• Title/Summary/Keyword: genetic constitutions

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A Study on Genetic Relationship between Sasang Constitutions by the Polymorphic Analysis of RAPD (RAPD 다형성 분석을 통한 사상체질간 유전적 상관관계에 관한 연구)

  • 이휘철;조동욱;조중호;서영우;이창수
    • The Journal of Korean Medicine
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    • v.20 no.4
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    • pp.62-68
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    • 2000
  • This study was carried out to establish genetic understanding of three Sasang constitutions of Taeumin, Soeumin and Soyangin by Random Amplified Polymorphic DNA(RAPD) analysis. We have applied RAPD analysis to pooled DNA sample as a means to achieve rapid screening of large numbers of primers for their capacity to reveal constitutions-specific polymorphisms. From an initial 440 primers, 13 polymorphic primers between different constitutions were selected. Bandsharing(BS) and mean average percentage difference(MAPD) calculated within and between three constitutions using RAPD fingerprint data showed a higher degree of homogenity within than between the constitutions and indicated measurable divergence between three constitutions. The RAPD bandsharing(BS) values ranged from 0.71 to 0.73 between the three constitutions. The interconstitution divergence was narrower between Taeumin and Soeumin, than between the other paired constitution comparisons. The genetic distance between the three constitutions was measured by BS values. Genetic distance by RAPD analysis was 0.007 between Taeumin and Soeumin, and 0.014 between Soyang and the others. In conclusion, the genetic distance of Teaumin and Soumin was closer than that of Soyangin in the analysis of RAPD by using 440 primers.

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Genetic Polymorphism of ADPRT Gene 3'UTR Region and Sasang Constitution (사상체질집단의 ADPRT gene 3'UTR region의 단일염기다형성 연구)

  • Lee, Sung-Jin;Song, Il-Byung;Lee, Su-Kyung
    • Journal of Sasang Constitution and Immune Medicine
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    • v.14 no.2
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    • pp.90-97
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    • 2002
  • Sasang Constitutional Medicine is based on the diversity of human being and medically developed the variation of response to diseases and medicines. The diversity is categorized as four groups Taeyangin, Taeumin, Soyangin, Soeumin according to morphology, physiology, pathology, and pharmacology. The phenotypes of Sasang constitutions represent that constitutions may be possessed of the different genetic backgrounds. To clarify the genetic difference among the Sasang constitutions, we performed a genetic analysis with the 3'-UTR polymorphism of ADPRT (rs=8679) as a pooled DNA sequencing method. ADPRT modulates various nuclear proteins by poly(ADP-ribosy)lation and is involved in the regulation of various cellular processes such as differentiation, proliferation, and tumor transformation. This gene is also involved in the recovery of cell from DNA damage and the brain infarction. The allele frequencies of [T/C] polymorphism of ADPRT of Soeumin and Soyangin groups were (T: 0.94/C: 0.06) and that of Taeumin and Taeyangin groups were (T: l.00/C: 0.00). The allele frequency was not showed the difference between constitution groups. This result represented that the [T/C] polymorphism of ADPRT 3' UTR region was not suitable to classify the constitutions. However, this study is the first trial of Sasang classification according to genetic polymorphism and further analysis will be necessarily to classify the genetic difference of Sasang constitution.

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Genetic analysis study of Sasang Constitution classification (사상의학의 객관화를 위한 유전적 분석 연구)

  • Cho, Dong-Wuk;Lee, Chang-Soo;Ko, Byung-Hee;Hong, Suck-Chull;Lee, Eui-Ju;Kwon, Gwen-Hyuck;Cho, Hwang-Sung
    • Korean Journal of Oriental Medicine
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    • v.2 no.1
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    • pp.402-406
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    • 1996
  • The main idea of Sasang medicine is that everyone has his own unique constitution. There are four kinds of constitutions and these are Taeyang, Soyang, Teaum and Soum. Although Sasang medicine is a unique and originative medical theory with creative ideas of Korean traditional medicine, the classification of individual constitution mainly depends on the methods which may not be objectively proven and scientifically understood. This study was carried out tn establish scientific understanding of Sasang medicine by investigating the possible genetic difference among four constitutions. Sasang constitution classification was performed by Sasang medicine research group in Korea Institute of Oriental Medicine and Kyung Hee University, Genomic DNA was prepared from the blood of individuals of different constitutions and RAPD(Random amplified polymorphic DNAs) analysis was then carried out to investigate the possible difference among different constitutions on DNA level. For RAPD analysis, ten different random primers were applied to Teaum, Soyang and Soum group DNA samples and the presence of DNA markers specific for each constitution was investigated.

