• Title/Summary/Keyword: rDNA spacer region

Search Result 172, Processing Time 0.103 seconds

Analysis of the ITS (Internal Transcribed Spacer) Region of Opuntia ficus-indica (백년초선인장의 ITS(internal transcribed spacer) 유전자 분석)

  • In Jun-Gyo;Lee Bum-Soo;Kim Eun-Jeong;Choi Kwan-Sam;Han Seung-Ho;Shin Cheol-Woo;Yang Deok-Chun
    • Korean Journal of Plant Resources
    • /
    • v.19 no.1
    • /
    • pp.161-168
    • /
    • 2006
  • To investigate the origin of backyeoncho (Opuntia ficus-indica var. saboten), we isolated 685 bp clone using ITS primer pairs. The rDNA consists of the genes coding for the partial 54 bp 185, 162 bp 5.8S, and partial 56 bp 26S. The coding regions are interrupted by two internal transcribed spacers, 193 bp ITS1 and 220 bp ITS2. The ITS2 of backnyeoncho in length was shorter than that previously registered in Cucurbitoideae plants. The GC contents was 66.8% in ITS1, and 67.7% in ITS2. The rDNA of backnyeoncho matched to the previously reported genes and showed a high similarity with the 95% identity with Pereskiopsis porteri (L708037). In the phylogenetic analysis, the backnyeoncho rDNA was clustered with Pereskiopsis porteri (L708037).

Emendation of Rhodomonas marina (Cryptophyceae): insights from morphology, molecular phylogeny and water-soluble pigment in an Arctic isolate

  • Niels Daugbjerg;Cecilie B. Devantier
    • ALGAE
    • /
    • v.39 no.2
    • /
    • pp.75-96
    • /
    • 2024
  • Rhodomonas (Cryptophyceae) and species assigned to this genus have undergone numerous taxonomic revisions. This also applies to R. marina studied here as it was originally assigned as a species of Cryptomonas and later considered a variation of R. baltica, the type species. Despite being described more than 130 years ago, R. marina still lacks a comprehensive characterization. Light and electron microscopy were employed to delineate a strain from western Greenland. The living cells were 18 ㎛ long and 9 ㎛ wide, elliptical in shape with a pointed to rounded posterior and truncated anterior in lateral view. Two sub-equal flagella emerged from a vestibulum, where also a furrow extended. In transmission electron microscopy, the furrow was associated with a tubular gullet and the pyrenoid embedded in a deeply lobed chloroplast. The chloroplast contained DNA in perforations and was surrounded by starch grains. A tubular nucleomorph was enclosed within the pyrenoid matrix. In scanning electron microscopy, the inner periplast consisted of rectangular plates with rounded edges and posteriorly these were replaced by a sheet-like structure. The water-soluble pigment was Crypto-Phycoerythrin type I (Cr-PE 545). A phylogenetic inference based on SSU rDNA confirmed the identity of strain S18 as a species of Rhodomonas as it clustered with congeners but also Rhinomonas, Storeatula, and Pyrenomonas. These genera formed a monophyletic clade separated from a diverse assemblage of other cryptophyte genera. To further explore the phylogeny of R. marina a concatenated phylogenetic analysis based on the SSU rDNA-ITS1-5.8S rDNA-ITS2-LSU rDNA region was performed but included only closely related species. The secondary structure of nuclear internal transcribed spacer 2 was predicted and compared to similar structures in related species. Using morphological and molecular signatures as diagnostic features the description of R. marina was emended.

Phylogenetic Relationships Among Pleurotus species Inferred from Sequence Data of PCR Amplified ITS II Region in Ribosomal DNA (rDNA의 ITS II 부위의 염기서열분석에 의한 느타리버섯 종간의 근연관계)

