• Title/Summary/Keyword: ISSR 표지자

Search Result 12, Processing Time 0.019 seconds

Genetic diversity and structure of Pulsatilla tongkangensis as inferred from ISSR markers (ISSR 표지자에 의한 동강할미꽃(Pulsatilla tongkangensis)의 유전다양성과 구조)

  • Kim, Zin-Suh;Jo, Dong-Gwang;Jeong, Ji-Hee;Kim, Young-Hee;Yoo, Ki-Oug;Cheon, Kyoung-Sic
    • Korean Journal of Plant Resources
    • /
    • v.23 no.4
    • /
    • pp.360-367
    • /
    • 2010
  • The genetic diversity and structure of P. tongkangensis in 5 populations from 3 regions was investigated using 56 markers derived from 6 ISSR primers. Genetic diversity at the species level (P=94.6, SI=0.377, h=0.240) was substantial considering the limited distribution and small size of populations. Genetic differentiation among regions (12%) and among populations (13%) in the region was not clearly evident, which suggested a moderate level of gene flow among adjacent populations. The Mantel test revealed a significant correlation between genetic differentiation (${\Phi}_{ST}$) and geographic distance among populations. This was supported by cluster analysis and principal coordinate analysis (PCoA). The significant difference in marker band frequency at many loci and their fixation in opposite directions in the smallest and most isolated population SC were considered due to genetic drift. Therefore, the genetic diversity of P. tongkangensis could be compromised if the distribution area or the size of the population was further reduced. In particular, small and isolated populations could be at great risk of extinction. Considering this, the unique habitats of P. tongkangensis should be protected and the reduction of population size should be closely monitored. Conservation efforts including the seeding and planting of seedlings should be done carefully based on their genetic and ecological traits. Our data support the argument that establishing an integrated management system for the efficient conservation of P. tongkangensis is critical.

Genetic Variation of some Patches of Eleutherococcus senticosus (Rupr. & Maxim) Maxim. in Korea (국내(國內) 가시오갈피 군락(群落)의 유전변이(遺傳變異) 분석(分析))

  • Hong, Kyung-Nak;Cho, Kyung-Jin;Park, Yew-Heon;Hur, Sung-Du;Hong, Yong-Pyo;Kang, Bum-Yong
    • Journal of Korean Society of Forest Science
    • /
    • v.89 no.5
    • /
    • pp.645-654
    • /
    • 2000
  • The aim of this study was to described the genetic structure of Eleutherococcus senticosus in Korea. We investigated 10 patches, which are eight Korean patches and two foreign patches come from Russia and China growing at Korean habitat, using ISSR(inter-simple sequence repeats) markers. In ISSR PCR, the overall percentage of polymorphic ISSR amplicons was 76% and the mean number of amplicons per ISSR primer was 11.5, which were higher than the RAPD results for the some cultivars collected in Korea(Kim et al., 1998) ; 57% and 5.7, respectively. So ISSR markers provide more powerful tool than RAPD markers for the investigation of genetic variation in E. senticosus. There are relatively high genetic variation among patches as 62.8%, but low variation within eight Korean patches. Such pattern of genetic variation, which is not ordinary in other tree species, may be result from the narrow and limited habitats and the asexual reproduction of this species at the natural stands in Korea. Although the small sample size in this study seemed to be resulted in the high genetic variation among patches, the overall genetic interpretation of this study might not be much affected on the basis of the characteristics of the distribution and the reproduction system of E. senticosus. Analysis of genetic distance between all pairs of the patches did not reveal any trends with regard to geographic distance, which was confirmed by the results obtained from AMOVA(analysis of molecular variance) and PCA(principal component analysis). These results suggest that, in addition to the preservation of the natural stands, the conservation of larger number of patches with small number of individuals per patch is more effective for the ex situ conservation and for maintaining the genetic diversity of E. senticosus in Korea than smaller patches with large number of individuals.

