• 제목/요약/키워드: conserved sequences

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Evolutionary Explanation for Beauveria bassiana Being a Potent Biological Control Agent Against Agricultural Pests

  • Han, Jae-Gu
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2014년도 춘계학술대회 및 임시총회
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    • pp.27-28
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    • 2014
  • Beauveria bassiana (Cordycipitaceae, Hypocreales, Ascomycota) is an anamorphic fungus having a potential to be used as a biological control agent because it parasitizes a wide range of arthropod hosts including termites, aphids, beetles and many other insects. A number of bioactive secondary metabolites (SMs) have been isolated from B. bassiana and functionally verified. Among them, beauvericin and bassianolide are cyclic depsipeptides with antibiotic and insecticidal effects belonging to the enniatin family. Non-ribosomal peptide synthetases (NRPSs) play a crucial role in the synthesis of these secondary metabolites. NRPSs are modularly organized multienzyme complexes in which each module is responsible for the elongation of proteinogenic and non-protein amino acids, as well as carboxyl and hydroxyacids. A minimum of three domains are necessary for one NRPS elongation module: an adenylation (A) domain for substrate recognition and activation; a tholation (T) domain that tethers the growing peptide chain and the incoming aminoacyl unit; and a condensation (C) domain to catalyze peptide bond formation. Some of the optional domains include epimerization (E), heterocyclization (Cy) and oxidation (Ox) domains, which may modify the enzyme-bound precursors or intermediates. In the present study, we analyzed genomes of B. bassiana and its allied species in Hypocreales to verify the distribution of NRPS-encoding genes involving biosynthesis of beauvericin and bassianolide, and to unveil the evolutionary processes of the gene clusters. Initially, we retrieved completely or partially assembled genomic sequences of fungal species belonging to Hypocreales from public databases. SM biosynthesizing genes were predicted from the selected genomes using antiSMASH program. Adenylation (A) domains were extracted from the predicted NRPS, NRPS-like and NRPS-PKS hybrid genes, and used them to construct a phylogenetic tree. Based on the preliminary results of SM biosynthetic gene prediction in B. bassiana, we analyzed the conserved gene orders of beauvericin and bassianolide biosynthetic gene clusters among the hypocrealean fungi. Reciprocal best blast hit (RBH) approach was performed to identify the regions orthologous to the biosynthetic gene cluster in the selected fungal genomes. A clear recombination pattern was recognized in the inferred A-domain tree in which A-domains in the 1st and 2nd modules of beauvericin and bassianolide synthetases were grouped in CYCLO and EAS clades, respectively, suggesting that two modules of each synthetase have evolved independently. In addition, inferred topologies were congruent with the species phylogeny of Cordycipitaceae, indicating that the gene fusion event have occurred before the species divergence. Beauvericin and bassianolide synthetases turned out to possess identical domain organization as C-A-T-C-A-NM-T-T-C. We also predicted precursors of beauvericin and bassianolide synthetases based on the extracted signature residues in A-domain core motifs. The result showed that the A-domains in the 1st module of both synthetases select D-2-hydroxyisovalerate (D-Hiv), while A-domains in the 2nd modules specifically activate L-phenylalanine (Phe) in beauvericin synthetase and leucine (Leu) in bassianolide synthetase. antiSMASH ver. 2.0 predicted 15 genes in the beauvericin biosynthetic gene cluster of the B. bassiana genome dispersed across a total length of approximately 50kb. The beauvericin biosynthetic gene cluster contains beauvericin synthetase as well as kivr gene encoding NADPH-dependent ketoisovalerate reductase which is necessary to convert 2-ketoisovalarate to D-Hiv and a gene encoding a putative Gal4-like transcriptional regulator. Our syntenic comparison showed that species in Cordycipitaceae have almost conserved beauvericin biosynthetic gene cluster although the gene order and direction were sometimes variable. It is intriguing that there is no region orthologous to beauvericin synthetase gene in Cordyceps militaris genome. It is likely that beauvericin synthetase was present in common ancestor of Cordycipitaceae but selective gene loss has occurred in several species including C. militaris. Putative bassianolide biosynthetic gene cluster consisted of 16 genes including bassianolide synthetase, cytochrome P450 monooxygenase, and putative Gal4-like transcriptional regulator genes. Our synteny analysis found that only B. bassiana possessed a bassianolide synthetase gene among the studied fungi. This result is consistent with the groupings in A-domain tree in which bassianolide synthetase gene found in B. bassiana was not grouped with NRPS genes predicted in other species. We hypothesized that bassianolide biosynthesizing cluster genes in B. bassiana are possibly acquired by horizontal gene transfer (HGT) from distantly related fungi. The present study showed that B. bassiana is the only species capable of producing both beauvericin and bassianolide. This property led to B. bassiana infect multiple hosts and to be a potential biological control agent against agricultural pests.

