• Title/Summary/Keyword: Phylogeny analysis

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Phylogeny of Ganoderma Based on the Restriction Enzyme Analysis of Mitochondrial DNA (미토콘드리아 DNA의 제한효소 분석법에 의한 영지의 계통분류)

  • Hong, Soon-Gyu;Jung, Hack-Sung
    • Korean Journal of Microbiology
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    • v.32 no.4
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    • pp.245-251
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    • 1994
  • Ten strains of 7 species from the genus Ganoderma, G. lucidum ATCC 64251, FP-103561-T, and ES70701, G. applanatum ATCC 44053 and FP-57035-T. G. lobatum ATCC 42985, G. resinaceum ATCC 52416, G. subamboinense var. laevisporum ATCC 52420, G. meredithae ATCC 64492, and G. microsporum ATCC 76024, were studied to discuss their phylogenetic relationships by utilizing restriction fragment length polymorphisms (RFLPs) of mitochondrial DNAs (mtDNAs). Six restriction enzymes, BamHI, BglII, EcoRI, HindIII, PvuII, and XbaI which digested mtDNAs into adequate numbers of restriction fragments for cluster analysis, were used in this study. Restriction profiles of strains for each restriction enzyme were treated as analysis characters to calculate similarity coefficients, which were converted into nucleotide sequence divergence values whose mean values were then arranged in a matrix table. This table was utilized for a phylogenetic analysis using the Neighborjoining method of the PHYLIP package to construct phylogenetic tree. Three strains of G. lucidum and two strains of G. applanatum exhibited different lineages each but one of G. applanatum strains showed a close relationship with G. lobatum, which reflected the species complexity of these species whose strains were phenotypically indistinguishable but genetically distinct. The present results suggest that the natural classification of Ganoderma needs to be considered from the viewpoints of molecular biology-based systematics as well as morphological classifications and cultural identifications for better phylogenetic conclusions.

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Phylogenetic Analysis of the HIV-1 nef Gene from Korean Isolates

  • Lee, Dong-Hun;Yeup Yoon;Lee, Chan-Hee
    • Journal of Microbiology
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    • v.41 no.3
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    • pp.232-238
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    • 2003
  • Previous phylogenetic studies on human immunodeficiency virus type 1 (HIV-1) isolated from Korean patients suggest that the major subtype of Korean isolate is subtype B. In this subtype, some of the Korean isolates seem to be clustered exclusively of foreign isolates. Presence of this so-called “Korean clade” among Korean isolates is unique but needs verification since the number of Korean isolates used in previous studies was limited. This study aimed to identify the presence of the “Korean clade” by molecular phylogenetic analysis using all the Korean nef gene sequences registered in the NCBI GenBank (N=243) together with 32 reference strains and 77 foreign isolates. Extensive analysis of the nef gene nucleotide sequences by neighbor-joining method revealed the following. Most (83.1 %) of the Korean isolates belonged to subtype B, and 81.2% of subtype B were clustered together and excluded foreign isolates (bootstrap value=91.9% ). Within Korean subtype B cluster, no characteristic subcluster formation was evident since the bootstrap values for the subcluster were very low. Due to limited information, the phylogenetic analysis failed to identify the epidemiological linkage among specific groups such as homosexuals and hemophiliacs within the Korean subtype B cluster. Detailed analysis and epidemiological information are needed to clarify the origin and significance of the Korean subtype B cluster.

The Robust Phylogeny of Korean Wild Boar (Sus scrofa coreanus) Using Partial D-Loop Sequence of mtDNA

  • Cho, In-Cheol;Han, Sang-Hyun;Fang, Meiying;Lee, Sung-Soo;Ko, Moon-Suck;Lee, Hang;Lim, Hyun-Tae;Yoo, Chae-Kyoung;Lee, Jun-Heon;Jeon, Jin-Tae
    • Molecules and Cells
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    • v.28 no.5
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    • pp.423-430
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    • 2009
  • In order to elucidate the precise phylogenetic relationships of Korean wild boar (Sus scrofa coreanus), a partial mtDNA D-loop region (1,274 bp, NC_000845 nucleotide positions 16576-1236) was sequenced among 56 Korean wild boars. In total, 25 haplotypes were identified and classified into four distinct subgroups (K1 to K4) based on Bayesian phylogenetic analysis using Markov chain Monte Carlo methods. An extended analysis, adding 139 wild boars sampled worldwide, confirmed that Korean wild boars clearly belong to the Asian wild boar cluster. Unexpectedly, the Myanmarese/Thai wild boar population was detected on the same branch as Korean wild boar subgroups K3 and K4. A parsimonious median-joining network analysis including all Asian wild boar haplotypes again revealed four maternal lineages of Korean wild boars, which corresponded to the four Korean wild boar subgroups identified previously. In an additional analysis, we supplemented the Asian wild boar network with 34 Korean and Chinese domestic pig haplotypes. We found only one haplotype, C31, that was shared by Chinese wild, Chinese domestic and Korean domestic pigs. In contrast to our expectation that Korean wild boars contributed to the gene pool of Korean native pigs, these data clearly suggest that Korean native pigs would be introduced from China after domestication from Chinese wild boars.

