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10.1155/2017/7561909

http://scihub22266oqcxt.onion/10.1155/2017/7561909
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C5387808!5387808!28459054
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suck abstract from ncbi


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pmid28459054      Int+J+Genomics 2017 ; 2017 (ä): ä
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  • Application of Genomic In Situ Hybridization in Horticultural Science #MMPMID28459054
  • Ramzan F; Younis A; Lim KB
  • Int J Genomics 2017[]; 2017 (ä): ä PMID28459054show ga
  • Molecular cytogenetic techniques, such as in situ hybridization methods, are admirable tools to analyze the genomic structure and function, chromosome constituents, recombination patterns, alien gene introgression, genome evolution, aneuploidy, and polyploidy and also genome constitution visualization and chromosome discrimination from different genomes in allopolyploids of various horticultural crops. Using GISH advancement as multicolor detection is a significant approach to analyze the small and numerous chromosomes in fruit species, for example, Diospyros hybrids. This analytical technique has proved to be the most exact and effective way for hybrid status confirmation and helps remarkably to distinguish donor parental genomes in hybrids such as Clivia, Rhododendron, and Lycoris ornamental hybrids. The genome characterization facilitates in hybrid selection having potential desirable characteristics during the early hybridization breeding, as this technique expedites to detect introgressed sequence chromosomes. This review study epitomizes applications and advancements of genomic in situ hybridization (GISH) techniques in horticultural plants.
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