  • PDF

Population Genetic Variation of Ulmus davidiana var. japonica in South Korea Based on ISSR Markers (ISSR 표지자를 이용한 느릅나무 자연집단의 유전변이 분석)

  • Ahn, Ji Young;Hong, Kyung Nak;Lee, Jei Wan;Yang, Byung Hoon
    • Journal of Korean Society of Forest Science
    • /
    • v.102 no.4
    • /
    • pp.560-565
    • /
    • 2013
  • Population genetic structure and diversity of Ulmus davidiana var. japonica in South Korea were studied using ISSR markers. A total of 45 polymorphic ISSR amplicons were cropped from 7 ISSR primers and 171 individuals of 7 populations. The average of effective alleles and the proportion of polymorphic loci were 1.5 and 89% respectively. The Shannon's diversity index (I) was 0.435 and the expected heterozygosity from the frequentist's method ($H_e$) and the Bayesian inference (hs) were 0.289 and 0.323 respectively. From AMOVA, 4.2% of total genetic variation in the elm populations was explained with the difference among populations (${\Phi}_{ST}=0.042$) and the other 95.8% was distributed within populations. The ${\theta}^{II}$ value by Bayesian method which was comparable to the FST was 0.043. So the level of genetic diversity in the elm populations was similar to that in Genus Ulmus and the level of genetic differentiation was lower than that of others. No population showed a significant difference in the population-specific fixation indices (average of $PS-F_{IS}=0.822$) or the population-specific genetic differentiations (average of $PS-F_{ST}=0.101$). Seven populations were allocated into 3 groups in the UPGMA and the PCA, but the grouping patterns were different. Also, we could not confirm any geographic trend from Bayesian clustering.

Genetic Stability Analysis of in vitro Regenerated Wolly Grass (Imperata cylindrica 'Rubra') Based on Inter-Simple Sequence Repeats (ISSR) Markers (ISSR 표지에 의한 기내재생 홍띠(Imperata cylindrica 'Rubra')의 유전적 안정성 분석)

  • Ye-Jin Lee;In-jin Kang;Chang-Hyu Bae
    • Proceedings of the Plant Resources Society of Korea Conference
    • /
    • 2020.12a
    • /
    • pp.54-54
    • /
    • 2020
  • 지구온난화에 따라 농업부문 신재생에너지의 중요성이 증대되고 있으며, 화본과 식물은 바이오에너지작물의 중요한 소재를 제공하고 있다. 화본과 식물의 기내대량증식연구의 일환으로 홍띠식물의 기내 재생 식물체의 유전적 안정성에 대한 기초자료를 제공할 목적으로 기내배양으로 재분화시킨 홍띠(Imperata cylindrica 'Rubra') 재분화 식물체 중 녹색체 재생식물체를 대상으로 ISSR 표지를 사용하여 유전적 안정성을 조사하였다. 재분화식물체는 MS (Murashige and Skoog, 1962)배지에 생장조절제를 첨가한 배지에서 배양하였다. 생장점 부위를 적출하여 캘러스를 유도하고(0.1 mg/L 2,4-D와 2 mg/L BA), 캘러스 증식(0.1 mg/L 2,4-D와 0.05 mg/L BA), 신초 재분화( 0.01 mg/L NAA와 2 mg/L BA) 후 MS배지에서 식물체를 양성하고 순화시켰다. 배양은 26±2℃, 25 µmol/m2/s, 14h/10h (day/night) 광조건 하에서 실시하였다. 재분화식물체는 홍띠 및 녹색 재분화식물체 2 종류로 나타났는데, 이는 생장점에서는 홍띠가 분화되었음에도 불구하고 생장점 주변조직에서 유래한 녹새체가 분화된 후 우세하게 자라서 녹색재생체가 우점하는 것으로 추정된다. ISSR 분석은 대조구로 모식물체 홍띠를(8개체), 재분화식물체는 녹색체 중, 1년간 노지포장에서 재배중인 녹색체(10개체)와 실험실내 화분에서 재배중인 시료를(10개체) 사용하였다. ISSR 밴드패턴을 비교한 결과, 재분화체는 실내포트 재배식물체 10.3%, 노지1년 재배식물체 8.3%로 대조구의 4.1%보다 유전적 다형성 비율이 2배 이상 높게 나타났다. 또한 재분화식물체들의 유전적 유사도를 평가하고 군집분석을 실시하였다.

