By Michael Pillay, George Ude, Chittaranjan Kole
Content material: advent, Michael Pillay, Abdou Tenkouano and Rodomiro Ortiz Classical Genetics and conventional Breeding in Musa, Michael Pillay variety research of Banana to Decipher the starting place of Cultivars, Kornel Burg and Ratri Boonruangrod Molecular Marker ideas in Musa Genomic study, Michael Pillay, K.A. Kumar, Andrew James, Silvas Jabekumar Prince Kirubakaran, Robert Miller, Rodomiro Ortiz, and Elayabalan Sivalingam Molecular Linkage Maps: concepts, assets and Achievements, Cory Johnson and Christopher Cullis Mapping and Tagging of easily Inherited characteristics in Musa, Rodomiro Ortiz Molecular Mapping of complicated features, Rodomiro Ortiz Map-Based Cloning in Musa spp., Andrew James, Rodomiro Ortiz, and Robert Miller sensible Genomics and Transcriptomics in Musa, Michael Pillay, S. Elayabalan, K.A. Kumar, and Silvas Jabekumar Prince Proteomics and Metabolomics of Musa, Dinh Hoang Lan Chi, and Peer M. Schenk position of Bioinformatics as a device, Mathieu Rouard, Sebastien Christian Carpentier, Stephanie Bocs, Gaetan Droc, Xavier Argout, Nicolas Roux, and Manuel Ruiz Genomics of Mycosphaerella fijiensis-The Causal Agent of Black Sigatoka in Musa spp., Claudia Fortes Ferreira, Herminio Souza Rocha, Ricardo Franco Cunha Moreira, and Lahyre Izaete Silveira Gomes Genomics of Fusarium oxysporum f. sp. cubense inflicting Wilt illness in Banana (Musa spp.), R. Thangavelu, G.D. Perumal, M.M. Musataff, S. Sreeramanan, and Xavier Rathinam ailment Resistance-Related Genes in Banana: The instances of NBS, Pto and NPR1 Genes, Santy Peraza-Echeverria, Virginia Aurora Herrera-Valencia, and Andrew James A Case for Molecular Breeding in Musa, Michael Pillay, K.A. Kumar, A.S.K. Shunmugam and S. Elayabalan end and clients in Musa study, Michael Pillay
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Extra info for Genetics, genomics and breeding of bananas
However, banana consumption should be seen as a component of diet diversification as banana products alone only contribute to a fraction of the dietary requirements (Honfo et al. 2007). 5 Academic Importance The two model species currently used in plant genomics are Arabidopsis and Oryza sativa (rice). The advantages of these plants as model species for genomics include their comparatively small genome sizes (Arabidopsis 125 Mbp and rice 490 Mbp), ease of handling and short life cycles. They are also easily transformed and have wide natural distributions.
In: African Crop Science Society Conference Proceedings, Entebbe, Uganda. Boonruangrod R, Desai D, Fluch F, Berenyi M, Burg K (2008) Identification of cytoplasmic ancestor gene-pools of Musa acuminata Colla and Musa balbisiana Colla and their hybrids by chloroplast and mitochondrial haplotyping. Theor Appl Genet 118: 43–55. Boonruangrod R, Fluch S, Burg K (2009) Elucidation of origin of the present day hybrid banana cultivars using the 5′ETS rDNA sequence information. Molecular Breeding 24: 77–91.
2012 by Taylor & Francis Group, LLC Introduction 17 Thereafter, research was focused on chromosomes pairing studies in artificially produced hybrids (Dodds 1943; Wilson 1946). A comprehensive study of meiotic studies in Musa was carried out by Shepherd (1996). Agarwal (1987, 1988a, b) published a series of papers on meiotic studies in Musa. With the advent of molecular biology, it appears that there was a general decline in interest for cytogenetic analyses of organisms since it was now possible to examine their DNA.
Genetics, genomics and breeding of bananas by Michael Pillay, George Ude, Chittaranjan Kole