• Title/Summary/Keyword: 종 판별

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Development of molecular markers for the differentiation of Angelica gigas Jiri line by using ARMS-PCR analysis (세발당귀(Angelica gigas Jiri)의 판별을 위한 ARMS-PCR용 분자표지 개발)

  • Lee, Shin-Woo;Lee, Soo Jin;Han, Eun-Hee;Shin, Yong-Wook;Kim, Yun-Hee
    • Journal of Plant Biotechnology
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    • v.48 no.1
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    • pp.26-33
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    • 2021
  • Angelica is a widely used medicinal and perennial plant. Information on the genetic diversity of Angelica populations is essential for their conservation and germ plasmic utilization. Although Angelica is an important medicinal plant species registered in South Korea, no molecular markers are currently available to distinguish it from other similar species from different countries. This developed single nucleotide polymorphism (SNP) markers derived from nuclear ribosomal DNA internal transcribed spacer regions genomic sequences to identify distinct Korean-specific Angelica species via amplification refractory mutation system (ARMS)-PCR curve analyses. We performed molecular authentication of different kinds of Korean-specific Angelica species such as A. gigas Nakai and A. gigas Jiri using DNA sequences in the ITS intergenic region. The SNP markers developed in this study are useful for rapidly identifying specific Angelica species from different countr.

Development of Raw Material Identification Method of Changnan-jeot and Gaiyang-jeot Using Multiplex PCR and Real-Time PCR (Multiplex PCR과 Real-Time PCR을 이용한 창난젓과 가이양젓 원료 검사법 개발)

  • Choi, Seong Seok;Seo, Yong Bae;Kim, Jong-Oh;Yang, Ji-Young;Shin, Jiyoung;Kim, Gun-Do
    • Journal of Food Hygiene and Safety
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    • v.36 no.4
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    • pp.289-297
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    • 2021
  • In this study, multiplex PCR and real-time PCR were performed on Theragra chalcogramma (walleye pollock), Pangasianodon hypophthalmus (iridescent shark) and their processed foods, such as changnan-jeot and gaiyang-jeot (salted iridescent shark intestine). Species-specific primers for T. chalcogramma and P. hypophthalmus were designed, and genomic DNA was directly extracted from each sample to perform single PCR and multiplex PCR. As a result of PCR, in the case of single PCR, PCR bands of T. chalcogramma (297 bp) and P. hypophthalmus (132 bp) were identified, and in the case of multiplex PCR, it was confirmed that amplification occurred without cross-reaction between T. chalcogramma and P. hypophthalmus. As a result of checking the PCR sensitivity, the concentration of genomic DNA was detected up to 0.1 ng/µL in both single PCR and multiplex PCR. The real-time PCR results showed that the average Ct value of T. chalcogramma was 20.765±0.691, and the average Ct value of P. hypophthalmus sample was 35.719±1.828 in the T. chalcogramma species-specific primers. In the P. hypophthalmus species-specific primers, the average Ct value of the T. chalcogramma sample was 35.996±1.423, and the mean Ct value of the P. hypophthalmus sample was 20.096±0.793. These results demonstrated the significant differences in the efficiency, specificity and cross-reactivity of species-specific primers in real-time PCR. Based on these findings, 7 of changnan-jeot or gaiyang-jeot products were confirmed by multiplex PCR and real-time PCR, and valid results were confirmed in all samples.

Development of Species-Specific PCR to Determine the Animal Raw Material (종 특이 프라이머를 이용한 동물성 식품원료의 진위 판별법 개발)

  • Kim, Kyu-Heon;Lee, Ho-Yeon;Kim, Yong-Sang;Kim, Mi-Ra;Jung, Yoo Kyung;Lee, Jae-Hwang;Chang, Hye-Sook;Park, Yong-Chjun;Kim, Sang Yub;Choi, Jang Duck;Jang, Young-Mi
    • Journal of Food Hygiene and Safety
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    • v.29 no.4
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    • pp.347-355
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    • 2014
  • In this study, the detection method was developed using molecular biological technique to distinguish authenticity of animal raw materials. The genes for distinction of species about animals targeted at Cytochrome c oxidase subunit I (COI), Cytochrome b (Cytb), and 16S ribosomal RNA (16S rRNA) genes in mitochondrial DNA. The species-specific primers were designed by that Polymerase Chain Reaction (PCR) product size was around 200 bp for applying to processed products. The target 24 raw materials were 2 species of domestic animals, 6 species of poultry, 2 species of freshwater fishes, 13 species of marine fishes and 1 species of crustaceans. The results of PCR for Rabbit, Fox, Pheasant, Domestic Pigeon, Rufous Turtle Dove, Quail, Tree Sparrow, Barn Swallow, Catfish, Mandarin Fish, Flying Fish, Mallotus villosus, Pacific Herring, Sand Lance, Japanese Anchovy, Small Yellow Croaker, Halibut, Jacopever, Skate Ray, Ray, File Fish, Sea Bass, Sea Urchin, and Lobster raw materials were confirmed 113 bp ~ 218 bp, respectively. Also, non-specific PCR products were not detected in compare species by species-specific primers. The method using primers developed in this study may be applied to distinguish an authenticity of food materials included animal raw materials for various processed products.