  • PDF

Genetic diversity of Forsythia ovata Nakai (Oleaceae) based on inter-simple sequence repeats (ISSR) (ISSR 자료에 기초한 만리화(물푸레나무과)의 유전적 다양성)

  • Kim, Sang-Yong;Kim, Young-Dong;Kim, Jin-Seok;Yang, Byeong-Hoon;Kim, Sung-Hee;Lee, Byung-Chun
    • Korean Journal of Plant Taxonomy
    • /
    • v.39 no.1
    • /
    • pp.48-54
    • /
    • 2009
  • We investigated the genetic diversity of an endemic rare species, Forsythia ovata Nakai by examining 93 ISSR amplicons in 84 individuals distributed among five populations. The overall percentage of polymorphic ISSR amplicons was 54.8% and mean number of amplicons per ISSR primer was 6.6. The amount of genetic diversity was relatively lower than other shrub species. The Mt. Seokbyeong and Mt. Seorak B populations had the highest level of genetic diversity. Although the Seokgae-jae population had the lowest level of genetic diversity, the population was genetically the most distinctive from the other populations. About 30.6% of the total variation was allocated between five populations, which was slightly higher than other shrub species. Such a pattern of genetic variation may have resulted from the limited distribution and small population sizes of F. ovata. The UPGMA dendrogram based on Nei's genetic distance showed some decisive geographic patterns. These results suggest that, in addition to the preservation of the natural stands, the conservation of larger number of populations with small number of individuals per population is more effective for the dynamic ex situ conservation and for maintaining the genetic diversity of F. ovata than smaller number of populations with large number of individuals.

Spatial Genetic Structure and Genetic Diversity of a Rare Endemic Juniperus chinensis var. sargentii in Mt. Halla, Korea (희귀식물인 눈향나무(Juniperus chinensis var. sargentii)의 공간분포에 따른 유전구조 및 유전적 다양성)

  • Choi, Hyung-Soon;Hong, Kyung-Nak;Chung, Jae-Min;Kim, Won-Woo
    • The Korean Journal of Ecology
    • /
    • v.27 no.5
    • /
    • pp.257-261
    • /
    • 2004
  • Juniperus chinensis var. sargentii Henry is a short and creeping evergreen shrub which reaches about 50㎝ in height and occurs in the northeast Asia and in high mountains over the South Korea. Its distribution is restricted, and the number of individuals are gradually decreasing. This study was conducted to estimate spatial pattern, genetic diversity and spatial genetic structure of J. chinensis var. sargentii. A total of 131 clumps were studied in the study area (40m × 60m). The spatial pattern of this population was random (Aggregation index R=1.031). In spite of the small number and the limited distribution, the level of genetic diversity (Shannon's index 1=0.463) was relatively high as compared with those of other plant species with similar ecological characteristics. ISSR genotypes of all individuals were investigated to find the genetic relationship of clumps and genets. Fifteen clumps were composed to be clones, and a total of 116 unique genotypes were composed by separate genets. Spatial autocorrelation analysis using Tanimoto distance showed that the genetic patch was established within 8m. The effect of clonal reproduction on genetic structure was almost nothing.

