• 제목/요약/키워드: cpcBA-IGS

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Phylogenetic relationships of Arthrospira strains inferred from 16S rRNA gene and cpcBA-IGS sequences

  • Choi, Gang-Guk;Ahn, Chi-Yong;Oh, Hee-Mock
    • ALGAE
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    • 제27권2호
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    • pp.75-82
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    • 2012
  • $Arthrospira$ $platensis$ and $Arthrospira$ $maxima$ are species of cyanobacteria used in health foods, animal feed, food additives, and fine chemicals. This study conducted a comparison of the 16S rRNA gene and $cpcBA$-intergenic spacer ($cpcBA$-IGS) sequences in $Arthrospira$ strains from culture collections around the world. A cluster analysis divided the 10 $Arthrospira$ strains into two main genotypic clusters, designated I and II, where Group I contained $A.$ $platensis$ SAG 86.79, UTEX 2340, $A.$ $maxima$ KCTC AG30054, and SAG 49.88, while Group II contained $A.$ $platensis$ PCC 9108, NIES 39, NIES 46, and SAG 257.80. However, although $A.$ $platensis$ PCC 9223 belonged to Group II-2 based on its $cpcBA$-IGS sequence, this strain also belonged to Group I based on its 16S rRNA gene sequence. Phylogenetic analyses based on the 16S rRNA gene and $cpcBA$-IGS sequences showed no division between $A.$ $platensis$ and $A.$ $maxima$, plus the 16S rRNA gene and $cpcBA$-IGS sequence clusters did not indicate any well-defined geographical distribution, instead overlapping in a rather interesting way. Therefore, the current study supports some previous conclusions based on 16S rRNA gene and $cpcBA$-IGS sequences, which found that $Arthrospira$ taxa are monophyletic. However, when compared with 16S rRNA sequences, $cpcBA$-IGS sequences may be better suited to resolve close relationships and intraspecies variability.

cpcBA-Intergenic Spacer Region을 이용한 Cyanobacteria의 다양성 분석 (Cyanobacterial Diversity Analysis Using cpcBA-Intergenic Spacer Region)

  • 최강국;박용하;안치용;배명숙;오희목
    • 미생물학회지
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    • 제41권4호
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    • pp.287-292
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    • 2005
  • 대청호에서 수화 발생이 빈번한 추소리 수역에서 2005년 3월 15일에 채취한 시료를 대상으로 유전자 분식에 의한 cyanobacteria의 다양성을 조사하였다. rpcBA-Intergenic Spacer (IGS)는 cyanobacteria에 특징적 색소인 phycocyanin을 합성하는 유전자와 유전자 사이의 부분으로, 환경시료에서 cyanobacteria의 다양성을 조사하기에 매우 유용한 기능 유전자이다. cpcBA-IGS를 이용하여 restriction fragment length polymorphism (RELP)으로 cyanobacteria의 다양성을 분석한 결과 Phomidium 속은 58 clones, Anabaena 속은 14 clones, Microcyxtis 속은 4 clones, Spirulina 속은 1 clone 그리고 uncultured cyanobacteria 2 clones가 존재하였다. 전반적으로 Phormidium 속이 우점하였으며, 여름철에 수화를 일으키는 Anabaena 속과 Microcystis 속도 많이 분포하였다. 따라서 cyanobacteria는 cpcBA-IGS와 같은 기능 유전자에 의한 종 동정 및 군집분석이 가능함을 보였다.

Seasonal and Spatial Diversity of Picocyanobacteria Community in the Great Mazurian Lakes Derived from DGGE Analyses of 16S rDNA and cpcBA-IGS Markers

