• Title/Summary/Keyword: 분자진화

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Origin and evolution of Korean ginseng revealed by genome sequence

  • Cho, Woohyeon;Shim, Hyeonah;Yang, Tae-Jin
    • Journal of Ginseng Culture
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    • v.3
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    • pp.1-10
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    • 2021
  • Panax ginseng (Ginseng or Korean ginseng) is one of the most important medicinal herbs in the world. We made a high-quality whole genome sequence of P. ginseng using 'Chunpoong' cultivar, which is the first cultivar registered in Korea Seed and Variety Service (KSVS) with relatively similar genotypes and superior phenotypes, representing approximately 3 Gbp and 60,000 genes. Genome sequence analyses of P. ginseng and related speciesrevealed the origin of Korean ginseng and the ecological adaptation of 18 Panax species around the world. Korean ginseng and American ginseng (P. quinquefolius) are tetraploid species having 24 chromosome pairs, while the other 16 species are diploid species with 12 chromosome pairs. Panax and Aralia are the closest genera belonging to the Araliaceae family that diverged approximately 8 million years ago (MYA). All Panax species evolved as shade plants adapting to cool climates and low light conditions under the canopy of deep forests from Southeast Asia such as Vietnam to Northeast Asia such as Russia approximately 6 MYA. However, through recurrent ice ages and global warming, most diploid Panax species disappeared due to the freezing winter, while tetraploid P. ginseng may have appeared by allotetraploidization, which contributed to the adaptation to cold temperaturesin Northeast Asian countries including the Korea peninsula approximately 2 MYA. American ginseng evolved by the adaptation of P. ginseng in Northeast America after the intercontinental migration 1 MYA. Meanwhile, most of diploid Panax species survived in high-altitude mountains over 1,600 meters in Southeast Asia because they could not endure the hot temperature and freezing cold. The genome sequence provides good basisto unveil the origin and evolution of ginseng and also supports practical gene chips which is useful for breeding and the ginseng industry.

Probe Selection of DNA Microarrays Using Genetic Algorithms (유전 알고리즘을 이용한 DNA Microarray의 Probe 선택)

  • Kim, Sun;Zhang, Byoung-Tak
    • Proceedings of the Korean Institute of Intelligent Systems Conference
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    • 2002.05a
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    • pp.183-187
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    • 2002
  • DNA microarray는 분자생물학 및 DNA 컴퓨팅 분야에 널리 사용되고 있는 실험 도구이다. DNA microarray를 이용하는 한 예는 알려진 유전자 집합을 바탕으로 하여 hybridization을 통해 새로운 DNA 서열을 분석하는 것이다. 이를 위한 가장 간단한 방법은 알려진 유전자의 모든 서열을 DNA microarray 상에 올려놓는 것이지만 이는 결과의 정확도 및 칩 제작비용 면에서 비효율적이다. 따라서 일반적으로는 유전자 서열 정보를 파악한 후 일련의 DNA 서열을 선택하는 probe 디자인 과정을 거친다. 그러나 현재 유전자 서열을 바탕으로 최적의 probe 집합을 찾는 결정적인 방법이 존재하고 있지 않다. 이에 본 논문은 oligo DNA microarray을 이용한 DNA 서열 분석 문제에 있어서 가능한 많은 유전자를 인식하면서 최소의 probe 개수를 갖는 집합을 찾는 방법을 제안한다. 제시된 방법은 가능한 probe 집합들로 해집합을 구성한 후, 유전알고리즘을 이용한 진화 과정을 통해 목적하는 probe 집합을 찾는다. 본 논문에서는 GenBank로부터 얻은 일련의 유전자 집합을 대상으로 실험하였으며 그 결과를 분석하였다.

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현대과학이 풀지못한 미스터리

  • Korean Federation of Science and Technology Societies
    • The Science & Technology
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    • v.35 no.9 s.400
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    • pp.43-72
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    • 2002
  • [수학] 7대 수수께끼 주제당 1백만달러 상금 걸어 리만가설 풀면 통신비밀 완벽 유지 길 터/[물리] 물질 기본 웨이클ㆍ허공의 요동설 신비 우주 팽창 가속ㆍ진공에너지 설도 미궁/[화학] 화학반응 경로와 반응속도 해석 큰 난제 분자집단 평형깨졌을 때 해석도 문제/[생물] 의식ㆍ사고ㆍ상상력ㆍ언어 등 정신능력 신비 신경전달물질 분비 메커니즘 규명 못해/[지구과학] 판구조론ㆍ하와이 화산활동 설명 안돼/[천문우주과학] 새 사실 밝혀질수록 또다른 궁금증 제기/[기상] 지구는 더워지고 있는가 추워지고 있는가 엘니뇨ㆍ오존층 등 기후변화 현상만 겨우 파악/[농학] 진화론 자리매김했지만 의문점 남아

