• Title/Summary/Keyword: Jeju Black pig

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Salt poisoning in a Jeju native black sow (제주지역 재래흑돼지 모돈에서 발생한 소금중독증)

  • Yang, Hyoung-Seok;Kang, Sang-Chul;Kim, Jae-Beum;Kim, Jae-Hoon
    • Korean Journal of Veterinary Service
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    • v.35 no.1
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    • pp.59-62
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    • 2012
  • A 3-year-old Jeju native black sow with sudden death was requested to the Jeju Self-Governing Provincial Veterinary Research Institute for diagnosis in July 2009. Because the pig died suddenly, we could not find any clinical signs. Gross lesions such as pulmonary edema, redness of heart, liver, kidney and lymph nodes were observed at necropsy. Histopathologically, there were severe eosinophilic meningoencephalitis, atrophy, degeneration and necrosis of laminar neurons, and neovascularization in cerebral cortex. Based on histopathological findings and history taking about temporal suspension of water supply, this case was diagnosed as salt poisoning of a Jeju native sow. In our best knowledge, this is the first report for salt poisoning of sow in Korea, especially in Jeju native pig.

Physical and Sensory Characteristics of Pork from Korean Native Black Pig and Crossbred Black Pig Reared in Jeju Island (제주도에서 사육한 재래 및 개량 흑돼지 고기의 물리적, 관능적 품질 특성)

  • Moon, Yoon-Hee
    • Journal of the East Asian Society of Dietary Life
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    • v.17 no.6
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    • pp.846-852
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    • 2007
  • The objective of this study was to compare the physical and sensory characteristics of pork from Korean native black pigs ($78{\pm}7kg$, female) to the pork of crossbred black pigs ($115{\pm}5kg$, female), both of which were reared for the same period on Jeju Island. The Korean native black pig showed a lower $L^*$ value (lightness) and higher $a^*$-(redness) and $b^*$-values (yellowness) than the crossbred black pig. There were no statistically meaningful differences between the two pigs' loins, hams and bellies of the two breeds of pig in terms of water holding capacity, thawing loss, cooking loss, myofibrillar protein extract, and fragmentation index. The crossbred black pigs showed greater significant differences among the physical characteristics of each part, as compared to the Korean native black pigs. The cooked meat of the Korean native black pig had superior hardness to that of the crossbred black pig, whereas the raw meat had a lower hardness, chewiness, and shear force value. Finally, there was no significant difference between the two pigs in terms of palatability.

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Comparison of Pork Quality and Muscle Fiber Characteristics between Jeju Black Pig and Domesticated Pig Breeds (제주 개량 흑돼지와 국내에 도입된 주요 돼지 품종의 육질 특성 및 근섬유 특성 비교)

  • Ko, Kyong Bo;Kim, Gap-Don;Kang, Dong-Geun;Kim, Yeong-Hwa;Yang, Ik-Dong;Ryu, Youn-Chul
    • Journal of Animal Science and Technology
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    • v.55 no.5
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    • pp.467-473
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    • 2013
  • This study compared the pork quality and muscle fiber characteristics between the Jeju black pig (JBP) and domesticated pig breeds, including three-way crossbred (Landrace ${\times}$ Yorkshire ${\times}$ Duroc, LYD), Berkshire (B), Duroc (D), Landrace (L), Meishan (M), and Yorkshire (Y) pigs. JBP had the lowest carcass weight among the pig breeds (p<0.05) and its NPPC marbling score was lower than the other domesticated pig breeds (p<0.05), except for M. M had the highest value for backfat thickness among the pig breeds (p<0.05), whereas its NPPC marbling score was the lowest (p<0.05). The pH values were higher in JBP and B at 45 min and 24 h postmortem, respectively, but LYD and M had the lowest pH values at 45 min and 24 h postmortem, respectively (p<0.05). M had a higher lightness and lower redness than the other breeds (p<0.05). Moreover, M had the highest drip loss among the pig breeds (p<0.05), whereas D had the lowest drip loss and the highest redness (p<0.05). In terms of muscle fiber characteristics, JBP and LYD had the largest type IIB fibers (p<0.05). The fiber number and area composition of type I fibers were higher in JBP than the others (p<0.05) however type IIA fibers were lowest in JBP among the pig breeds (p<0.05). Overall, our results indicate that JBP provided better pork quality compared with M, but the carcass trait and pork quality of JBP were not better than LYD and D, respectively.