  • Bae, Shin-Churl;Seong, Ki-Young;Lee, Shin-Woo;Go, Seung-Joo;Eun, Moo-Young;Rhee, In-Koo
    • The Korean Journal of Mycology
    • /
    • v.24 no.2 s.77
    • /
    • pp.155-165
    • /
    • 1996
  • This study was carried out to identify the phylogenetic relationship among several isolates of Pleurotus species by comparing ITS II region of ribosomal DNA(rDNA) repeat unit. Two primers from ribosomal DNA sequences were chosen to amplify the specific internal transcribed spacer (ITS) II region of Pleurotus spp. The exact ITS II region with an unique band from six species of Pleurotus genus could be amplified using the two primers taken from at the 3'-end of 5.8S rDNA and 5'-end of 28S rDNA. Six representative species of the Pleurotus genus were easily characterized according to the length differences of ITS II region. Furthermore, within P. ostreatus species, different sizes of ITS II region could be observed in the isolates of ASI 2025 and ASI 2095 although they were classified as P. ostreatus by the conventional observation. The nucleotide sequence analyses of PCR-amplified ITS II region indicated that the isolates ASI 2025 and ASI 2095 were different from other Pleurotus spp. When the nucleotide sequences of six Pleurotus species were compared, three typical ITS II regions were highly variable especially at both ends of this region. The phylogenetic tree obtained by the Neighbor program of Felsenstein PHYLIP package with all the nucleotide sequence of Pleurotus spp. indicated that P. ostreatus, P. florida, P. sajor-caju and P. eryngii were closely related to one phylogenetic branch and P. cystidious was related to other branch with P. cornucopiae. The isolates ASI 2025 and 2038, however, were not closely related to any other Pleurotus spp. and formed their own individual branches.

  • PDF

Genetic Relationships of Four Korean Oysters Based on RAPD and Nuclear rDNA ITS Sequence Analyses

  • Kim, Woo-Jin;Lee, Jeong-Ho;Kim, Kyung-Kil;Kim, Young-Ok;Nam, Bo-Hye;Kong, Hee-Jeong;Jung, Hyung-Taek
    • The Korean Journal of Malacology
    • /
    • v.25 no.1
    • /
    • pp.41-49
    • /
    • 2009
  • Random amplified polymorphic DNA (RAPD) marker and sequence analyses of the internal transcribed spacer (ITS) region of ribosomal DNA were used to assess phylogenetic relationships of four Korean oyster species. The average number of species-specific markers identified from five universal rice primers (URPs) by RAPD-PCR was 1.8 for Crassostrea gigas, 3.2 for C. nippona, 3.6 for C. ariakensis, and 4.6 for Ostrea denselamellosa. The length of the ITS (ITS1-5.8S-ITS2) region ranged from 1,001 to 1,206 bp (ITS1, 426-518 bp; 5.8S, 157 bp; and ITS2, 418-536 bp), while the GC content ranged from 55.5-61.1% (ITS1, 56.8-61.8%; 5.8S, 56-57.3%; and ITS2, 54.1-62.2%). A phylogenetic analysis of the oysters based on our RAPD, ITS1, and ITS2 sequence data revealed a close relationship between C. gigas and C. nippona and a distant relationship between the genera Crassostrea and Ostrea. Our results indicated that RAPD and ITS sequence analysis was a useful tool for the elucidation of phylogenetic relationships and for the selection of species-specific markers in Korean oysters.

  • PDF

Phylogenetic relationships of genera Grifola on the basis of ITS region sequences (rDNA의 ITS 부위 염기서열 분석에 의한 잎새버섯(Grifola)속 균주의 유전적인 유연관계 분석)

  • Lee, Chan-Jung;Jhune, Chang-Sung;Cheong, Jong-Chun;Kong, Won-Sik;Suh, Jang-Sun
    • Journal of Mushroom
    • /
    • v.10 no.2
    • /
    • pp.93-99
    • /
    • 2012
  • This study was carried to identify a correct species and asses genetic diversity within the same species of Grifola spp. preserved in Division of applied Microbiology. Contaminated isolates showed different growth rates, morphology and color of hyphae. We have reconstructed the phylogenetic tree of a select group of Grifola spp. using nucleotide sequences of the internal transcribed spacer region(ITS) region. The phylogenetic tree was constructed by using the neighbor-joining method. PELF primers of 20-mer were used to assess genetic diversity of preserved isolates. Sequence analysis showed that four strains were identified completely different nomenclature. According to the analysis of ITS sequences, the genus Grifola clustered into one group, most of which correlated with species-groups identified by RAPD method. Eight isolates included strain GM01 showed high similarity with Grifola frondosa. All isolates were collected in the Japan(GM01, GM02, GM03) was identified as Grifola frondosa and isolates of the China(GM05, GM06, GM08) was identified as Bjerkandera fumosa, Grifola frondosa and Dichomitus squalens, respectively. RAPD analysis of genetic polymorphisms of genus Grifola showed a very different band patterns on the isolat. As the result of RAPD and ITS region sequences analysis for preserved isolates, it seems likely that 4 isolates of Grifola spp. may be need to reclassify or eliminate from preserved catalogue.

