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Population Structure of Oryza sativa Landraces under Farmer Management
Population Structure of Oryza sativa Landraces under Farmer Management
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The present study demonstrated farmer management of crop population structure and temporal evolution of rice genetic diversity in traditional production systems. The 16 STMS primers analyzed for 11 rice landrace populations indicated enough polymorphism to fully differentiate the inter- and intra-population diversity. A total number of 98 alleles were recorded of which 91 were common and 7 were rare. The mean number of alleles per locus was 6.12 and for different groups of rice landrace populat…
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Population Structure of Oryza sativa Landraces under Farmer Management (e-book) (used book) | bookbook.eu

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The present study demonstrated farmer management of crop population structure and temporal evolution of rice genetic diversity in traditional production systems. The 16 STMS primers analyzed for 11 rice landrace populations indicated enough polymorphism to fully differentiate the inter- and intra-population diversity. A total number of 98 alleles were recorded of which 91 were common and 7 were rare. The mean number of alleles per locus was 6.12 and for different groups of rice landrace populations, namely five populations of upland common landrace Jaulia, three populations of irrigated common landrace Thapachini and one population each of three distinct rare landraces were 4.37, 2.75 and 4.37, respectively. The study revealed greater number of alleles per locus for on-farm managed populations as compared to the populations under static management. Further, the rare landrace populations included in the present study were more diverse than the common landrace populations. Investigating the population genetic structure is therefore helpful in monitoring change in diversity over time and space, and also for devising a rational plan for management of farmer landraces on-farm

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The present study demonstrated farmer management of crop population structure and temporal evolution of rice genetic diversity in traditional production systems. The 16 STMS primers analyzed for 11 rice landrace populations indicated enough polymorphism to fully differentiate the inter- and intra-population diversity. A total number of 98 alleles were recorded of which 91 were common and 7 were rare. The mean number of alleles per locus was 6.12 and for different groups of rice landrace populations, namely five populations of upland common landrace Jaulia, three populations of irrigated common landrace Thapachini and one population each of three distinct rare landraces were 4.37, 2.75 and 4.37, respectively. The study revealed greater number of alleles per locus for on-farm managed populations as compared to the populations under static management. Further, the rare landrace populations included in the present study were more diverse than the common landrace populations. Investigating the population genetic structure is therefore helpful in monitoring change in diversity over time and space, and also for devising a rational plan for management of farmer landraces on-farm

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