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고추에서 분리한 Cinnamate 4-Hydroxylase 유전자의 분자생물학적 특성 (Molecular Characterization of Cinnamate 4-Hydroxylase gene in Red Hot Pepper (Capsicum annuum L.))

  • 김계원;하선화;조강진;김은주;이민경;유재주;김종국;이신우
    • Journal of Plant Biotechnology
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    • 제32권3호
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    • pp.167-173
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    • 2005
  • 본 연구는 고추열매의 capsaicinoid 생합성 조절 기작을 연구하고자 general phenylpropanoid pathway의 2번째 단계에 작용하는 것으로 알려진 3종류의 c4h cDNA clone을 확보하여 염기서열을 분석한 결과, pc4h1와 pc4h2의 크기는 각각 1,775 bp와 1,655 bp으로 505개의 아미노산으로 구성된 펩티드를 암호하는 full length의 ORF를 갖추고 있었으나 pc4h3는 5'-말단의 coding 영역 일부가 소실 되었다. 이들은 공히 모든 cytochrome P450 효소에서 진화학적으로 보존되어 있는 3종류의 conserved region 즉 domain 1(proline-rich region), domain 2 (threonine-containing binding pocket for the oxygen molecule), 그리고domain 3(heme binding region)을 포함하고 있었으며 evolutionary tree분석을 통하여 pc4h1와 pc4h2는 모두 Class I에 속하는 것으로 서로 간에는 95.8%의 유사성을 나타내어 거의 동일한 유전자인 것으로 조사되었다. 특히 Class II로 분류된 Citrus sinensis C4H1과 Phaseolus vulgaris C4H와는 단지 64.9에서 64.5%의 homology를 나타내었다. 또한 pc4h2는 상처를 주지 않은 조직에서는 비교적 적은 양의 mRNA 발현수준을 보였으나 상처를 가한 후 6시간의 열매에서는 400%, 뿌리에서는 200%까지 그 발현 양이 증가하였다. 이와 유사하게 pc4h1의 전사량도 상처에 의하여 유도는 되나 basal level이 pc4h2보다 높아서 발현증가 비율은 그다지 높지 않았다. 반면에 pc4h3 유전자는 상처를 주지 않은 모든 조직에서 거의 발현되지 않았으며 상처에 의하여서도 전혀 반응을 하지 않았다.

General Primer를 이용한 무균성뇌막염 원인 바이러스 분석 (General Primer-Mediated PCR Detection of Enteroviruses Causing Aseptic Meningitis)

  • 김문보;김기순;배유병;송철용;윤재득;이광호;신학균
    • 대한바이러스학회지
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    • 제26권2호
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    • pp.215-225
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    • 1996
  • Aseptic meningits, an acute inflammation of the meninges, is a common illness during childhood. Virus is the most important cause of aseptic meningitis. Especially enterovirus causes approximately above 85% of all cases of aseptic meningitis. In 1993, there was a big epidemic of aseptic meningitis by ECHO 9 and ECHO 30 viruses. And ECHO 3 virus was isolated as a causative agent of aseptic meningitis in 1994. This study was aimed to detect the causative agent of aseptic meningitis in 1995 and to analyze the 5'-noncoding region which was used to detect virus. Virus was isolated from 87 stools and cerebrospinal fluid specimens of the patients by cultured RD and HEp-2 cell. Neutralizing antibody tests using enterovirus serum pool were performed on the specimens with cytopathic effect. 3 of ECHO 7 viruses and 5 of Coxsackie B3 viruses were isolated from stool specimens and 1 of ECHO 7 and Coxsackie B3 mixed type was confirmed from cerebrospinal fluid specimens. RNA was isolated from the culture supernatants of infected cells and general primers were selected in highly conserved part of the 5'-noncoding region of the enteroviral genome for RT-PCR. PCR product from this virus showed a 152bp band on gel electrophoresis. Sequence of obtained DNA was compared with prototype sequences by accessing to the Genebank database. 5'-noncoding region of isolated Coxsackie B3 virus, which has point mutations in nucleotide sequence positions 493, 497, 502, 523, was closely related to that of polio virus type 1, Mahoney strain. In case of isolated ECHO 7 virus, nucleotide has been changed from cytosine to thymine at position 581 and from thymine to cytosine at position 583. We concluded the causative agents of the outbreak of aseptic meningitis during June to July in 1995 were both ECHO 7 and Coxsackie B3 virus, and the primer used in this study could allow a rapid diagnosis of enteroviruses by PCR.