Characterization and Phylogenetic Analysis of Chitin Synthase Genes from the Genera Sporobolomyces and Bensingtonia subrorea

  • Nam, Jin-Sik
    • Korean Journal of Environmental Biology
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    • v.23 no.4
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    • pp.335-342
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    • 2005
  • We cloned seven genes encoding chitin synthases (CHSs) by PCR amplification from genomic DNAs of four strains of the genus Sporobolomyces and of Bensingtonia subrosea using degenerated primers based on conserved regions of the CHS genes. Though amino acid sequences of these genes were shown similar as 176 to 189 amino acids except SgCHS2, DNA sequences were different in size, which was due to various introns present in seven fragments. Alignment and phylogenetic analysis of their deduced amino acid sequences together with the reported CHS genes of basidiomycetes separated the sequences into classes I, II and III. This analysis also permitted the classification of isolated CHSs; SgCHS1 belongs to class I, BsCHS1, SaCHS1, SgCHS2, SpgCHS1, and SsCHS1 belong to class II, and BsCHS2 belongs to class III. The deduced amino acid sequences involving in class II that were discovered from five strains were also compared with those of other basidiomycetes by CLUSTAL X program. The bootstrap analysis and phylogenetic tree by neighbor-joining method revealed the taxonomic and evolutionary position for four strains of the genus Sporobolomyces and for Bensingtonia subrosea which agreed with the previous classification. The results clearly showed that CHS fragments could be used as a valuable key for the molecular taxonomic and phylogenetic studies of basidiomycetes.

Molecular Phylogeny of the Family Strigidae (Aves) Based on Mitochondrial Cytochrome b Gene (Mitochondrial Cytochrome b 유전자에 의한 올빼미과 (Family Strigidae)의 분자계통)

  • 류시현;박희천
    • Animal Systematics, Evolution and Diversity
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    • v.19 no.2
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    • pp.297-304
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    • 2003
  • Phylogenetic analysis of 31 species representing 12 genera in the family Strigidae (Aves: Strigiformes) including 5 species (Bubo bubo, Otus sunia, O. semitorques, Ninox scutulato, Strix aluco) collected from Korea has been undertaken using nucleotide sequences of the mitochondrial cytochrome b gene. Maximum likelihood analysis was performed and pairwise genetic distances were calculated with Kimura's two-parameter and p-distance. Among well-aligned 959 bp used for this study, 459 sites were variable and 398 sites were informative for the phylogenetic analysis. The family Strigidae was divided into three subgroups, Clade I (Aegolius), Clade II (Athene, Micrathene, Glaucidium and Surnia) and Clade III (Bubo, Nycteo, Pulsatrix, Strix, Otus, Ptilopsis, and Ninox). Also, two separated subgroups in the genus Otus were confirmed by the geographical distribution.

Population Analysis of Korean and Japanese Toxic Alexandrium catenella Using PCR Targeting the Area Downstream of the Chloroplast PsbA Gene

  • Kim Choong-Jae;Kim Chang-Hoon;Sako Yoshihiko
    • Fisheries and Aquatic Sciences
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    • v.7 no.3
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    • pp.130-135
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    • 2004
  • The marine dinoflagellate genus Alexandrium, which produces PSP toxins, has a global distribution. As human-assisted dispersal of the species has been suggested, it is important to develop molecular tools to trace the dispersal pathway. To screen population-specific DNA sequences that differentiate Korean and Japanese A. catenella, we targeted the area downstream of the chloroplast psbA gene using PCR with population-specific DNA primers followed by RFLP (restriction fragment length polymorphism) analysis and sequencing. The RFLP patterns of the PCR products divided Korean and Japanese A. catenella regional isolates into three types: Korean, Japanese, and type CMC3, isolated from Korea. We sequenced the PCR products, but found no similar gene in a homology search. The molecular phylogeny inferred from the sequences separated the Korean and Japanese A. catenella strains, as did the RFLP patterns. However, the Japanese isolates included two slightly different sequences (types J and K), while the Korean sequence was the same as the Japanese K type. In addition, a unique sequence was found in the Korean strains CMC2 and CMC3. Population-specific PCR amplification with Japanese A. catenella type-specific PCR primers designed from the type J sequence yielded PCR products for Japanese strains only, showing that the unknown gene can be used for a population analysis of Korean and Japanese A. catenella.