Genetic Diversity and Population Genetic Structure of Exochorda serratifolia in South Korea (가침박달 집단의 유전다양성 및 유전구조 분석)

  • Hong, Kyung Nak;Lee, Jei Wan;Kang, Jin Taek
    • Journal of Korean Society of Forest Science
    • /
    • v.102 no.1
    • /
    • pp.122-128
    • /
    • 2013
  • Genetic diversity and population genetic structure were estimated in nine natural populations of Exochorda serratifolia in South Korea using ISSR marker system. Average of polymorphic loci per primer was 5.8 (S.D.=2.32) and percentage of polymorphic loci per population was 78.7% with total 35 loci from 6 ISSR primers. In AMOVA, 27.8% of total genetic variation came from genetic difference among populations and 72.2% was resulted from difference among individual trees within populations. Genetic differentiations by Bayesian inference were 0.249 of ${\theta}^{11}$ and 0.227 of $G_{ST}$. Inbreeding coefficient for total populations was 0.412. There was significant correlation between genetic distance and geographic distance among populations. On the results of Bayesian cluster analysis, nine populations were assigned into three groups. The first group included 5 populations, and the second and the third had two populations per group, respectively. These three regions could explain 10.0% of total genetic variation from hierarchical AMOVA, and the levels of among-population and among-individual were explained 19.7% and 70.3%, respectively. The geographic distribution of populations following the three Bayesian clusters could be explained with mountain range as Baekdudaegan which is the main chain of mountains in Korea. The mountains as the physical barrier might hamper gene flow in the pearlbush. So when protected areas are designated for conservation of this species, we should consider those three regions into considerations and would better to choose at least one population per region.

Genetic Diversity and Genetic Structure of Phellodendron amurense Populations in South Korea (황벽나무 자연집단의 유전다양성 및 유전구조 분석)

  • Lee, Jei-Wan;Hong, Kyung-Nak;Kang, Jin-Taek
    • Journal of Korean Society of Forest Science
    • /
    • v.103 no.1
    • /
    • pp.51-58
    • /
    • 2014
  • Genetic diversity and genetic structures were estimated in seven natural populations of Phellodendron amurense Rupr in South Korea using ISSR markers. The average of polymorphic loci per primer and the proportion of polymorphic loci per population were 4.5 and 78.8% respectively with total 27 polymorphic loci from 6 ISSR primers. The Shannon's diversity index(I) was 0.421 and the expected heterozygosity($H_e$) was 0.285, which was similar to the heterozygosity (hs =0.287) inferred by Bayesian method. In AMOVA, 7.6% of total genetic variation in the populations was resulted from the genetic difference among populations and the other 92.4% was resulted from the difference among individuals within populations. Genetic differentiation(${\theta}^{II}$) and inbreeding coefficient(f) for total population were estimated to be 0.066 and 0.479 by Bayesian method respectively. In Bayesian clustering analysis, seven populations were assigned into three groups. This result was similar to the results of genetic relationships by UPGMA and PCA. The first group included Hwachoen, Gapyeong, Bongpyeong and Yongpyeong population, and the second included two populations in Sancheong region. Muju population was discretely assigned into the third group in spite of the geographically short distance from the Sancheong region. There was no significant correlation between genetic relationship and geographic distribution among populations in Mantel's test. For conservation of the phellodendron trees, it would be effective to consider the findings resulted from this study with ecological traits and life histories of this species.

Spatial Genetic Structure of Needle Fir(Abies holophylla Seedlings on the Forest Gap Within a Needle Fir Forest at Mt. Odae in Korea) (오대산(五臺山) 전나무림(林)의 숲틈에서 발생(發生)된 전나무 치수(稚樹)들의 공간적(空間的) 유전구조(遺傳構造))