Monitoring of Raw Materials for Commercial Home Meal Replacement Products Using DNA Barcode Information (DNA 바코드를 이용한 가정간편식 제품의 원재료 모니터링 연구)

  • Yu, Yeon-Cheol;Hong, Yewon;Kim, Jung Ju;Lee, Dong Ho;Kim, Hyung Soo;Moon, Guiim;Park, Eun Mi
    • Journal of Food Hygiene and Safety
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    • v.35 no.3
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    • pp.234-242
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    • 2020
  • In this study, we monitored the raw materials in home-meal replacement (HMR) products, which have shown more than 63% growth in market size for two years. A total of 89 HMR products were purchased and the DNA barcodes of 112 raw materials in the product samples were analyzed. In order to identify the raw material species, a primer set specific for the 16S ribosomal RNA region of each raw material species was amplified. The amplicon was purified and sequenced, and then used to perform a BLAST search provided by the National Institutes of Health (NIH). The species of the raw material was determined by comparing the nucleotide sequences of the species registered in GenBank with identity and match score. Twenty-four species and three genera were identified from 112 raw materials. Three genera were identified at the genus level because a large number of species belonging to the same genus exist within 98% of the identity criteria. The results of the determination were compared with the available raw materials suggested in the Korea Food Code to determine the Korean name and availability of the foods. Six non-listed species were determined to be edible according to information provided by influential domestic and foreign organizations.

Genetic Variability of mtDNA D-loop Region in Korean Native Chickens

  • Hoque, Md. Rashedul;Jung, Kie-Chul;Park, Byung-Kwon;Choi, Kang-Duk;Lee, Jun-Heon
    • Korean Journal of Poultry Science
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    • v.36 no.4
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    • pp.323-328
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    • 2009
  • In order to determine the origin and genetic diversity among chicken breeds, mitochondrial (mt) DNA D-loop sequences have been widely used. In this study, 41 individuals from four breeds (Korean native chicken (Black and Brown) and two imported breeds, Rhode Island Red and Cornish) were used for identifying genetic relationships with other chicken breeds. We obtained ten haplotypes and the highest number of haplotype was represented by eight individuals each from haplotype 1 and haplotype 2. Neighbor-joining phylogenetic tree indicates that the black and brown Korean native chicken breeds were mixed in haplotype 2 and they were closely related with the red jungle fowl (Gallus gallus). We also investigated whether the D-loop hypervariable region in chicken mtDNA can be used for the breed identification marker. The results indicated that the combination of the SNPs in the D-loop region can be possibly used for the breed discriminating markers. The results obtained in this study can be used for designing proper breeding and conservation strategies for Korean native chicken, as well as development of breed identification markers.

Analysis of Genetic Polymorphisms and Similarity Using Random Amplified Polymorphic DNAs in Cattle (RAPD기법을 이용한 축우의 유전적 다형성과 유사도 분석)