Comparison of Fecal Microbial Communities between White and Black Pigs

  • Guevarra, Robin B.;Kim, Jungman;Nguyen, Son G.;Unno, Tatsuya
    • Journal of Applied Biological Chemistry
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    • v.58 no.4
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    • pp.369-375
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    • 2015
  • Meat from black pigs (BP) is in high demand compared with that from modern white pig (WP) breeds such as Landrace pigs owing to its high quality. However, the growth rate of black pigs is slower than that of white pig breeds. We investigated differences in the fecal microbial composition between white and black pigs to explore whether these breeds differed in the composition of their gut microbial communities. The swine gut microbiota was investigated using Illumina's MiSeq-based sequencing technology by targeting the V4 region of the 16S rRNA gene. Our results showed that the composition of the gut microbiota was significantly different between the two pig breeds. While the composition of the WP microbiota shifted according to the growth stage, fewer shifts in composition were observed for the BP gut microbiota. In addition, the WP gut microbiota showed a higher Firmicutes/Bacteroidetes ratio compared with that of BP. A high ratio between these phyla was previously reported as an obesity-linked microbiota composition. Moreover, the WP microbiota contained a significantly higher abundance of cellulolytic bacteria, suggesting a possibility of higher fiber digestion efficiency in WP compared to BP. These findings may be important factors affecting growth performance and energy-harvesting capacities in pigs. Our findings of differences in the gut microbiota composition between the two breeds may provide new leads to understand growth rate variation across pig breeds.

Genetic Traceability of Black Pig Meats Using Microsatellite Markers

  • Oh, Jae-Don;Song, Ki-Duk;Seo, Joo-Hee;Kim, Duk-Kyung;Kim, Sung-Hoon;Seo, Kang-Seok;Lim, Hyun-Tae;Lee, Jae-Bong;Park, Hwa-Chun;Ryu, Youn-Chul;Kang, Min-Soo;Cho, Seoae;Kim, Eui-Soo;Choe, Ho-Sung;Kong, Hong-Sik;Lee, Hak-Kyo
    • Asian-Australasian Journal of Animal Sciences
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    • v.27 no.7
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    • pp.926-931
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    • 2014
  • Pork from Jeju black pig (population J) and Berkshire (population B) has a unique market share in Korea because of their high meat quality. Due to the high demand of this pork, traceability of the pork to its origin is becoming an important part of the consumer demand. To examine the feasibility of such a system, we aim to provide basic genetic information of the two black pig populations and assess the possibility of genetically distinguishing between the two breeds. Muscle samples were collected from slaughter houses in Jeju Island and Namwon, Chonbuk province, Korea, for populations J and B, respectively. In total 800 Jeju black pigs and 351 Berkshires were genotyped at thirteen microsatellite (MS) markers. Analyses on the genetic diversity of the two populations were carried out in the programs MS toolkit and FSTAT. The population structure of the two breeds was determined by a Bayesian clustering method implemented in structure and by a phylogenetic analysis in Phylip. Population J exhibited higher mean number of alleles, expected heterozygosity and observed heterozygosity value, and polymorphism information content, compared to population B. The $F_{IS}$ values of population J and population B were 0.03 and -0.005, respectively, indicating that little or no inbreeding has occurred. In addition, genetic structure analysis revealed the possibility of gene flow from population B to population J. The expected probability of identify value of the 13 MS markers was $9.87{\times}10^{-14}$ in population J, $3.17{\times}10^{-9}$ in population B, and $1.03{\times}10^{-12}$ in the two populations. The results of this study are useful in distinguishing between the two black pig breeds and can be used as a foundation for further development of DNA markers.

Comparison of Live Performance and Meat Quality Parameter of Cross Bred (Korean Native Black Pig and Landrace) Pigs with Different Coat Colors

  • Hur, S.J.;Jeong, T.C.;Kim, G.D.;Jeong, J.Y.;Cho, I.C.;Lim, H.T.;Kim, B.W.;Joo, S.T.
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.7
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    • pp.1047-1053
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    • 2013
  • Five hundred and forty crossbred (Korean native black pig${\times}$Landrace) F2 were selected at a commercial pig farm and then divided into six different coat color groups: (A: Black, B: White, C: Red, D: White spot in black, E: Black spot in white, F: Black spot in red). Birth weight, 21st d weight, 140th d weight and carcass weight varied among the different coat color groups. D group (white spot in black coat) showed a significantly higher body weight at each weigh (birth weight, 140th d weight and carcass weight) than did the other groups, whereas the C group (red coat color) showed a significantly lower body weight at finishing stage (140th d weight and carcass weight) compared to other groups. Meat quality characteristics, shear force, cooking loss and meat color were not significantly different among the different coat color groups, whereas drip loss was significantly higher in F than in other groups. Most blood characteristics were not significantly different among the different groups, except for the red blood cells.