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Single Stranded Conformation Polymorphism 분석에 의한 돼지 Duroc 품종의 미토콘드리아 DNA 유전적 변이 (Genetic Variation of Mitochondrial DNA in Duroc (Sus Scrofa) Using Single Stranded Conformation Polymorphism Analysis)

  • 조인철;정용환;정진관;성필남;김병우;이정규;전진태
    • Journal of Animal Science and Technology
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    • 제45권6호
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    • pp.911-916
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    • 2003
  • 돼지 Duroc 품종의 mitochondria DNA D-loop전체 유전자를 증폭하기 위하여 많은 동물에서 고도로 상동성이 높은 tRNA-Pro와 tRNA-Phe 염기서열 일부를 이용하여 oligonucleotide primer를 제작하였다. 그 결과 Duroc 품종의 D-loop 전체 유전자는 1,145 base pairs 였으며, 그 중간위치에 10bp의 Sus Scrofa-specific sequence (TACACGTGCG)가 10개 존재하고 있었다. 돌연변이 검출을 위하여 가장 변이가 심한 지역을 primer 제작하여 345 bp의 DNA 단편을 증폭하였으며, Single Stranded Conformation Polymorphism(SSCP) 분석은 8% polyacrylamide gel에서 200 V, 16시간 전기영동하여 ethidium bromide (EtBr)로 10분간 염색하여 UV image analyzer로 관찰하였다. 그 결과 두 개의 서로 다른 밴드유형을 관찰하였으며, 21개 부위에서 염기서열 변이가 관찰되었다. 이러한 결과는 유전적 다양성 변이를 검출하는데 SSCP 분석이 유용한 도구라고 사료된다.

Comparative Genomic Analysis Reveals That the 20K and 38K Prophages in Listeria monocytogenes Serovar 4a Strains Lm850658 and M7 Contribute to Genetic Diversity but Not to Virulence

  • Fang, Chun;Cao, Tong;Shan, Ying;Xia, Ye;Xin, Yongping;Cheng, Changyong;Song, Houhui;Bowman, John;Li, Xiaoliang;Zhou, Xiangyang;Fang, Weihuan
    • Journal of Microbiology and Biotechnology
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    • 제26권1호
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    • pp.197-206
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    • 2016
  • Listeria monocytogenes is a foodborne pathogen of considerable genetic diversity with varying pathogenicity. Initially, we found that the strain M7 was far less pathogenic than the strain Lm850658 though both are serovar 4a strains belonging to the lineage III. Comparative genomic approaches were then attempted to decipher the genetic basis that might govern the strain-dependent pathotypes. There are 2,761 coding sequences of 100% nucleotide identity between the two strains, accounting for 95.7% of the total genes in Lm850658 and 92.7% in M7. Lm850658 contains 33 specific genes, including a novel 20K prophage whereas strain M7 has 130 specific genes, including two large prophages (38K and 44K). To examine the roles of these specific prophages in pathogenicity, the 20K and 38K prophages were deleted from their respective strains. There were virtually no differences of pathogenicity between the deletion mutants and their parent strains, although some putative virulent factors like VirB4 are present in the 20K region or holin-lysin in the 38K region. In silico PCR analysis of 29 listeria genomes show that only strain SLCC2540 has the same 18 bp integration hotspot as Lm850658, whereas the sequence identity of their 20K prophages is very low (21.3%). The 38K and 44K prophages are located in two other different hotspots and are conserved in low virulent strains M7, HCC23, and L99. In conclusion, the 20K and 38K prophages of L. monocytogenes serovar 4a strains Lm850658 and M7 are not related to virulence but contribute to genetic diversity.

Cloning and Expression of FSHb Gene and the Effect of $FSH{\beta}$ on the mRNA Levels of FSHR in the Local Chicken