  • Lee, S.H.;Seo, K.W.;Kwon, I.;Sung, C.K.;Kim, S.K.;Sang, B.C.
    • Korean Journal of Agricultural Science
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    • v.26 no.2
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    • pp.39-48
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    • 1999
  • This study was carried out to investigate the difference and genetic similarity at the level of molecular genetics. Genomic DNA was extracted from blood of Holstein, Korean cattle, Charolais, and hybrid between Korean cattle and charolais and RAPD(random amplified polymorphic DNAs) was analyzed by PCR(polymerase chain reaction). After genetic similarity value from different breeds are analyzed, genetic similarity was estimated by UPGMA(unweighted pair-group method using average). The results obtained from this study can be summarized as follows: 1. When genomic DNA which was extracted from different breeds was subjected to electrophoresis on 1.5% agarose gel, bigger than 12.2kb was appeared. Ratio by absorbance of $A_{260}/A_{280}$ was 1.75~2.10, indicating that genomic DNA was quite pure for RAPD analysis. 2. Different band patterns by RAPD were appeared according to the breeds in cattle. The best primer used to distinguish Holstein from other breeds was 5'-GAC CGC TTG T-3'. 3. A 340bp fragment was amplified in $33.0^{\circ}C$ of annealing temperature for the Holstein and Charolais breeds, but any amplification was not occurred in this annealing temperature for Korean cattle and hybrid. In addition, a 340bp fragment was amplified in $37.5^{\circ}C$ of annealing temperature for the Holstein and Korean cattle, but any amplification was not occurred in this annealing temperature for Charolais and hybrid. For the reaction of PCR. $37.5^{\circ}C$ and $33.0^{\circ}C$ of annealing temperature was shown to be best for genetic marker identification from Holstein, Charolais, and hybrid between Korean cattle and Charolais. 4. When genetic similarity from different breeds are analyzed at the both temperature of $33.0^{\circ}C$ and $37.5^{\circ}C$, the genetic similarity value of Holstein and Korean cattle, Holstein and Charolais, Korean cattle and Charolais, and Korean cattle and hybrid were 0.666~0.777, 0.615~0.666, 0.400~0.461 and 0.857~0.888, respectively. 5. It could be concluded that different breeds are capable of distinguishing by RAPD used random primer 5'-GAC CGC TTG T-3', genetic similarity from different breeds was appeared the higher genetic similarity value of Korean cattle and Charolais than that of Holstein between Korean cattle and Charolais by UPGMA.

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모색발현 유전자의 DNA Marker를 이용한 쇠고기 품종 판별

  • Sin, Seong-Cheol;Chae, Ji-Seon;Kim, Hye-Jeong;Choe, Eun-Ju;Kim, Hui-Seon;Kim, Hyeon-Seok;Jeong, Ui-Ryong;Jeong, Gu-Yong
    • Proceedings of the Korean Society for Food Science of Animal Resources Conference
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    • 2004.05a
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    • pp.172-176
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    • 2004
  • 본 연구는 축우의 모색발현을 조절하는 MCIR, MGF 및 TYRP1 3종류의 모색 유전자를 이용하여 한우육 판별기술을 개발하고자 PCR-RFLP 기법으로 이들 모색유전자 좌위의 대립유전자를 검출하고 각 품종 간 RFLP 유전자형 출현빈도를 비교 분석하였다. MCIR 유전자의 RFLP 유전자형 출현빈도에서 한우는 e/e과 E+/e형이 출현되었고 이외의 다른 유전자형의 출현은 전혀 인정되지 않았다. 그러나, Holstein종 젖소는 $E^D/E^D$$E^D/e$ 2종류의 유전자형 그리고 Angus종에서는 $E^D/E^D$, $E^D/E^++$$E^D/e$ 3종류의 유전자형이 각각 출현하여 한우와 이들 두 품종간의 MCIR유전자형 출현빈도에 뚜렷한 차이가 인정되었다. MGF 유전자의 RFLP 유전자형 출현빈도에서 한우는 R/r과 r/r형이 각각 25%와 75%로 rr형의 출현율이 비교적 높았으며 Holstein종과 Angus 종은 R/r형이 100% 출현했으며, Charolais 종은 rr형이 100% 출현하였고 이외의 다른 유전자형은 인정되지 않았으며 Hereford종은 RR형이 80% 그리고 R/r형이 20%의 출현율을 보여 RR형의 출현율이 매우 높아 한우와 Holstein 및 육우 품종간의 MGF 유전자형 출현빈도에 명백한 차이가 인정되었다. 따라서, 소 모색관련 MCIR과 MGF 유전자의 품종 특이적 PCR-RFLP 유전자형은 한우육과 국내산 Hostein 젖소육 및 도입육우 품종을 식별하는데 매우 유용한 DNA marker로 이용될 수 있음이 확인되었다.