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목재부후균류(담자균 민주름버섯목)의 분류학적 고찰

  • 정학성
    • The Microorganisms and Industry
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    • v.15 no.2
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    • pp.20-23
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    • 1989
  • 목재부후 민주름버섯류의 분류는 아직도 해결해야 할 문제점들이 많이 남아 있다. 그 이유는 민주름버섯류가 그만큼 특징들이 다양하고 형태는 유사하나 기원이 다른 이질적인 종류들로 구성되어 있기 때문이다. 민주름버섯류의 분류 대가인 Donk도 자신이 추구한 분류체계에 스스로 만족하지 못하고 후대의 학자들이 도전해야 할 문제점들을 자주 제시한 적이 있다. 이와 같은 현상은 민주름버섯류의 분류가 자연분류와 계통분류를 지향하여 보다 종합적인 방법으로 종의 개념에 접근할 필요가 있음을 시사한다. 이제 위에 언급한 영양생활, 형태, 배양, 또는 유전적인 특징외에 진화와 계통, 환경과 생태, 지리적 분포와 식생, 핵산구조와 분자계통분류 등과 같은 과제들을 아울러 다룰 수 있는 포괄적인 분류체제의 대두가 요청되고 있다.

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An Overview for Molecular Markers in Plants (식물에서 분자 마커의 동향)

  • Huh, Man Kyu
    • Journal of Life Science
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    • v.25 no.7
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    • pp.839-848
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    • 2015
  • A molecular marker is a molecule contained within a sample taken from an organism or other matter. The development of molecular techniques for genetic analysis has led to a great contribution to our knowledge of plant genetics and our understanding of the structure and behavior of various genomes in plants. Recently, functional molecular markers have been developed to detect the presence of major genes from the analysis of pedigreed data in absence of molecular information. DNA markers have developed into many systems based on different polymorphism-detecting techniques or methods such as RFLP, AFLP, RAPD, SSR, SNP, etc. A new class of very useful DNA markers called genic molecular markers utilizing the ever-increasing archives of gene sequence information being accumulated under the EST sequencing projects on a large number of plant species. Functional markers are derived from polymorphic sequences, and are more likely to be involved in phenotypic trait variation. Based on this conceptual framework, the marker systems discussed below are all (gene)-targeted markers, which have the potential to become functional. These markers being part of the cDNA/EST-sequences, are expected to represent the functional component of the genome i.e., gene(s), in contrast to all other random DNA based markers that are developed/generated from the anonymous genomic DNA sequences/domains irrespective of their genic content/information. Especially I sited Poczai et al’ reviews, advances in plant gene-targeted and functional markers. Their reviews may be some useful information to study molecular markers in plants.

Comparative Analysis of Mitochondrial Genomes of the Genus Sebastes (Scorpaeniformes, Sebastidae) Inhabiting the Middle East Sea, Korea (한국 동해 중부해역에 서식하는 볼락속(Sebastes) 어류의 미토콘드리아 유전체 비교분석)

  • Jang, Yo-Soon;Hwang, Sun Wan;Lee, Eun Kyung;Kim, Sung
    • Korean Journal of Ichthyology
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    • v.33 no.4
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    • pp.226-239
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    • 2021
  • Sebastes minor, Sebastes trivittatus, Sebastes owstoni, and Sebastes steindachneri are indigenous fish species inhabiting the central part of the East Sea, Korea. In order to understand the molecular evolution of these four rockfishes, we sequenced the complete mitochondrial genomes (mitogenomes) of S. minor and S. trivittatus. To further analyze the phylogeny of Sebastes species, the mitogenomes of 16 rockfishes were comparatively investigated. The complete mitochondrial DNA (mtDNA) nucleotide sequences of S. minor and S. trivittatus were 16,408 bp and 16,409 bp in length, respectively. A total of 37 genes were found in mtDNA of S. minor and S. trivittatus, including 13 protein-coding genes, 2 ribosomal RNA genes, and 22 transfer RNA genes, which exhibited similar characters with other Sebastes species in the East Sea, Korea. In addition, we detected a conserved motif "ATGTA" in the control region of the four Sebastes species, but no tandem repeat units. Comparative analyses of the congeneric mitochondrial genomes were performed, which showed that control regions were more variable than the concatenated protein-coding genes. As a result of analysing phylogenetic relationships of four Sebastes species by using concatenated nucleotide sequences of 13 protein-coding genes, S. minor, S. trivittatus, S. owstoni and S. steindachneri were clustered into three clades. The phylogenetic tree exhibited that S. minor and S. steindachneri shared a closer relationship, whereas S. trivittatus and S. vulpes formed another distinct clade. Our results contribute to a better understanding of evolutionary patterns of Sebastes species inhabiting the middle East Sea, Korea.

