SSR markers have a high degree of allelic variability, therefore SSR markers are powerful tools for genetic studies of the genus Elaeis, among others, for the identification of germplasm and genetic mapping of intra- or interspecific. Several reasons for the use of SSR molecular analysis are: (1) abundant, (2) with uniformly distributed, (3) highly polymorphic, (4) codominant, (5) rapidly generated by PCR, (6) relatively simple to be interpreted, and (7) easily accessed by other laboratories through the publication of the primary sequence [10]. Even [11] show that of the four molecular markers tested (RFLP, RAPD, AFLP and SSR), SSR markers have the highest information content (the ability to distinguish genotypes) to evaluate soybean germplasm compared with other molecular markers.
The aim of this study is to determine the genetic diversity of populations DxP yield component in oil palm's paternal half - sib families based on microsatellite markers
SSR markers have a high degree of allelic variability, therefore SSR markers are powerful tools for genetic studies of the genus Elaeis, among others, for the identification of germplasm and genetic mapping of intra- or interspecific. Several reasons for the use of SSR molecular analysis are: (1) abundant, (2) with uniformly distributed, (3) highly polymorphic, (4) codominant, (5) rapidly generated by PCR, (6) relatively simple to be interpreted, and (7) easily accessed by other laboratories through the publication of the primary sequence [10]. Even [11] show that of the four molecular markers tested (RFLP, RAPD, AFLP and SSR), SSR markers have the highest information content (the ability to distinguish genotypes) to evaluate soybean germplasm compared with other molecular markers.The aim of this study is to determine the genetic diversity of populations DxP yield component in oil palm's paternal half - sib families based on microsatellite markers
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