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The Geographical Discrimination of Korean and Chinese Soybeans (Glycine max(L.) merrill) Using NMR Relaxation Methods (NMR relaxation 기법을 이용한 한국산과 중국산 대두의 원산지 판별)

  • Kim, Mi-Hyun;Rho, Jeong-Hae;Lee, Cherl-Ho
    • Korean Journal of Food Science and Technology
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    • v.41 no.3
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    • pp.292-295
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    • 2009
  • To discriminate the geographical origin (Korea vs. China) of soybean (Glycine max(L.) merrill) samples (Korean samples n=25, Chinese samples n=24), proximate composition of soybeans and relaxation times were analyzed using low field NMR. Composition results indicate that there are no significant differences in moisture, fat, or ash contents between soybeans. The crude protein content of Korean soybeans, however, was higher than that of Chinese soybeans (p<0.05). The relaxation times of T1-IR (p<0.0001), T1-SR (p<0.0001), and T2-SE (p<0.0086) in Korean soybeans were longer than those in Chinese soybeans. The geographical origin of soybeans could be identified using a canonical discriminant analysis using two relaxation times (T1-IR and T1-SR) with 96% accuracy. Furthermore, in this study, a canonical discriminant analysis using four relaxation times (T1-IR, T1-SR, T2-SE, and T2-CPMG) could discriminate the geographical origin with 100% accuracy. It was possible to identify the geographical origin of Korean and Chinese soybeans using relaxation times from 10 MHz NMR.

Development of Detection Method for Oilfish (Ruvettus pretiosus and Lepidocybirium flavobrunneum) as a Food Materials not Usable in Foods (식품원료로 사용금지 대상인 기름치 (기름갈치꼬치 및 흑갈치꼬치) 판별법 개발)

  • Park, Yong-Chjun;Kim, Mi-Ra;Jung, Yong-Hyun;Shin, Joon-Ho;Kim, Kyu-Heon;Lee, Jae-Hwang;Cho, Tae-Yong;Lee, Hwa-Jung;Lee, Sang-Jae;Han, Sang-Bae
    • Journal of Food Hygiene and Safety
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    • v.28 no.1
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    • pp.50-55
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    • 2013
  • Since 1 June 2012, it is prohibited to sell oilfish as a food material but there are still many illegal cases of selling oilfish as if it is tuna or grilled Patagonian toothfish. So it is absolutely crucial to construct the system to distinguish the real food material from oilfish. There are two sorts of oil fish called Ruvettus pretiosus and Lepidocybirium flavobrunneum involved in Percifomes order and Gempylidae class. 16S DNA gene region in mitochondria was selected to design the specific primers. For design species-specific primer, the theoretical experiment were performed for the sequences of R. pretiosus, L. flavobrunneum, Thunnus thynnus, Thunnus albacores, Makaira mitsukurii and Xiphias gladius, registered at the Gene bank from the National Centre for Biotechnology Information, using BioEdit 7.0.9.0. program. Through the analysis of the result from experiments, it was possible to design the 4 kinds of primers to distinguish R. pretiosus and L. flavobrunneum. As a comparison group, 3 kinds of tuna and 4 kinds of billfishes were selected and experimental verification was performed. As a result, for R. pretiosus and L. flavobrunneum, R.P-16S-006-F/R.P-16S-008-R and L.F-16S-004-F/L.F-16S-006-R primers were selected eventually and PCR condition was established. In addition, 178bp and 238bp of PCR products were confirmed from the established condition and non-specific band was not amplified among similar species. Therefore, the species-specific primers developed in this study would be very useful and used in various ways such as internet shopping mall and illegal distributions with fast and scientific results.

Detection and Differentiation of Intentional and Unintentional Mixture in Raw Meats Using Real-time PCR (Real-time PCR을 이용한 식육원료의 의도적, 비의도적 혼입 판별법 개발)

  • Kim, Kyu-Heon;Kim, Mi-Ra;Park, Young-Eun;Kim, Yong-Sang;Lee, Ho-Yeon;Park, Yong-Chjun;Kim, Sang Yub;Choi, Jang Duck;Jang, Young-Mi
    • Journal of Food Hygiene and Safety
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    • v.29 no.4
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    • pp.340-346
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    • 2014
  • In this study, the detection method was developed using real-time PCR to distinguish 4 species (bovine, porcine, horse, and chicken) of raw meats. The genes for distinction of species about meats targeted at 12S rRNA and 16S rRNA parts in mitochondrial DNA. Probes were designed to have a 5' FAM and a TAMRA at the 3' end. This study is to develop 4 species-specific primer and probes about raw materials and real-time PCR on 10 strains to observe the products of non-specific signal for similar species. As a result, any non-specific signal were not detected among each other. Real-time PCR method was developed for quantitation and identification of intentional and unintentional mixture in ground mixed meat (The difference of $C_T$ value between intentional mixture and 100% meat: $${\leq_-}$$ cycles, The difference of $C_T$ value between unintentional mixture and 100% meat: $${\geq_-}$$ cycles). The detection and differentiation of intentional and unintentional mixture in this study would be applied to food safety management for eradication of adulterated food distribution and protection of consumer's right.