  • Hong, Kyung-Nak;Choi, Young Cheol;Kang, Bum-Yong;Hong, Yong-Pyo
    • Journal of Korean Society of Forest Science
    • /
    • v.90 no.4
    • /
    • pp.565-572
    • /
    • 2001
  • The spatial genetic structure of Needle fir(Abies holophylla Max.) seedlings on forest gap within a Needle fir forest at Mt. Odae in Korea was analyzed on the basis of ISSR(inter-simple sequence repeats) marker analysis. The gap size was $1,500m^2(50m{\times}30m)$, and we sampled 416 one- or two-year-old seedlings by 2m intervals. Some trees at the upper crown layer except Needle firs and all trees at the middle and lower crown layers were removed, and Needle firs at the upper crown layer showed very weak growth strength or to be withering to death. The results of spatial autocorrelation using 31 polymorphic ISSR markers revealed that it was genetically homogeneous within spatial distance of 15.6m and the randomness of genetic distribution was from 15.6m to 31.2m. The genetic patch size of seedlings in forest gap might be restricted by the density of mother trees, making allow for the average height of adult Needle firs, the seed dispersal area, and the average distance between adults. For the directionality of seedling distribution, we investigated the variography using 'genetic configuration' which was the value of configuration in Multidimensional Scaling by genetic distance. In directional variogram, the increment of spatial distance from East to West direction was inversely proportional to genetic homogeneity. We presumed that this anisotrophy of seedling distribution at this forest gap resulted from the directionality of seed dispersal rather than the difference of fecundity between mother trees or the microhabitat variation, taking the evenness of forest floor condition, a vast seed production and the random distribution of seedlings at the studied site into consideration.

  • PDF

Inter Simple Sequence Repeats (ISSR) Marker Analysis of Genetic Diversity in Korean Phasianus colchicus karpowi and Genetic Relationships Among Subspecies of Phasianus spp. (Inter Simple Sequence Repeats (ISSR) 표지자를 이용한 한국꿩의 유전적 다양성 및 아종간의 유연관계 분석)

  • Yoon, Seong-Il
    • Korean Journal of Environmental Biology
    • /
    • v.26 no.2
    • /
    • pp.66-75
    • /
    • 2008
  • The level of genetic diversity and genetic relationships among Korean ring-necked pheasant (Phasianus colchicus karpowi) habitat and subspecies have been investigated based on Inter Simple Sequence Repeat (ISSR) markers. Wild and domesticated Korean ring-necked pheasant, hybrids between domesticated Korean ring-necked and foreign subspecies, and four foreign subspecies; Chinese ring-necked (P. c. torquatus), Melanistic mutant (P. c. mut. tenebrosus), XL White (P. c. mut) and Southern green (P. c. versicolor) were used for comparison. On the basis of the results of AMOV A, 94.08% of genetic diversity in Korean ring-necked was allocated among individuals within habitat differences. Estimate of $\Phi$st, which represents the degree of genetic differentiation among habitats was 5.9%. Based on the dendrogram reconstructed by UPGMA, Yangpyung habitat of the eight habitats turned out to be distinct from others habitat. Interestingly, domesticated Korean ring-necked and hybrid mixture showed closer genetic relationship with four foreign subspecies than Korean ring-necked. As a consequence of AMOVA, 96.63% of genetic diversity in four foreign subspecies was allocated among individuals within subspecies. Estimate of $\Phi$st representing the degree of genetic differentiation among subspecies was 3.4%, which was lower than that among habitats of Korean ring-necked. The lower level of genetic difference among four foreign subspecies showed that these subspecies were genetically closer even though they were morphologically classified into four different subspecies. When seven habitats of Korean ring-necked pheasant and four foreign subspecies were divided into Korean and Foreign Pheasant Groups, respectively, more than 17% of genetic diversity was allocated between groups (about 4% among habitats/subspecies within groups). This observation implied that Korean ring-necked pheasant is genetically quite different from four foreign subspecies. On the basis of cluster analysis, three foreign subspecies (Chinese ring-necked pheasant, Melanistic mutant pheasant, and XL White pheasant) formed a distinct group with domesticated Korean ring-necked pheasant and hybrid mixture at 98% confidence interval.