Phylogenetic relationships of genera Trametes on the basis of ITS region sequences (rDNA의 ITS 부위 염기서열 분석에 의한 구름버섯 균주의 유전적인 유연관계 분석)

  • Lee, Chan-Jung;Jhune, Chang-Sung;Cheong, Jong-Chun;Oh, Jin-A;Han, Hye-Su;Um, Na-Na
    • Journal of Mushroom
    • /
    • v.9 no.1
    • /
    • pp.27-33
    • /
    • 2011
  • This study was carried to identify a correct species and asses genetic diversity within the same species of Trametes spp. preserved in Division of applied Microbiology The morphological and cultural characteristics of preserved strains were observed through microscope and investigated on PDA, respectively. Contaminated isolates showed different growth rates, morphology and color of hyphae. We have reconstructed the phylogenetic tree of a select group of Trametes spp. using nucleotide sequences of the internal transcribed spacer region(ITS) region. The phylogenetic tree was constructed by using the neighbor-joining method. PELF primers of 20-mer were used to assess genetic diversity of preserved isolates. Sequence analysis showed that five strains were different species and six strains were identified completely different nomenclature. According to the analysis of ITS sequences, the genus Trametes clustered into four distinct group, most of which correlated with species-groups identified by RAPD method. Seven isolates included TM 01 strain showed high similarity with Trametes versicolr, TM 07 and TM 10 high similarity with Trametes gibbosa, and TM 05 high similarity with Trametes elegans. But isolates collected in the United States was identified as T. junipericola. T. gibbosa and T. versicolor by RAPD analysis of genetic polymorphisms showed a very different band patterns and these strains showed different band patterns on areas. As the result of RAPD and ITS region sequences analysis for preserved isolates, it seems likely that 11 isolates of Trametes spp. may be need to reclassify or eliminate from preserved catalogue.

Phylogenetic relationships of genera Polyporus on the basis of ITS region sequences (rDNA의 ITS 부위 염기서열 분석에 의한 겨울우산버섯(Polyporus)속 균주의 유전적인 유연관계 분석)

  • Lee, Chan-Jung;Jhune, Chang-Sung;Cheong, Jong-Chun;Kong, Won S.
    • Journal of Mushroom
    • /
    • v.10 no.1
    • /
    • pp.37-43
    • /
    • 2012
  • This study was carried to identify a correct species and asses genetic diversity within the same species of Polyporus spp. preserved in Division of applied Microbiology. Contaminated isolates showed different growth rates, morphology and color of hyphae. We have reconstructed the phylogenetic tree of a select group of Polyporus spp. using nucleotide sequences of the internal transcribed spacer region(ITS) region. The phylogenetic tree was constructed by using the neighbor-joining method. PELF primers of 20-mer were used to assess genetic diversity of preserved isolates. Sequence analysis showed that three strains were different species and four strains were identified completely different nomenclature. According to the analysis of ITS sequences, the genus Polyporus clustered into five distinct group, most of which correlated with species-groups identified by RAPD method. Four isolates included strain PM02 showed high similarity with P. arcularius, four isolates included strain PM03 high similarity with P. alveolaris, three isolates included strain PM01 high similarity with P. tuberaster, and PM 06 and PM04 high similarity with P. brumalis and P. squamossus. Isolates were collected in the United States(PM10, PM11) was identified as P. alveolarius and P. arcularius. RAPD analysis of genetic polymorphisms of genus Polyporus showed a very different band patterns. As the result of RAPD and ITS region sequences analysis for preserved isolates, it seems likely that 6 isolates of Polyporus spp. may be need to reclassify or eliminate from preserved catalogue.

