Efficiency of peptide nucleic acid-directed PCR clamping and its application in the investigation of natural diets of the Japanese eel leptocephali.

Takeshi Terahara, Seinen Chow, Hiroaki Kurogi, Sun Hee Lee, Katsumi Tsukamoto, Noritaka Mochioka, Hideki Tanaka, Haruko Takeyama

研究成果: ジャーナルへの寄稿記事

抄録

Polymerase chain reaction (PCR)-clamping using blocking primer and DNA-analogs, such as peptide nucleotide acid (PNA), may be used to selectively amplify target DNA for molecular diet analysis. We investigated PCR-clamping efficiency by studying PNA position and mismatch with complementary DNA by designing PNAs at five different positions on the nuclear rDNA internal transcribed spacer 1 of the Japanese eel Anguilla japonica in association with intra-specific nucleotide substitutions. All five PNAs were observed to efficiently inhibit amplification of a fully complementary DNA template. One mismatch between PNA and template DNA inhibited amplification of the template DNA, while two or more mismatches did not. DNA samples extracted from dorsal muscle and intestine of eight wild-caught leptochephalus larvae were subjected to this analysis, followed by cloning, nucleotide sequence analysis, and database homology search. Among 12 sequence types obtained from the intestine sample, six were identified as fungi. No sequence similarities were found in the database for the remaining six types, which were not related to one another. These results, in conjunction with our laboratory observations on larval feeding, suggest that eel leptocephali may not be dependent upon living plankton for their food source.

元の言語英語
ジャーナルPLoS One
6
発行部数11
出版物ステータス出版済み - 2011
外部発表Yes

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Peptide Nucleic Acids
Eels
Anguilla japonica
Polymerase chain reaction
Nutrition
Constriction
nucleic acids
Nucleotides
polymerase chain reaction
peptides
Diet
Polymerase Chain Reaction
nucleotides
DNA
complementary DNA
diet
Peptides
Acids
Intestines
Complementary DNA

All Science Journal Classification (ASJC) codes

  • Agricultural and Biological Sciences(all)
  • Biochemistry, Genetics and Molecular Biology(all)
  • Medicine(all)

これを引用

Efficiency of peptide nucleic acid-directed PCR clamping and its application in the investigation of natural diets of the Japanese eel leptocephali. / Terahara, Takeshi; Chow, Seinen; Kurogi, Hiroaki; Lee, Sun Hee; Tsukamoto, Katsumi; Mochioka, Noritaka; Tanaka, Hideki; Takeyama, Haruko.

:: PLoS One, 巻 6, 番号 11, 2011.

研究成果: ジャーナルへの寄稿記事

Terahara, Takeshi ; Chow, Seinen ; Kurogi, Hiroaki ; Lee, Sun Hee ; Tsukamoto, Katsumi ; Mochioka, Noritaka ; Tanaka, Hideki ; Takeyama, Haruko. / Efficiency of peptide nucleic acid-directed PCR clamping and its application in the investigation of natural diets of the Japanese eel leptocephali. :: PLoS One. 2011 ; 巻 6, 番号 11.
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abstract = "Polymerase chain reaction (PCR)-clamping using blocking primer and DNA-analogs, such as peptide nucleotide acid (PNA), may be used to selectively amplify target DNA for molecular diet analysis. We investigated PCR-clamping efficiency by studying PNA position and mismatch with complementary DNA by designing PNAs at five different positions on the nuclear rDNA internal transcribed spacer 1 of the Japanese eel Anguilla japonica in association with intra-specific nucleotide substitutions. All five PNAs were observed to efficiently inhibit amplification of a fully complementary DNA template. One mismatch between PNA and template DNA inhibited amplification of the template DNA, while two or more mismatches did not. DNA samples extracted from dorsal muscle and intestine of eight wild-caught leptochephalus larvae were subjected to this analysis, followed by cloning, nucleotide sequence analysis, and database homology search. Among 12 sequence types obtained from the intestine sample, six were identified as fungi. No sequence similarities were found in the database for the remaining six types, which were not related to one another. These results, in conjunction with our laboratory observations on larval feeding, suggest that eel leptocephali may not be dependent upon living plankton for their food source.",
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AU - Tsukamoto, Katsumi

AU - Mochioka, Noritaka

AU - Tanaka, Hideki

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