Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regions

Cyanobacteria are an important group of microorganisms displaying a range of morphologies that enable phenotypic differentiation between the major lineages of cyanobacteria, often to the genus level, but rarely to species or strain level. We focused on the unicellular genus Synechocystis that includ...

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Main Authors: Mojca Juteršek, Marina Klemenčič, Marko Dolinar
Format: Article
Language:English
Published: Slovenian Chemical Society 2017-12-01
Series:Acta Chimica Slovenica
Subjects:
Online Access:https://journals.matheo.si/index.php/ACSi/article/view/3262
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spelling doaj-7c57249a9d4f43b981153e09d5676fa22020-11-25T01:10:12ZengSlovenian Chemical SocietyActa Chimica Slovenica1318-02071580-31552017-12-0164480481710.17344/acsi.2017.3262506Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regionsMojca JuteršekMarina KlemenčičMarko DolinarCyanobacteria are an important group of microorganisms displaying a range of morphologies that enable phenotypic differentiation between the major lineages of cyanobacteria, often to the genus level, but rarely to species or strain level. We focused on the unicellular genus Synechocystis that includes the model cyanobacterial strain PCC 6803. For 11 Synechocystis members obtained from cell culture collections, we sequenced the variable part of the 16S rRNA-encoding region and the 16S - 23S internally transcribed spacer (ITS), both standardly used in taxonomy. In combination with microscopic examination we observed that 2 out of 11 strains from cell culture collections were clearly different from typical Synechocystis members. For the rest of the samples, we demonstrated that both sequenced genomic regions are useful for discrimination between investigated species and that the ITS region alone allows for a reliable differentiation between Synechocystis strains.https://journals.matheo.si/index.php/ACSi/article/view/3262SynechocystisDNA barcodingCyanobacteriarRNAITS region
collection DOAJ
language English
format Article
sources DOAJ
author Mojca Juteršek
Marina Klemenčič
Marko Dolinar
spellingShingle Mojca Juteršek
Marina Klemenčič
Marko Dolinar
Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regions
Acta Chimica Slovenica
Synechocystis
DNA barcoding
Cyanobacteria
rRNA
ITS region
author_facet Mojca Juteršek
Marina Klemenčič
Marko Dolinar
author_sort Mojca Juteršek
title Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regions
title_short Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regions
title_full Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regions
title_fullStr Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regions
title_full_unstemmed Discrimination between Synechocystis members (Cyanobacteria) based on heterogeneity of their 16S rRNA and ITS regions
title_sort discrimination between synechocystis members (cyanobacteria) based on heterogeneity of their 16s rrna and its regions
publisher Slovenian Chemical Society
series Acta Chimica Slovenica
issn 1318-0207
1580-3155
publishDate 2017-12-01
description Cyanobacteria are an important group of microorganisms displaying a range of morphologies that enable phenotypic differentiation between the major lineages of cyanobacteria, often to the genus level, but rarely to species or strain level. We focused on the unicellular genus Synechocystis that includes the model cyanobacterial strain PCC 6803. For 11 Synechocystis members obtained from cell culture collections, we sequenced the variable part of the 16S rRNA-encoding region and the 16S - 23S internally transcribed spacer (ITS), both standardly used in taxonomy. In combination with microscopic examination we observed that 2 out of 11 strains from cell culture collections were clearly different from typical Synechocystis members. For the rest of the samples, we demonstrated that both sequenced genomic regions are useful for discrimination between investigated species and that the ITS region alone allows for a reliable differentiation between Synechocystis strains.
topic Synechocystis
DNA barcoding
Cyanobacteria
rRNA
ITS region
url https://journals.matheo.si/index.php/ACSi/article/view/3262
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