  • Jasser, Iwona;Krolicka, Adriana;Jakubiec, Katarzyna;Chrost, Ryszard J.
    • Journal of Microbiology and Biotechnology
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    • 제23권6호
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    • pp.739-749
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    • 2013
  • The seasonal and spatial diversity of picocyanobacteria (Pcy) in lakes of the Great Mazurian Lakes (GLM) system was examined by DGGE analysis of molecular markers derived from the 16S-23S internal transcribed spacer (ITS) of the ribosomal operon and the phycocyanin operon (cpcBA-IGS). The study of nine lakes, ranging from mesotrophy to hypereutrophy, demonstrated seasonal variance of Pcy. The richness and Shannon diversity index calculated on the basis of both markers were higher in spring and lower in early and late summer. No statistically significant relationships were found between the markers and trophic status of the studied lakes or Pcy abundance. There were, however, statistically significant relationships between the diversity indices and sampling time. The analysis pointed to a different distribution of the two markers. The ITS marker exhibited more unique sequences in time and space, whereas a greater role for common and ubiquitous sequences was indicated by the cpcBA-IGS data. Examination of the Pcy community structure demonstrated that communities were grouped in highly similar clusters according to sampling season/time rather than to the trophic status of the lake. Our results suggest that time is more important than trophic status in shaping the diversity and structure of Pcy communities. The seasonal changes in picocyanobacteria and differences in diversity and community structures are discussed in the context of well-established ecological hypotheses: the PEG model, intermediate disturbance hypothesis (IDH), and horizontal gene transfer (HGT).

Molecular Characterization of Marine Cyanobacteria from the Indian Subcontinent Deduced from Sequence Analysis of the Phycocyanin Operon (cpcB-IGS-cpcA) and 16S-23S ITS Region

  • Premanandh, Jagadeesan;Priya, Balakrishnan;Teneva, Ivanka;Dzhambazov, Balik;Prabaharan, Dharmar;Uma, Lakshmanan
    • Journal of Microbiology
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    • 제44권6호
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    • pp.607-616
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    • 2006
  • Molecular characterization of ten marine cyanobacterial isolates belonging to the order Oscillatoriales was carried out using the phycocyanin locus (cpcBA-IGS) and the 16S-23S internally transcribed spacer region. DNA sequences from the phycocyanin operon discriminated ten genotypes, which corresponded to seven morphotypes identified by traditional microscopic analysis. The cpcB coding region revealed 17% nucleotide variation, while cpcA exhibited 29% variation across the studied species. Phylogenetic analyses support the conclusion that the Phormidium and Leptolyngbya genera are not monophyletic. The nucleotide variations were heterogeneously distributed with no or minimal informative nucleotides. Our results suggest that the discriminatory power of the phycocyanin region varies across the cyanobacterial species and strains. The DNA sequence analysis of the 16S-23S internally transcribed spacer region also supports the polyphyletic nature of the studied oscillatorian cyanobacteria. This study demonstrated that morphologically very similar strains might differ genotypically. Thus, molecular approaches comprising different gene regions in combination with morphological criteria may provide better taxonomical resolution of the order Oscillatoriales.

Morphological and Molecular Analyses of $Anabaena$ $variabilis$ and $Trichormus$ $variabilis$ (Cyanobacteria) from Korea

  • Choi, Gang-Guk;Yoon, Sook-Kyung;Kim, Hee-Sik;Ahn, Chi-Yong;Oh, Hee-Mock
    • 환경생물
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    • 제30권1호
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    • pp.54-63
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    • 2012
  • This study characterizes three $Anabaena$ strains and 5 $Trichormus$ strains isolated from Korean waters and 3 $Anabaena$ $flos-aquae$ strains procured from the UTEX based on morphological features and molecular analyses. The $Anabaena$ and $Trichormus$ isolates were morphologically assigned to $A.$ $variabilis$ K$\ddot{u}$tzing and $T.$ $variabilis$(K$\ddot{u}$tzing ex Bornet et Flahault) Kom$\acute{a}$rek et Anagnostidis, respectively. The $Anabaena$ and $Trichormus$ strains differed significantly in the mean length of their vegetative cells. The 16S rRNA genes from the $Anabaena$ strains showed a 100% identity to that from $A.$ $variabilis$ ATCC 29413, while the 16S rRNA genes from the $Trichormus$ strains showed a 99.9% identity to that from $T.$ $variabilis$ GREIFSWALD. The overall topology was in agreement for the 16S rRNA gene and $cpcBA$-IGS trees in the both tree-constructing methods. In a neighbor-joining tree based on the 16S rRNA gene, the 3 $Anabaena$ strains were asso-ciated with $A.$ $variabilis$, the 5 $Trichormus$ strains with $T.$ $variabilis$, and the 3 $Anabaena$ (UTEX) strains were with $Nostoc$. To date, this is the first report on $A.$ $variabilis$ and $T.$ $variabilis$ strains originating from Korea.