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Randomly amplified polymorphic DNA-polymerase chain reaction analysis of two different populations of cultured Korean catfish Silurus asotus.
J Biosci ; 2001 Dec; 26(5): 641-7
Article in English | IMSEAR | ID: sea-111261
ABSTRACT
Genetic similarity and diversity of cultured catfish Silurus asotus populations collected from two areas in western Korea were examined using randomly amplified polymorphic DNA-polymerase chain reaction (RAPD-PCR). Out of 20 random primers tested, 5 produced 1344 RAPD bands ranging from 8.2 to 13.6 polymorphic bands per primer. The polymorphic bands in these populations ranged from 56.4% to 59.6%. Polymorphic bands per lane within populations ranged from 4.9% to 5.3%. The similarity within the Kunsan population varied from 0.39 to 0.82 with a mean (+/- SD) of 0.56 +/- 0.08. The level of bandsharing values was 0.59 +/- 0.07 within the catfish population from Yesan. The genetic similarity in cultured catfish populations may have been caused because individuals from two populations were reared in the same environmental conditions or by inbreeding during several generations. However, in view of bandsharing values, polymorphic bands and also the specific major bands that were inter-population-specific, significant genetic differentiation between these populations were present even if bandsharing (BS) values were somewhat numerically different. Therefore, the number of RAPD polymorphisms identified in this study may be sufficient to permit estimating genetic similarity and diversity. However, in future, additional populations, sampling sites and individuals will be necessary to make up for these weak points.
Subject(s)
Full text: Available Index: IMSEAR (South-East Asia) Main subject: Species Specificity / Genetic Variation / Catfishes / DNA / Base Sequence / Polymerase Chain Reaction / DNA Primers / Aquaculture / Random Amplified Polymorphic DNA Technique / Animals Language: English Journal: J Biosci Year: 2001 Type: Article

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Full text: Available Index: IMSEAR (South-East Asia) Main subject: Species Specificity / Genetic Variation / Catfishes / DNA / Base Sequence / Polymerase Chain Reaction / DNA Primers / Aquaculture / Random Amplified Polymorphic DNA Technique / Animals Language: English Journal: J Biosci Year: 2001 Type: Article