Spawning patterns of three bitterling fish species (Pisces: Acheilognathinae) in host mussels and the first report of their spawning in Asian clam(Corbicula fluminae) from Korea (납자루아과(Pisces: Acheilognathinae) 어류 3종의 숙주조개에 대한 산란양상 및 재첩(Corbicula fluminae) 내 산란 국내 최초 보고)

  • Jin Kyu Seo;Hee-kyu Choi;Hyuk Je Lee
    • Korean Journal of Environmental Biology
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    • v.41 no.3
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    • pp.229-246
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    • 2023
  • The bitterling (Cyprinidae, Acheilongnathinae) is a temperate freshwater fish with a unique spawning symbiosis with host mussels. Female bitterlings use their extended ovipositors to lay eggs on the gills of mussels through the mussel's exhalant siphon. In the present study, in April of 2020, we investigated spawning frequencies and patterns of three bitterling fish species in host mussel species in the Nakdong River basin (Hoecheon). During field surveys, a total of four bitterling and three mussel species were found. We observed bitterling's spawning eggs/larvae in the three mussel species: Anodonta arcaeformis(proportion spawned: 45.5%), Corbicula fluminea(12.1%), and Nodularia douglasiae (45.2%). The number of bitterlings' eggs/larvae per mussel ranged from 1 to 58. Using our developed genetic markers, we identified the eggs/larvae of each bitterling species in each mussel species (except for A. macropterus): A. arcaeformis (spawned by Acheilognathus yamatsutae), C. fluminea (A. yamatsutae and Tanakia latimarginata), and N. douglasiae (A. yamatsutae, Rhodeus uyekii, and T. latimarginata). Approximately 57.6% of N. douglasiae mussel individuals had eggs/larvae of more than one bitterling species, suggesting that interspecific competition for occupying spawning grounds is intense. This is the first report on bitterling's spawning events in the Asian clam C. fluminea from Korea; however, it should be ascertained whether bitterling's embryo undergoes successful development inside the small mussel and leaves as a free-swimming juvenile. In addition, the importance of its conservation as a new host mussel species for bitterling fishes needs to be studied further.

Global Optimum Searching Technique Using DNA Coding and Evolutionary Computing (DNA 코딩과 진화연산을 이용한 함수의 최적점 탐색방법)

  • Paek, Dong-Hwa;Kang, Hwan-Il;Kim, Kab-Il;Han, Seung-Soo
    • Journal of the Korean Institute of Intelligent Systems
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    • v.11 no.6
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    • pp.538-542
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    • 2001
  • DNA computing has been applied to the problem of getting an optimal soluting since Adleman's experiment. DNA computing uses strings with various length and four-type bases that makes more useful for finding a global optimal solutions of the complex multi-modal problems This paper presents DNA coding method finding optimal solution of the multi-modal function and compares the efficiency of this method with the genetic algorithms(GA). GA searches efffectively an optimal solution via the artificial evolution of individual group of binary string and DNA coding method uses DNA molecules and four-type bases denoted by the A(Ademine) C(Gytosine);G(Guanine)and T(Thymine). The selection, crossover, mutation operators are applied to both DNA coding algorithm and genetic algorithms and the comparison has been performed. The results show that the DNA based algorithm performs better than GA.

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Alu sequences and molecular features (Alu 서열과 분자생물학적 특징)

  • Park Eun-Sil;Hong Kyung-Won;Kim Heui-Soo
    • Journal of Life Science
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    • v.14 no.6 s.67
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    • pp.1028-1039
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    • 2004
  • During the past 65 million years, Alu sequences have been amplified through RNA-polymerase IIIderived transcripts, and have reached the copy number of about 1.4 million in primate genomes. They are the largest family among mobile genetic elements in human genome and consist of ten percent of the human genome. Alu sequences are thought to be functionless genetically, but many researchers have proved new function and disease implication. Alu elements make the genome insertional mutation, Alu-mediated recombination events, and unexpected splicing site and change gene structures, protein sequences, splicing motifs and expression patterns. In this review, the structure and origin of Alu, consensus sequences of Alu subfamilies, evolution and distribution of Alu, and their related diseases were described. We also indicated new research direction of Alu elements in relation to evolution and disease.