  • Zhao, L.H.;Chen, J.L.;Xu, H.;Liu, J.W.;Xu, Ri Fu
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권3호
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    • pp.292-301
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    • 2010
  • Follicle-stimulating hormone (FSH) is a pituitary glycoprotein hormone that is encoded by separate alpha- and betasubunit genes. It plays a key role in stimulating and regulating ovarian follicular development and egg production in chicken. FSH signal transduction is mediated by the FSH receptor (FSHR) that exclusively interacts with the beta-subunit of FSH, but characterization of prokaryotic expression of the FSHb gene and its effect on the expression of the FSHR gene in local chickens have received very little attention. In the current study, the cDNA fragment of the FSHb gene from Dagu chicken was amplified using reverse transcription polymerase chain reaction (RT-PCR), and inserted into the pET-28a (+) vector to construct the pET-28a-FSHb plasmid. After expression of the plasmid in E. coli BL21 (DE3) under inducing conditions, the recombination protein, $FSH{\beta}$ subunit, was purified and injected into the experimental hens and the effect on the mRNA expression levels of the FSHR gene was investigated. Sequence comparison showed that the coding region of the FSHb gene in the local chicken shared 99%-100% homology to published nucleotides in chickens; only one synonymous nucleotide substitution was detected in the region. The encoded amino acids were completely identical with the reported sequence, which confirmed that the sequences of the chicken FSHb gene and the peptides of the $FSH{\beta}$ subunit are highly conserved. This may be due to the critical role of the normal function of the FSHb gene in hormonal specificity and regulation of reproduction. The results of gene expression revealed that a recombinant protein with a molecular weight of about 19 kDa was efficiently expressed and it was identified by Western blotting analysis. After administration of the purified $FSH{\beta}$ protein, significantly higher expression levels were demonstrated in uterus, ovary and oviduct samples (p<0.05). These observations suggested that the expressed $FSH{\beta}$ protein possesses biological activity, and has a potential role in regulation of reproductive physiology in chickens.

Random peptide library를 이용한 C형 간염바이러스 E2 단백질 세포막 수용체의 peptide mimotope 규명 (Definition of the peptide mimotope of cellular receptor for hepatitis C virus E2 protein using random peptide library)

  • 이인희;백재은;설상영;석대현;박세광;최인학
    • IMMUNE NETWORK
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    • 제1권1호
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    • pp.77-86
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    • 2001
  • Background: Hepatitis C virus(HCV), a family of Flaviviridae, has a host cell-derived envelope containing a positive-stranded RNA genome, and has been known as the maj or etiological agent for chronic hepatitis, hepatic cirrhosis, and hepatocellular carcinoma. There remains a need to dissect a molecular mechanism of pathogenesis for the development of therapeutic and effective preventive measure for HCV. Identification of cellular receptor is of central importance not only to understand the viral pathogenesis, but also to exploit strategies for prevention of HCV. This study was aimed at identifying peptide mimotopes inhibiting the binding of E2 protein of HCV to MOLT-4 cell. Methods: In this study, phage peptide library displaying a random peptides consisting of 7 or 12 random peptides was employed in order to pan against E2 protein. Free HCV particles were separated from the immune complex forms by immunoprecipitation using anti-human IgG antibody, and used for HCV-capture ELISA. To identify the peptides inhibiting E2-binding to MOLT-4 cells, E2 protein was subj ect to bind to MOLT-4 cells under the competition with phage peptides. Results: Several phage peptides were selected for their specific binding to E2 protein, which showed the conserved sequence of SHFWRAP from 3 different peptide sequences. They were also able to recognize the HCV particles in the sera of HCV patients captured by monoclonal antibody against E2 protein. Two of them, showing peptide sequence of HLGPWMSHWFQR and WAPPLERSSLFY respectively, were revealed to inhibit the binding of E2 protein to MOLT-4 cell efficiently in dose dependent mode. However, few membrane-associated receptor candidates were seen using Fasta3 programe for homology search with these peptides. Conclusion: Phage peptides containing HLGPWMSHWFQR and WAPPLERSSLFY respectively, showed the inhibition of E2-binding to MOLT-4 cells. However, they did not reveal any homologues to cellular receptors from GenBank database. In further study, cellular receptor could be identified through the screening of cDNA library from MOLT-4 or hepatocytes using antibodies against these peptide mimotopes.

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Cytochrome c oxidase subunit 1과 RAPD 분석에 의한 한국 전복속의 계통 연구 (Phylogenetic Study of Genus Haliotis in Korea by Cytochrome c Oxidase Subunit 1 and RAPD Analysis)

