developed through interspecific hybridization and artificial selection to improve the characteristics, production quality, and environmental adaptation for enhancing ornamental value. To better understand the recent research in cytogenetic studies of chrysanthemum, we examined studies concerning polyploidy, karyotyping, banding, fluorescence in situ hybridization (FISH) technique, and inter/intraspecific hybridization. Ploidy level is important in genomic characteristics and has a significant value to horticulturists and plant breeders. Studies have reported that flow cytometry analysis and single-dose molecular markers can be used to determine the chrysanthemum ploidy level. As for karyotyping, a better understanding of karyomorphological relationships and evolution of chrysanthemum and its closely related genera has already been gained. Moreover, karyotype parameters in chrysanthemum studies play a critical role in cultivar identification, classification, and genetic analysis. The FISH technique in chrysanthemum research provides more information on chromosome identification, sequences distribution, and evolution for expediting the development and improvement of plant species. The genomic in situ hybridization (GISH) technique can also be used to test hybridization in chrysanthemum breeding. Hence, this review of molecular cytogenetic studies of chrysanthemum will help us to have a better understanding and knowledge of the taxa breeding and the development and improvement of new cultivars.

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      목차 (Table of Contents)

      • Abstract
      • Introduction
      • Polyploidy studies on chrysanthemum
      • Karyotypes studies on chrysanthemum
      • Banding and FISH Technique
      • Abstract
      • Introduction
      • Polyploidy studies on chrysanthemum
      • Karyotypes studies on chrysanthemum
      • Banding and FISH Technique
      • Inter and intraspecific hybridization
      • Conclusion
      • References
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      참고문헌 (Reference)

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      2 Peter M. Bourke, "Tools for Genetic Studies in Experimental Populations of Polyploids" Frontiers Media SA 9 : 2018

      3 Maik Klie, "The type of ploidy of chrysanthemum is not black or white: a comparison of a molecular approach to published cytological methods" Frontiers Media SA 5 : 2014

      4 Abigail Rubiato Cuyacot, "The chromosomal distribution of repetitive DNA sequences in Chrysanthemum boreale revealed a characterization in its genome" Elsevier BV 198 : 438-444, 2016

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      8 Nomar Espinosa Waminal, "Rapid and Efficient FISH using Pre-Labeled Oligomer Probes" Springer Science and Business Media LLC 8 (8): 2018

      9 Xinwei Guo, "Polyploidy levels of Chinese large-flower chrysanthemum determined by flow cytometry" Academic Journals 11 (11): 2012

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      1 Magdy Hussein Abd El-Twab, "Visualization of genomic relationships in allotetraploid hybrids between Chrysanthemum lavandulifolium X C. chanetii by fluorescence in situ hybridization and genomic in situ hybridization" International Society of Chromosome Botany 3 (3): 19-25, 2008

      2 Peter M. Bourke, "Tools for Genetic Studies in Experimental Populations of Polyploids" Frontiers Media SA 9 : 2018

      3 Maik Klie, "The type of ploidy of chrysanthemum is not black or white: a comparison of a molecular approach to published cytological methods" Frontiers Media SA 5 : 2014

      4 Abigail Rubiato Cuyacot, "The chromosomal distribution of repetitive DNA sequences in Chrysanthemum boreale revealed a characterization in its genome" Elsevier BV 198 : 438-444, 2016

      5 Jun Li, "Telomere and 45S rDNA sequences are structurally linked on the chromosomes in Chrysanthemum segetum L." Springer Science and Business Media LLC 249 (249): 207-215, 2012

      6 G.R. Rout, "Recent trends in the biotechnology of Chrysanthemum: a critical review" Elsevier BV 69 (69): 239-257, 1997

      7 Magdy Hussein Abd E-Twab, "Rapid genome reshuffling induced by allopolyploidization in F1 hybrid in Chrysanthemum remotipinnum (formerly Ajania remotipinna) and Chrysanthemum chanetii (formerly Dendranthema chanetii)" International Society of Chromosome Botany 2 (2): 1-9, 2007

      8 Nomar Espinosa Waminal, "Rapid and Efficient FISH using Pre-Labeled Oligomer Probes" Springer Science and Business Media LLC 8 (8): 2018

      9 Xinwei Guo, "Polyploidy levels of Chinese large-flower chrysanthemum determined by flow cytometry" Academic Journals 11 (11): 2012

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      48 Magdy Hussein Abd El-Twab, "FISH physical mapping of 5S rDNA and telomere sequence repeats identified a peculiar chromosome mapping and mutation in Leucanthemella linearis and Nipponanthemum nipponicum in Chrysanthemum sensu lato" International Society of Chromosome Botany 2 (2): 11-17, 2007

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