Comparison of Cellular Fatty Acid Composition and Genotypic Analysis of Bifidobacterium longum MK-G7 with Commercial Bifidobacteria Strains

  • Jung, Hoo-Kil;Kim, Eung-Ryool;Ji, Geun-Eog;Park, Jong-Hyun;Cha, Seong-Kwan;Juhn, Suk-Lak
    • Journal of Microbiology and Biotechnology
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    • v.10 no.2
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    • pp.143-146
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    • 2000
  • This study was conducted to compare the cellular fatty acid composition and genotypic analysis of Bifidobacterium longum MK-G7 originated from Koreans with other commercial type strains of bifidobacteria. The cellular fatty acid of Bif. longum MK-G7 was shown to be composed of $C_{160FAME},C_{181\;c18DMA},C_{18.1\;CIS9\; FAME},C_{14.0FAME},C_{19\;0cye9,10 DMA},Feature7(C_{17.2 FAME), and Feature 10(C_{181\; Cll/t9/t6 FAME}$. Bif. longum MK-G7 showed 99.9% homology and the highest relatedness with Bif. longum ATCC 15707 type strain. Both Bif. longum MK-G7 and Bif. longum ATCC 15707 showed 153 bp products on RAPD (randomly amplified polymorphic DNA) analysis, however, they showed quite different band patterns on PFGE (pulsed-field gel electrophoresis) analysis. Consequently, our present study showed that Bif. longum MK-G7 was different from any commercial type strains of Bif. longum tested.

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Phylogenetic Analysis of the Corticiaceae Based on Gene Sequences of Nuclear 18S Ribosomal DNAs

  • Lee, Seung-Shin;Jung, Hack-Sung
    • Journal of Microbiology
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    • v.35 no.4
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    • pp.253-258
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    • 1997
  • The nuclear 18S ribosomal RNA genes of seven corticioid species were sequenced. These sequences were analyzed and compared with those of 24 other species of the order Aphyllophorales and phylogenetic trees were constructed using parsimonious methods. Phylogenetic analyses showed that two species among examined members of the Corticiaceae, Resinicium bicolor and Thanatephorus praticola, are located distantly from the remaining six species. The separation of R. bicolor seems to be kphylogenetically significant because it has very unique cystidia. The independent lineage of T. practicola suggests that it is also phylogenetically distinct because it has unusual features like the homobasidium producing secondary spores and the spetal ultrastructure of pore cap. Furthermore, Auriscalpium vulgare, Bondarzewia berkeleyi, and Heterobasidion annosum from different families of the Aphyllophorales proved to be closely related to the species of the Corticiaceae. They all have amyloid spores and grouped with Aleyrodiscus amorphus, which is a member of the Corticiaceae. The amyloidity of spores seems to be an improtant character throughout the order of the Aphyllophorales.

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Phylogenetic Analyses of Nuclear rDNA ITS Sequences of Korean Allium L. Subgenus Rhizirideum(Alliaceae)

  • Lee, Nam-Sook
    • Animal cells and systems
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    • v.5 no.4
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    • pp.283-290
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    • 2001
  • Phylogenetic relationships among the Korean taxa of the genus Allium subgenus Rhizirideum and some related taxa were assessed on the basis of in sequences of nuclear ribosomal DNA. Twenty-eight accessions of the genus Allium L. consisting of subgenera Rhizirideum (19 taxa), Allium (5 taxa) and Amerallium (one taxon) were analyzed. The variation in the ITS region was informative at the levels of section except for sect. Reticulato- bulbosa which is known to be of multiple origin. The ITS 2 region was longer than the ITS 1 region, and all of the investigated Allium taxa were the same in length in the 5.8S region except for A. monanthum. Allium cyaneum var. cyaneum was the shortest (635 bp) and A. victorialis the longest (646 bp) among the investigated Korean taxa. The three morphologically similar taxa, A. thunbergii, A. sacculiferum that has been included in A. thunbergii, and A. deltoid- fistulosum, had the same ITS lengths of 641 bp, but were clearly distinguished in the phylogenetic analysis of their ITS sequences.

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High-quality draft genome and characterization of commercially potent probiotic Lactobacillus strains

  • Sulthana, Ayesha;Lakshmi, Suvarna G.;Madempudi, Ratna Sudha
    • Genomics & Informatics
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    • v.17 no.4
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    • pp.43.1-43.5
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    • 2019
  • Lactobacillus acidophilus UBLA-34, L. paracasei UBLPC-35, L. plantarum UBLP-40, and L. reuteri UBLRU-87 were isolated from different varieties of fermented foods. To determine the probiotic safety at the strain level, the whole genome of the respective strains was sequenced, assembled, and characterized. Both the core-genome and pan-genome phylogeny showed that L. reuteri was closest to L. plantarum than to L. acidophilus, which was closest to L. paracasei. The genomic analysis of all the strains confirmed the absence of genes encoding putative virulence factors, antibiotic resistance, and the plasmids.