2008•Guangxi nongye shengwu kexueRequires access

Genetic diversity of buffalos in Guangxi based on microsatellite markers study

Ning Li

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Abstract

Twenty three microsatellite loci were selected to observe the genetic variation of Guangxi swamp buffalo population.Nineteen primer pairs amplified discrete products and gave polymorphic band patterns on a panel of 60 buffaloes.The mean effective number of alleles per polymorphic marker was 4.0189,mean heterozygosity per polymorphic marker ranged from 0.1852 to 0.4722,mean polymorphism information contents(PIC)for Guangxi buffalo was 0.6639,eighteen microsatellite loci displayed high polymorphism.

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Twenty three microsatellite loci were selected to observe the genetic variation of Guangxi swamp buffalo population.Nineteen primer pairs amplified discrete products and gave polymorphic band patterns on a panel of 60 buffaloes.The mean effective number of alleles per polymorphic marker was 4.0189,mean heterozygosity per polymorphic marker ranged from 0.1852 to 0.4722,mean polymorphism information contents(PIC)for Guangxi buffalo was 0.6639,eighteen microsatellite loci displayed high polymorphism.

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Available abstract

Twenty three microsatellite loci were selected to observe the genetic variation of Guangxi swamp buffalo population.Nineteen primer pairs amplified discrete products and gave polymorphic band patterns on a panel of 60 buffaloes.The mean effective number of alleles per polymorphic marker was 4.0189,mean heterozygosity per polymorphic marker ranged from 0.1852 to 0.4722,mean polymorphism information contents(PIC)for Guangxi buffalo was 0.6639,eighteen microsatellite loci displayed high polymorphism.

Key concepts: Microsatellite, Loss of heterozygosity, Genetic diversity, Biology, Allele, Polymorphism (computer science), Genetics, Population

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