  • 서용배;강성철;최성석;이종규;정태혁;임한규;김군도
    • 생명과학회지
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    • 제26권4호
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    • pp.406-413
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    • 2016
  • 전복은 전복속(Haliotis)에 속하며 전 세계적으로 식품산업에서 중요한 복족류 연체동물이다. 우리나라에는 6개종; 북방전복(Haliotis discus hannai), 둥근전복(Haliotis discus discus), 왕전복(Haliotis madaka), 말전복(Haliotis gigantea), 오분자기(Haliotis diversicolor diversicolor), 마대오분자기(Haliotis diversicolor supertexta)가 보고되어 있다. 이 연구에서는 우리나라 해역에 서식하는 중ㆍ대형 전복과 4종인 북방전복, 둥근전복, 왕전복, 말전복의 유전학적 유연관계를 분석하기 위하여 미토콘드리아의 cytochrome c oxidase subunit I (COI) 유전자와 Random Amplified Polymorphic DNA (RAPD) 분석법을 실시 하였다. 본 연구의 결과 COI 유전자 분석과 RAPD 분석을 활용하면 4종의 전복 중 북방전복, 둥근전복, 왕전복을 한 그룹으로 나머지 한 그룹을 말전복으로 구분하는 종 분류는 명확히 구분할 수 있었다. 이러한 결과는 전복 교잡육종을 이용한 수출용 전복 신종자 개발에 있어 주요 대상종인 전복과 4종에 대한 유전적 근연 관계를 규정함으로써 향후 교잡육종 연구의 기초 자료를 제공할 수 있을 것으로 사료된다.

한국에서 분리된 전염성 조혈괴저바이러스의 M 단백질의 유전자 클로닝과 염기서열 분석 (Cloning and Nucleotide Sequence Analysis of the M Protein of a Korean Isolate of Infectious Hematopoietic Necrosis Virus)

  • 박정민;김현주;문창훈;조화자;차승주;윤원준;박정재;이은희;박명애;손상규;박정우
    • 미생물학회지
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    • 제34권1_2호
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    • pp.64-68
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    • 1998
  • 한국에서 분리된 전염성 조혈괴저바이러스(infectious hematopoietic necrosis virus, IHNV)인 IHNV-PRT의 특성을 규명하기 위하여 IHNV-PRT의 matrix 단백질인 M1 및 M2를 암호화하고 있는 cDNA를 클로닝하여 이들의 염기서열을 분석하였다. M1은 693 bp 크기의 open reading frame을 포함하였으며 이로부터 230개의 아미노산으로 구성된 25.9 kDa의 분자량을 가진 단백질이 합성될 수 있다. M2는 588 bp 크기의 open reading frame을 지니고 있으며 195개의 아미노산으로 구성된 21.9 kDa의 분자량을 지닌 단백질이 합성될 수 있다. IHNV-PRT의 M1과 M2의 아미노산 서열을 외국에서 분리된 IHNV들과 비교 분석한 결과 M1은 92-93%, M2는 97%의 상동성을 보였다. 이러한 사실은 IHNV의 M 단백질 유전자들은 IHNV의 strain에 관계없이 매우 보존되어 있음을 나타내준다.

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두족류의 진위 판별을 위한 Real-time Quantitative PCR 검사법 개발 및 검증 (Development and Validation of Quick and Accurate Cephalopods Grouping System in Fishery Products by Real-time Quantitative PCR Based on Mitochondrial DNA)

  • 정인영;서용배;양지영;권기성;김군도
    • 한국식품위생안전성학회지
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    • 제33권4호
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    • pp.280-288
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    • 2018
  • 본 연구는 국내에서 생산되거나 해외에서 수입되어 국내에서 유통되는 수산물 중에서 두족류를 문어류, 낙지류, 오징어류, 주꾸미류, 꼴뚜기류의 5개 그룹으로 구분하여 분석하였다. 두족류 5개 그룹을 판별을 하기 위해 미토콘드리아에 존재하는 유전자를 분석하였고, 그 중에서 COI (mitochondrial cytochrome C oxidase subunit I), 16s rRNA (16s ribosomal RNA), 12s rRNA (12s ribosomal RNA) 내에서 상당히 유사한 DNA 서열 부분과 일부 서열 변화 부분이 확인되었다. 명확하게 두족류 5개 그룹 판별을 하기 위해 COI, 16s rRNA, 12s rRNA 유전자의 일부 서열 변화 부분에서 그룹 특이적 프라이머 세트를 디자인하였다. 국내 외에서 확보한 두족류 시료(참문어, 낙지, 살오징어, 아메리카 대왕오징어, 갑오징어, 주꾸미, 모래주꾸미, 하이야주꾸미, 참꼴뚜기, 창꼴뚜기, 한치꼴뚜기)의 genomic DNA을 추출하여 각 그룹의 특이적 프라이머를 이용하여 SYBR 기반의 real-time PCR 시스템에 의해 분석되었고, threshold cycle (Ct) value와 같은 real-time PCR 결과 분석에 의해 두족류 내 그룹 판별이 가능하였다(Table 3).