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A Study on the Methodologies for the Classification of Sasang Constitution by Analysis of Genetic Polymorphism (유전자를 이용한 체질유형감별(體質類型鑑別)의 방법론(方法論)에 관한 고찰(考察))

  • Ha, Man-soo;Koh, Byung-hee;Song, Il-byung
    • Journal of Sasang Constitution and Immune Medicine
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    • v.11 no.2
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    • pp.185-194
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    • 1999
  • Recently some report has been published on the classification of Sasang constitution by analysis of genetic polymorphism. In this study, to present the ideas in the study on the classification of Sasang constitution based on the genetic variation of individuals, we reviewed the previous studies dealing with relationship between genetic polymorphism and Sasang constitution and suggested new molecular biological methodologies applicable to the classification of Sasang constitution. The results were as follow; 1. In the studies on the classification of constitution by analysis of genetic polymorphism, the special genes were desirable as subjects rather than the non-functional part of genome such as inter-gene and intron. Since microsatellite is usually located in inter-gene or intron, representation of constitutions may not associated with the polymorphism of certain microsatellite. 2. It may possible that polymorphism patterns of the genes related to the expression of individuality is associated with the types of Sasang constitutions. Therefore, angiotensin converting enzyme (ACE) which known have some role in the determination the human performance is one of the candidate genes can use for the classification of Sasang constitutions. 3. It is well known that HLA types are very variable in human and closely associated with the determination of susceptibility for certain disease. The studies on the polymorphism of HLA types may applicable to the classification of Sasang constitutions. 4. DNA chip technique which developed recently for the analysis of the expression of human genes may powerful tools in the study of Sasang medicine.

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Understanding of Sasang Constitutions using DNA chip Analysis (DNA chip을 이용한 사상체질의 연구)

  • 유호룡;임종순;김윤식;설인찬
    • The Journal of Korean Medicine
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    • v.25 no.1
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    • pp.72-84
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    • 2004
  • Objectives : he purpose of this study was to examine the genetic variations and changes of gene expression in the human constitutions. Methods : To analysis variations of individual gene expression, we had selected three groups of volunteers. In each group have a typical constitutional characteristics. By this rime we are analyzed their gene expression patterns by using DNA chip. Results : we can acquire a new information of standard for human constitutions. 1. The 21 genes under express and 3 genes over express in So-Yang constitution 2. The 18 genes under express and 18 genes over express in So-Eum constitution 3. The 16 genes under express and 2 genes over express in Tae-Eum constitution Conclusions : Constitution, QSCCII, Character, Genome, DNA chip.

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Genetic Analysis study of Sasang Constitution Classification by RFLP (RFLP법을 이용한 사상체질의 유전적 분석 연구)

  • Cho, Dong-Wuk;Cho, Hwang-Sung
    • Journal of The Association for Neo Medicine
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    • v.2 no.1
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    • pp.25-33
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    • 1997
  • In Sasang medicine, humen are classified into four constitutions which are Taeyang, Soyang. Taeum and Soum. Depending on each different constitution, the clinical and pharmacological application for the same disease might be different. In this study, genomic DNA of different constitutions(Taeum, Soyang and Soum) were analyzed by Restriction Fragment Length Polymorphism(RFLP) to provide scientific and objective references for Sasang classification. The DNA polymorphism for each constitution detected as differences in the length of DNA fragments, after digestion with restriction enzyme Hae III, was investigated using YNH24 as DNA probe. The allele size of Taeum, Soyang and Soum group detected by YNH24 ranged from 1.3 to 3.8 kb, 1.5 to 3.9 kb and 1.3 to 4.6 kb, respectively. However, the allele size distribution of YNH24 loci of different constitutions was shown to be too variable to be classified as 3 different constitution groups investigated. For further study, it is suggested that the number of each constitution samples for RFLP analysis should be increased and statistical analysis of the allele size distribution should be carried out.

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Studies on the SNPs and Haplotype of Cytochrome P450 gene in Tae-eum, So-yang and So-eum persons (태음인, 소양인, 소음인별 Cytochrome P450 유전자의 2D6, 2C9, 1A2 DNA 부위에 대한 SNPs과 Haplotype에 관한 연구)