Molecular Taxonomy of Ganoderma cupreum from Southern India Inferred from ITS rDNA Sequences Analysis

  • Kaliyaperumal, Malarvizhi
    • Mycobiology
    • /
    • v.41 no.4
    • /
    • pp.248-251
    • /
    • 2013
  • Ganoderma is a cosmopolitan wood-rot basidiomycete that has been extensively studied for its pathogencity and medicinal properties. Identification of Ganoderma based on macro-microscopic features led to large number of synonyms which resulted in 250 taxonomic names. A Ganoderma species collected from Courtallam, Tamil Nadu was identified as G. cupreum. Phylogenetic analysis inferred from internal transcribed spacer rDNA region resolved the Indian isolate MYC1 as Ganoderma cupreum which clustered with Australian and Asian "cupreum" clade with 85% bootstrap support BS and shared 99% and 98% nucleotide similarity with Malaysian and Australian 'cupreum' respectively. This study represents the first molecular evidence of G. cupreum from Asian origin.

Sclerotium Rot of Cowpea (Vigna sinensis King) Caused by Sclerotium rolfsii (Sclerotium rolfsii에 의한 동부 흰비단병)

  • Kwon, Jin-Hyeuk;Kang, Dong-Wan;Han, Inyoung;Choi, Yong-Jo;Lee, Sang-Dae;Son, Daeyoung
    • The Korean Journal of Mycology
    • /
    • v.44 no.1
    • /
    • pp.61-63
    • /
    • 2016
  • Sclerotium rot disease on cowpea (Vigna sinensis King) was observed in the exhibition field of Gyeongsangnam-do Agricultural Research and Extension Services in September 2015. Lesions were covered by white mycelial mats, and numerous sclerotia were formed on the stem near the soil line. The sclerotia were globoid in shape, 1~3 mm in size and white to brown in color. The optimum temperature for mycelial growth and sclerotia formation on potato dextrose agar (PDA) was $30^{\circ}C$, with the hyphal width of $4{\sim}8{\mu}m$. For molecular identification, the complete internal transcribed spacer (ITS) rDNA region of the causal fungus was sequenced and analyzed. Based on the mycological characteristics, ITS rDNA sequence analysis, and pathogenicity test, this fungus was identified as Sclerotium rolfsii. This is the first report of sclerotium rot on cowpea caused by S. rolfsii in Korea.

The complete plastid genome and nuclear ribosomal transcription unit sequences of Spiraea prunifolia f. simpliciflora (Rosaceae)

  • Jeongjin CHOI;Wonhee KIM;Jee Young PARK;Jong-Soo KANG;Tae-Jin YANG
    • Korean Journal of Plant Taxonomy
    • /
    • v.53 no.1
    • /
    • pp.32-37
    • /
    • 2023
  • Spiraea prunifolia f. simpliciflora Nakai is a perennial shrub widely used for horticultural and medicinal purposes. We simultaneously obtained the complete plastid genome (plastome) and nuclear ribosomal gene transcription units, 45S nuclear ribosomal DNA (nrDNA) and 5S nrDNA of S. prunifolia f. simpliciflora, using Illumina short-read data. The plastome is 155,984 bp in length with a canonical quadripartite structure consisting of 84,417 bp of a large single-copy region, 18,887 bp of a short single-copy region, and 26,340 bp of two inverted repeat regions. Overall, a total of 113 genes (79 protein-coding genes, 30 tRNAs, and four rRNAs) were annotated in the plastome. The 45S nrDNA transcription unit is 5,848 bp in length: 1,809 bp, 161 bp, and 3,397 bp for 18S, 5.8S, and 26S, respectively, and 261 bp and 220 bp for internal transcribed spacer (ITS) 1 and ITS 2 regions, respectively. The 5S nrDNA unit is 512 bp, including 121 bp of 5S rRNA and 391 bp of intergenic spacer regions. Phylogenetic analyses showed that the genus Spiraea was monophyletic and sister to the clade of Sibiraea angustata, Petrophytum caespitosum and Kelseya uniflora. Within the genus Spiraea, the sections Calospira and Spiraea were monophyletic, but the sect. Glomerati was nested within the sect. Chamaedryon. In the sect. Glomerati, S. prunifolia f. simpliciflora formed a subclade with S. media, and the subclade was sister to S. thunbergii and S. mongolica. The close relationship between S. prunifolia f. simpliciflora and S. media was also supported by the nrDNA phylogeny, indicating that the plastome and nrDNA sequences assembled in this study belong to the genus Spiraea. The newly reported complete plastome and nrDNA transcription unit sequences of S. prunifolia f. simpliciflora provide useful information for further phylogenetic and evolutionary studies of the genus Spiraea, as well as the family Rosaceae.