Detection of Novel Genetic Variations of the MG1R * 3 Allele in Pig(Sus scrofa) (돼지 Melanocortin Receptor 1(MC1R) 대립유전자 3의 신규 유전변이 탐색)

  • Cho, I.C.;Jeong, Y.H.;Jung, J.K.;Seong, P.N.;Oh, W.Y.;Ko, M.S.;Kim, B.W.;Lee, J.G.;Jeon, J.T.
    • Journal of Animal Science and Technology
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    • v.46 no.1
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    • pp.1-6
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    • 2004
  • This study was conducted to investigate novel genetic variations of MCIR^*3 allele. In general, white spotting or white belt on a black backgroud in pigs is determined by the E$^p$ allele at the MCIR/Extention locus. E$^p$ shares a frameshift mutation with the E$^{D2}$ allele for dominant black color. An oligonucleotide primer set was designed to amplify complete coding sequence of the porcine MCIR gene. The MCIR coding sequences obtained from five breeds those were Landrace(white). Yorkshire(white), Hampshire(belt), Berkshire(spot) and Jeju native black pigs(black), were used for this study. A multiple sequence alignment of the MCIR coding region using Clustal W was performed. The total length of the MCIR coding sequence ranged from 963 to 966 base pairs(bp) among the selected breeds. The sequence analysis of the complete coding region of MCIR was revealed that Hampshire and Jeju native black pig have 3 cytosines deletion and Birkshire has 2 cytosines deletion at codon 23(nt68) in Extention loci. Besides the finding, there were three different missense mutations and a frameshift mutation in the MCIR coding region.

Genome-wide scans for detecting the selection signature of the Jeju-island native pig in Korea

  • Lee, Young-Sup;Shin, Donghyun;Won, Kyeong-Hye;Kim, Dae Cheol;Lee, Sang Chul;Song, Ki-Duk
    • Asian-Australasian Journal of Animal Sciences
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    • v.33 no.4
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    • pp.539-546
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    • 2020
  • Objective: The Jeju native pig (JNP) found on the Jeju Island of Korea is a unique black pig known for high-quality meat. To investigate the genetic uniqueness of JNP, we analyzed the selection signature of the JNP in comparison to commercial pigs such as Berkshire and Yorkshire pigs. Methods: We surveyed the genetic diversity to identify the genetic stability of the JNP, using the linkage disequilibrium method. A selective sweep of the JNP was performed to identify the selection signatures. To do so, the population differentiation measure, Weir-Cockerham's Fst was utilized. This statistic directly measures the population differentiation at the variant level. Additionally, we investigated the gene ontologies (GOs) and genetic features. Results: Compared to the Berkshire and Yorkshire pigs, the JNP had lower genetic diversity in terms of linkage disequilibrium decays. We summarized the selection signatures of the JNP as GO. In the JNP and Berkshire pigs, the most enriched GO terms were epithelium development and neuron-related. Considering the JNP and Yorkshire pigs, cellular response to oxygen-containing compound and generation of neurons were the most enriched GO. Conclusion: The selection signatures of the JNP were identified through the population differentiation statistic. The genes with possible selection signatures are expected to play a role in JNP's unique pork quality.

A Design and Implementation of Genuine Quotation System of Black Pigs Using UHF RFID (UHF RFID를 활용한 흑돼지 진품인증시스템 설계 및 구현)

  • Ko, Seok-Yong;Kim, Hyu-Chan;Kim, Hyung-Soo
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.4 no.2
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    • pp.93-100
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    • 2008
  • After free trade, it is increasing to import crops, aquatic products, and livestock which are produce in a foreign land. But it is affect negatively to trust relationships and markets of Jeju's foods because of breaking it out that foreign productions exchange domestic. Therefore, this paper designed and implemented the Genuine Quotation system of Black pigs using UHF RFID. This system is developed for distinguishing spuriousness, then searching information of the product through EPC ONS in EPCIS to print within a screen. Moreover, this intuitional and efficient system is constructed by connecting various sensors and lights. It can be contributed income increase thorough the security for the quality authority of the agricultural & stockbreeding products with FCS, FCG Certificate and the genuine certificate of the black pig which is the one of most typical agricultural & stockbreeding products in the pure Green Province, Jeju.

Cutaneous melanocytic tumor in a slaughtered pig (도축돈에서 발생한 피부 멜라닌 세포성 종양)

  • Yang, Hyoung-Seok;Kang, Sang-Chul;Bae, Jong-Hee;Kim, Jae-Hoon
    • Korean Journal of Veterinary Research
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    • v.46 no.3
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    • pp.275-278
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    • 2006
  • A 7-month-old brown pig with a discoid and pedunculate mass measuring $14.0{\times}12.5{\times}2.5cm$ on the skin of the right shoulder was noted at the slaughter house in Jeju. The surface of mass approximately $7{\times}4cm$ was interfaced with skin. The color of mass with firm consistency was mainly black and partially white on cut surface. Histopathologically, numerous unencapsulated endocrine-like cellular nodules of epithelioid cell type with abundant intracytoplasmic black pigment, melanin, were occupied in dermis and subcutis. Most of nodules in deep dermis were surrounded by lightly pigmented spindle cells and loose fibrous tissues. Mitotic figures were infrequently observed. The overlying epidermis was hyperplastic due to the down-growth of rete peg. Based on the gross and histopathologic findings, this case was diagnosed as cutaneous melanoma. In our best knowledge, this is the first case of swine cutaneous melanoma in Korea.