  • Park Jong Oh;Lim Nam Kyoo;Lee Yong Heun;Chae Heui Jin;Uk Namgung;Kim Dong Hee
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.16 no.6
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    • pp.1201-1206
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    • 2002
  • In oriental medicine, human being is classified into four groups according to their body constitution status (;tae-yang, tae-eum, so-yang, and so-eum persons) considering the differences in function of internal organs and characteristics. Four body constitution, called 'sa-sang' has been recognized as an important factor for diagnosing the patients before madical teratment. Yet, the criteria to divide body constitutions or its scientific principle are not clearly defined. As an initial effort to elucidate biological priciples underlying four body constitution groups, we studied genetic variations among three constitution groups (tae-eum, so-yang, and so-eum persons). Noting distinct responses to ingested food and administered drugs among three groups, SNPs and haplotype experiments were performed in 2D6, 2C9, and 1A2 DNA regions of the cytochrome P450 gene. Significant variability in SNPs types was found in 2D6 region. Moreover, haplotyping in 2D6 region showed relatively high occurrences of haplotype 3 and 5 in so-eum person, haplotype 6 in tae-eum person, and hyplotype 1 in so-yang person. These results indicate that individuals with different body constitutions respond differently to ingested food and drugs, which might reflect constitution-specific genetic background. The genetic approach would therefore be useful to reveal intrinsic differences among four constitution body groups in the responsiveness to various drugs and external stimulations to human body.

Parental Selection Strategies in Plant Breeding Programs

  • Bertan, Ivandro;Carvalho, Fernando I. F. de;Oliveira, Antonio Costa de
    • Journal of Crop Science and Biotechnology
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    • v.10 no.4
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    • pp.211-222
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    • 2007
  • Selection of the appropriate parents to be used in artificial crosses is one of the main decisions faced by plant breeders that will facilitate the exploitation of maximum genetic variability and production of superior recombinant genotypes. Several techniques have been used in aiding the identification of genotypes with promising and desirable agronomical traits for hybridization. In this way, the objective of the present review is to gather available information for the selection of parents based on different breeding designs and analytical tools showing their similarities and highlighting the main advantages and disadvantages of their use.

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BLOOD PROTEIN POLYMORPHISMS OF NATIVE AND JUNGLE FOWLS IN INDONESIA

  • Hashiguchi, T.;Nishida, T.;Hayashi, Y.;Maeda, Y.;Mansjoer, S.S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.6 no.1
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    • pp.27-35
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    • 1993
  • In an attempt to reveal the interrelationship between fowls of jungle and native origin, their gene constitutions were compared using gene frequencies at the 16 loci controlling blood protein variations. Of the 16 loci analysed by electrophoresis, polymorphism was detected at following seven loci: Es-1, Amy-1, Akp-akp, Akp-2, Alb, Tf and 6-PGD. The other nine loci: Amy-3, Es-D, PGM, PHI, MDH, To, LDH, Hb-1 and Hb-2, were noted to be monomorphic. Genetic distance between pairs of native fowl and jungle fowls was estimated by a numerical taxonomic method. The Indonesian native fowl was genetically close to the Indonesian red jungle fowl, and the grey jungle fowl was genetically similar to the Ceylonese jungle fowl. It was also suggested that the green jungle fowl was genetically remote from the other jungle fowls and from the Indonesian native flow. The proportion of polymorphic loci (Ppoly), the expected average heterozygosity per individual $\bar{H}$, and the effective number of alleles per locus (Ne) were calculated to evaluate the genetic variabilities in the native and jungle fowls. The Indonesian native fowl exhibited slightly higher the proportion of polymorphic loci than the jungle fowls.

Clinical Research Trends in Sasang Constitutional Medicine Using Genetics (유전학을 이용한 사상의학 임상연구 동향 분석)

  • Park, Junhyung;Park, Jieun;Lee, Seul;Lee, Yong-jae;Lee, Jeongyun
    • Journal of Sasang Constitution and Immune Medicine
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    • v.33 no.3
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    • pp.72-86
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    • 2021
  • Objectives The aim of this study was to review the current clinical Sasang constitutions studies by using genetics and to provide basic data for developing in a better direction of research. Methods Research articles on genetics of the clinical Sasang constitutions studies were extracted from six databases. The articles were classified were published year, published journals, and the types of studies. Subjects of research and experimental methods for the genetic research were summarized. Results A total of 43 selected research articles were published from 1996 to 2020 and more than half of them were published in Journal of Sasang Constitutional Medicine and Journal of Korean Oriental Medicine. There were three main types of researches. The three types of researches were for investigating a genetic indicator for classification of Sasang constitutional type, confirming a relationship between pathological gene and Sasang constitutional type, and checking a hereditary of Sasang constitutional type. But these studies did not yield clear results illustrating a relationship between Genetics and Sasang Constitutional Medicine. Discussion In this study, the necessity of the follow up studies to demonstrate a relationship between Genetics and Sasang Constitutional Medicine was confirmed.