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2006 | 47 | 3 |

Tytuł artykułu

A simple and reliable method for DNA extraction from bivalve mantle

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
A simple and reliable method was developed for extracting genomic DNA from preserved mantle tissues of Pacific oyster Crassostrea gigas for reproducible PCR amplification. The method was based on destruction of the tissue using Proteinase K, Chelex 100 resin, detergents, and urea, followed by preferential capturing of genomic DNA with silica particles. Approximately 5 mg of mantle tissue provided a sufficient quality and quantity of DNA for several hundreds of PCR reactions amplifying the hypervariable mitochondrial DNA intergenic spacer, which is a useful genetic marker for population structure analysis of Pacific oyster. The method can be applied for DNA preparation from not only fresh and frozen but also ethanol-preserved mantle tissues, so this rapid and economical method can serve for investigating a large number of bivalve specimens collected in the field and next transported in ethanol at ambient temperature.

Wydawca

-

Rocznik

Tom

47

Numer

3

Opis fizyczny

p.251-254,fig.,ref.

Twórcy

autor
  • Department of Biological and Environmental Sciences, Miyazaki University, Miyazaki 889-2192, Japan
autor
  • Department of Biological and Environmental Sciences, Miyazaki University, Miyazaki 889-2192, Japan

Bibliografia

  • Aranishi F, 2006. A novel mitochondrial intergenic spacer reflecting population structure of Pacific oyster. J Appl Genet 47: 119-123.
  • Aranishi F, Okimoto T, 2004. Genetic relationship between cultured populations of Pacific oyster revealed by RAPD analysis. J Appl Genet 45: 435-443.
  • Aranishi F, Okimoto T, 2005. Sequence polymorphism in a novel noncoding region of Pacific oyster mitochondrial DNA. J Appl Genet 46: 201-206.
  • Berthelin C, Kellner K, Mathieu M, 2000. Storage metabolism in the Pacific oyster (Crassostrea gigas) in relation to summer mortalities and reproductive cycle (west coast of France). Comp Biochem Physiol 125B: 359-369.
  • Brokordt KB, Himmelman JH, Guderley HE, 2000. Effect of reproduction on escape responses and muscle metabolic capacities in the scallop Chlamys islandica Muller 1776. J Exp Mar Biol Ecol 251:205-225.
  • Encomio V, Chu FL, 2000. The effect of PCBs on glycogen reserves in the eastern oyster Crassostrea virginica. Mar Environ Res 50: 45-49.
  • Fernandez A, Garcia T, Asensio L, Rodriguez MA, Gonzalez I, Cespedes A, et al. 2000. Identification of the clam species Ruditapes decussatus (grooved carpet shell), Venerupis pullastra (pullet carpet shell), and Ruditapes philippinarum (Japanese carpet shell) by PCR-RFLP. J Agric Food Chem 48: 3336-3341.
  • Hyotylainen T, Karels A, Oikari A, 2002. Assessment of bioavailability and effects of chemicals due to remediation actions with caging mussels (Anodonta anatina) at a creosote-contaminated lake sediment site. Water Res 36: 4497-4504.
  • Klinbunga S, Ampayup P, Tassanakajon A, Jarayabhand P, Yoosukh W, 2001. Genetic diversity and molecular markers of cupped oysters (genera Crassostrea, Saccostrea, and Striostrea) in Thailand revealed by randomly amplified polymorphic DNA analysis. Mar Biotechnol 3: 133-144.
  • Ko YT, Chan MMY, Ford SE, Fong D, 1999. A PCR-ELISA method for direct detection of the oyster pathogen Haplosporidium nelsoni. Mar Biotechnol 1: 147-154.
  • Launey S, Hedgecock D, 2001. High genetic load in the Pacific oyster Crassostrea gigas. Genetics 159: 255-265.
  • Martinez G, Brokordt K, Aguilera C, Soto V, Guderley H, 2000. Effect of diet and temperature upon muscle metabolic capacities and biochemical composition of gonad and muscle in Argopecten purpuratus Lamarck 1819. J Exp Mar Biol Ecol 247: 29-49.
  • Neudecker F, Grimm S, 2000. High-throughput method for isolating plasmid DNA with reduced lipopolysaccharide content. Biotechniques 28: 106-108.
  • Sato M, Nagashima K, 2001. Molecular characterization of a mitochondrial DNA segment from the Japanese scallop (Patinopecten yessoensis): Demonstration of a region showing sequence polymorphism in the population. Mar Biotechnol 3: 370-379.
  • Steiner G, Muller M, 1996. What can 18S rDNA do for bivalve phylogeny? J Mol Evol 43: 58-70.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-ef89562b-a135-432a-8b69-7b9ca5ad2289
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