• Title/Summary/Keyword: 유전적다양성

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혈액형지배 유전자에 의한 칡소의 유전적 특성

  • 조창연;연성흠;손동수;이호준;윤종택
    • Proceedings of the KSAR Conference
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    • 2001.03a
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    • pp.50-50
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    • 2001
  • 혈액형을 지배하는 유전자는 진화에 대하여 중립적인 작용을 하고 있어서 집단의 유전적 구조의 특성 파악, 계통분류학 등에 많이 응용되고 있다. 본 연구는 칡소에 대한 유전학적 특성을 구명하고자 혈액형 분석기술을 응용하여 실시하였다. 공시동물은 (주)한경게놈텍 목장에서 사육중인 외모적으로 칡소의 특징을 보이는 25두를 이용하였다. 혈액은 경정맥에서 헤파린 처리된 진공 채혈관에 무균적으로 채취하여 혈장, 백혈구 및 적혈구로 원심분리한 후 냉동 혹은 냉장 보관하여 각 실험에 이용하였다. 적혈구 항원형의 검출은 2% 적혈구 부유액과 축산기술연구소에서 생산된 항혈청 11종을 이용하여 용혈반응으로 실시하였고, 혈액단백·효소를 지배하고 있는 6개의 유전자 좌위에 대하여 전분 혹은 포리아크릴 아미드겔 전기영동으로 다형 검출을 실시하였다. 용혈반응으로 검출한 적혈구 항원형의 반응양상은 검사한 11종의 항체에 대하여 6종은 50%이상의 개체에서 양성반응을 보였다. 이와 같은 결과는 일반 한우에서 보이는 양성반응율보다는 높은 것으로 판단되어진다. 전기영동법으로 분석한 6개의 혈액단백·효소 지배 유전자 좌위 중 ALB좌위을 제외한 5개 유전자 좌위에서 다형이 관찰되었다. HB, AMY-1, GC 및 PTF-2 유전자 좌위는 2개의 대립유전자가 관찰되었고, TF 유전자 좌위는 4개의 대립유전자가 관찰되었다. 표 1에서 같이 칡소에서 관찰된 각 유전자 좌위의 대립유전자 빈도의 구성은 일반적인 한우와는 상이한 결과를 보였으나 평균 이형접합도는 칡소가 0.438, 일반한우가 0.442로 계산되어 유전적 변이성은 유사한 것으로 추정되었다. 이상의 결과로 본 연구에서 분석한 칡소는 다른 한우집단과는 상이한 유전적 구조를 가지고 있으나, 유전적 다형성은 비교적 높은 것으로 시사되었다. 보다 정확하고 많은 량의 유전정보 수집을 위하여 Microsatellite DNA 및 모색 관련 유전자를 분석할 필요성이 있을 것으로 사료된다.(Table Omitted)

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Genetic Polymorphisms of Candidate Loci and Inheritance Ppatterns of Gray Coat Color in Jeju Horses. (제주마에서 총마 모색의 유전 양성과 후보 유전좌위의 유전적 다형성)

  • Han, Sang-Hyun;Lee, Chong-Eon;Kim, Nam-Young;Ko, Moon-Suck;Jeong, Ha-Yeon;Lee, Sung-Soo
    • Journal of Life Science
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    • v.19 no.6
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    • pp.793-798
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    • 2009
  • This study was undertaken to reveal the relationship between genetic variations and inheritance patterns and the development of a systemic white coat color frequently observed in Jeju horses. It was determined that the white coat color occurred in all basic coat colored (black, bay and chestnut) horses by combining the phenotype and MC1R genotypes. There were no polymorphisms found in Jeju horses tested for mutational loci in the KIT gene, which were previously reported as potential mutations of the congenital dominant white coat color in other horse breeds in heterogeneity. The horses that had the 4.6-kb duplication in the STX17 intron 6 specifically showed the depigmented white coat color. Based on observation and STX17 genotypes, this depigmented whitening is defined as 'Chongma' (whitening, progressive graying with age-Gray) in Jeju horses. Pedigrees showed that this is an autosomal dominant inheritance pattern distinct from the bovine albinism caused by an autosomal recessive passion eye color. Because the gray phenotype is generally not completely expressed early in Jeju horses, it often makes them indistinguishable from other horses. Further studies are recommended for classification between the gray coat color and its similar phenotypes, such as the roan with its mixed hair colors appearing since neonatal period, acquired white hairs on wounded skin by veterinary treatment, and vitiligo-like skin pigmentation. However, study results revealing the relationship between the gray phenotype and genetic background suggested that useful information may be provided in regards to molecular breeding of Jeju horses.

Distributional Characteristics and Population Substantiality of Viola mirabilis L.; Rear edge Population in Korea (한국이 후방가장자리 개체군인 넓은잎제비꽃(Viola mirabilis L.)의 분포특성과 지속가능성)

