Banana Breeding : Progress and Challenges
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[1] N. Nayar. The Bananas: Botany, Origin, Dispersal , 2010 .
[2] J. Wiley. The Banana: Empires, Trade Wars, and Globalization , 2008 .
[3] A. Lourdusamy,et al. Diversity and phylogenetic relationships among wild and cultivated bananas (Silk-AAB) revealed by SSR markers , 2008 .
[4] K. Dodds,et al. Genetical and cytological studies ofMusa , 1942, Journal of Genetics.
[5] R. C. Sotto,et al. Utility of selected non-coding chloroplast DNA sequences for lineage assessment of Musa interspecific hybrids. , 2007, Journal of biochemistry and molecular biology.
[6] A. Onilude,et al. Quality characteristics of bread produced from composite flours of wheat, plantain and soybeans , 2006 .
[7] C. Lanaud,et al. Diploid Ancestors of Triploid Export Banana Cultivars: Molecular Identification of 2n Restitution Gamete Donors and n Gamete Donors , 2005, Molecular Breeding.
[8] P. Harrison,et al. Genome classification of banana cultivars from South India using IRAP markers , 2005, Euphytica.
[9] S. Sathiamoorthy,et al. Studies on the origin and diversification of Indian wild banana (Musa balbisiana) using arbitrarily amplified DNA markers , 2005 .
[10] S. Creste,et al. Genetic diversity of Musa diploid and triploid accessions from the Brazilian banana breeding program estimated by microsatellite markers , 2004, Genetic Resources and Crop Evolution.
[11] Simon Haberle,et al. New evidence and revised interpretations of early agriculture in Highland New Guinea , 2004, Antiquity.
[12] K. Bhat,et al. AFLP characterization and genetic diversity analysis of Indian banana and plantain cultivars (Musa spp.) , 2004 .
[13] E. Kahangi,et al. Genetic characterization of cultivated bananas and plantains in Kenya by RAPD markers , 2004 .
[14] A. Figueira,et al. Genetic characterization of banana cultivars (Musa spp.) from Brazil using microsatellite markers , 2003, Euphytica.
[15] M. Van Montagu,et al. Comparison of PCR-based molecular marker analyses of Musa breeding populations , 1999, Molecular Breeding.
[16] R. Jarret,et al. RFLP-based phylogeny of Musa species in Papua New Guinea , 1992, Theoretical and Applied Genetics.
[17] R. Jarret,et al. Chloroplast DNA restriction fragment length polymorphisms (RFLPs) in Musa species , 1991, Theoretical and Applied Genetics.
[18] V. Lebot,et al. Genetic relationships among cultivated bananas and plantains from Asia and the Pacific , 2004, Euphytica.
[19] D. Nwakanma,et al. PCR-RFLP of the ribosomal DNA internal transcribed spacers (ITS) provides markers for the A and B genomes in Musa L. , 2003, Theoretical and Applied Genetics.
[20] Carol J Lentfer,et al. Origins of Agriculture at Kuk Swamp in the Highlands of New Guinea , 2003, Science.
[21] Y. Gan,et al. The genetic relations of Musa species from Mount Jaya, New Guinea, and a reappraisal of the sections of Musa (Musaceae) , 2003 .
[22] C. Lanaud,et al. Ascertaining maternal and paternal lineage within Musa by chloroplast and mitochondrial DNA RFLP analyses. , 2002, Genome.
[23] E. Kahangi,et al. RAPD profiling of some banana varieties selected by small-scale farmers inKenya , 2002 .
[24] S. Sathiamoorthy,et al. Names and synonyms of bananas and plantains of India , 2002 .
[25] O. C. Pascua,et al. Wild and cultivated bananas of the Philippines , 2002 .
[26] E. Ogundiwin,et al. Analysis of genetic diversity and relationships in East African banana germplasm , 2001, Theoretical and Applied Genetics.
[27] K. Tomekpé,et al. Musalogue: A catalogue of Musa germplasm. Diversity in the genus Musa , 2001 .
[28] F. Lajolo,et al. Composition and functional properties of banana flour from different varieties. , 2000 .
[29] W. V. Neer,et al. Evidence for Banana Cultivation and Animal Husbandry During the First Millennium BC in the Forest of Southern Cameroon , 2000 .
[30] R. Rabara,et al. Morphological diversity of Musa balbisiana Colla in the Philippines. , 2000 .
[31] C. Gosden,et al. The Prehistory Of Food: Appetites For Change , 1999 .
[32] Plantain. Descriptors for banana (Musa spp.) , 1996 .
[33] S. Chandler. The nutritional value of bananas , 1995 .
[34] R. Swennen,et al. The use of RAPD for identifying and classifying Musa germplasm. , 1994, Genome.
[35] R. Swennen,et al. Plantain in the Early Bantu World , 1994 .
[36] V. Lebot,et al. Genetic diversity in Eastern Polynesian Eumusa bananas. , 1994 .
[37] J. Horry. Taxonomy and genetic diversity of diploid bananas , 1993 .
[38] G. Kahl,et al. Oligonucleotide and Amplification Fingerprinting of Wild Species and Cultivars of Banana (Musa spp.) , 1992, Bio/Technology.
[39] K. Bhat,et al. Survey of isozyme polymorphism for clonal identification in Musa. , 1992 .
[40] N. Simmonds,et al. Numerical taxonomy of the cultivated bananas , 1990 .
[41] J. W. Purseglove. The Origins and Migrations of Crops in Tropical Africa , 1976 .
[42] J. W. Purseglove. Tropical Crops. Monocotyledons. Vol. 1, 2. , 1972 .
[43] M. Gasster. THE BANANA IN GERIATRIC AND LOW-CALORIE DIETS. , 1963, Geriatrics.
[44] N. Simmonds. THE CLASSIFICATION AND NOMENCLATURE OF THE BANANAS AND POTATOES: SOME IMPLICATIONS , 1962 .
[45] N. Simmonds. The Evolution of the Bananas. , 1962 .
[46] N. Simmonds. Notes on banana taxonomy. , 1960 .
[47] N. Simmonds,et al. The taxonomy and origins of the cultivated bananas , 1955 .
[48] K. C. Jacob,et al. Madras bananas : a monograph , 1952 .
[49] N. Simmonds,et al. Sterility and parthenocarpy in diploid hybrids of musa , 1948, Heredity.
[50] E. Cheesman. Classification of the Bananas , 1948 .
[51] M. Sagot. Sur Le Genre Bananier , 1887 .