  • Chae, Hyun-Hee;Kim, Young-Chul;An, Won-Gyeong;Kwak, Myoung-Hai;Nam, Gi-Heum;Lee, Kyu-Song
    • Korean Journal of Environment and Ecology
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    • v.33 no.4
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    • pp.422-439
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    • 2019
  • The rear edge population is considered to have low genetic diversity and high risk of extinction according to a highly isolated distribution. However, the rear edge population is observed to have persisted for an extended period despite the low genetic diversity. As such, it is necessary to understand the ecological process involved in the persistence of the population. Viola mirabilis L. in Korea is considered the rear edge population from the perspective of the worldwide distribution. We surveyed the distribution range of V. mirabilis, which shows the isolated distribution in the central area of Korea, to find out the factors of its persistence. Next, we investigated and accessed the vegetational pattern of habitats, soil environment, phenology, self-compatibility, population structure, and extinction risk factors observed in the distribution area. V. mirabilis was distributed in the understory of the deciduous forest, planted forest of the deciduous conifer and deciduous broad-leaved trees, shrubland, and grassland in the limestone area. We also observed the re-establishment of seedlings in the population, and most of them showed a stable population structure. For chasmogamous flowers, the visit by pollinators has a significantly positive relationship with the production of fruits. However, we found that the production of the cleistogamous flowers was more numerous in all studied populations and that only the cleistogamous flowers were produced despite a more substantial plant size in some populations. The plant size was more related to the production of the cleistogamous flowers than that of the chasmogamous flowers. Accordingly, the cleistogamous flowers significantly contributed to seedling recruitment in the population. We found that the production of the chasmogamous flowers and the cleistogamous flowers did not have a correlation with the factors of the soil analysis except for phosphoric acid. V. mirabilis showed the self-incompatibility characteristics most likely due to the production capability of the cleistogamous flowers. Potential extinction risk factors observed in the distribution area was included the development of limestone mine, the expansion of agricultural fields, and the construction of houses. Although V. mirabilis showed an isolated distribution in the limestone area in the Korean peninsula, it showed a diverse distribution in a wide habitat environment ranging from the grassland to the understory of the trees with relatively low canopy closure rate. Moreover, we concluded that the persistence of the population was possible if we can maintain the current state of multiple populations and stable population structure.

Genetic Diversity and Identification of Korean Elite Soybean Cultivars including Certified Cultivars Based on SSR Markers (한국 콩 보급품종을 포함한 엘리트품종의 SSR마커에 의한 유전적 다양성과 품종판별)

  • Jang, Seong-Jin;Park, Su-Jeong;Park, Kyeong-Ho;Song, Hang-Lin;Cho, Yong-Gu;Jong, Seung-Keun;Kang, Jung-Hoon;Kim, Hong-Sig
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.54 no.2
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    • pp.231-240
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    • 2009
  • A total of 26 Korean elite soybean cultivars including 21 certified cultivars was assessed to evaluate genetic diversity and to analyze relationship among them based on 15 SSR markers. Fifteen SSR markers generated a total of 201 alleles. Average number of alleles per SSR marker was 13.4 with a range from 8 to 19. Genetic diversity of 26 cultivars estimated by PIC value ranged from 0.782 to 0.931 with an average of 0.874. PIC value of Satt197 was the highest with 0.931 and Satt141 was the lowest with 0.782 among 15 SSR markers. Cluster analysis based on genetic distances classified 26 soybean cultivars into 3 clusters. Cluster I, II and III included 2, 7 and 17 cultivars, respectively. Average genetic diversity within clusters was 0.769 with a range from 0.720 to 0.799. Average genetic diversity between clusters was 0.813 with a range from 0.725 to 0.857. Genetic diversity was higher between clusters than within clusters. Genetic relationship among clusters was near between I and II, and I and III and far between II and III cluster. All of 26 Korean elite soybean cultivars could be identified by using any of 5 combinations of 2 SSR markers with higher PIC value, i.e, $Satt197+Sat_088$, Satt197+Satt245, $Sat_088+Sat_-036$, $Sat_088+Satt245$ and Satt185+Satt245.

Restoration of endangered orchid species, Dendrobium moniliforme (L.) Sw. (Orchidaceae) in Korea (멸종위기 난과 식물 석곡의 복원)

  • Kim, Young-kee;Kang, Kyung-Won;Kim, Ki-Joong
    • Korean Journal of Plant Taxonomy
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    • v.46 no.2
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    • pp.256-266
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    • 2016
  • A total of 13,000 individuals of Dendrobium moniliforme (L.) Sw. artificially propagated in laboratories and greenhouses were restored in their natural habitat of Bogildo Island, Wandogun, in the southern part of Korea in June of 2013. The growing conditions of the individuals were monitored for two years. The parental individuals for the restoration were obtained from a wild population in southern Korea, from which seeds were produced via artificial crossings. These seeds were germinated and cultivated in growing media and two-year-old plants were then grown in greenhouse beds. The genetic diversity among the propagated individuals was confirmed by examining DNA sequences of five regions of the chloroplast genome and the nuclear ITS region. The diversity values were as high as the average values of natural populations. All propagated individuals were transplanted into two different sites on Bogildo by research teams with local residents and national park rangers. After restoration, we counted and measured the surviving individuals, vegetative propagated stems, and growth rates in June of both 2014 and 2015. There was no human interference, and 97% of the individuals survived. The number of propagules increased by 227% in two years. In contrast, the average length of the stems decreased during the period. In addition, different survival and propagation rates were recorded depending on the host plants and the restored sites. The shaded sides of rock cliffs and the bark of Quercus salicina showed the best propagation rates, followed by the bark of Camellia japonica. A few individuals of D. moniliforme successfully flowered, pollinated, and fruited after restoration. Overall, our monitoring data over two years indicate that the restored individuals were well adapted and vigorously propagated at the restored sites. In order to prevent human disturbance of the restored sites, a CCTV monitoring system powered by a solar panel was installed after the restoration. In addition, a human surveillance system is operated by national park rangers with local residents.