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Acidovorax lacteus sp. nov., isolated from a culture of a bloom-forming cyanobacterium (Microcystis sp.)
by
Srivastava, Ankita
, Chun, Seong-Jun
, Cui, Yingshun
, Lee, Hyung-Gwan
, Oh, Hee-Mock
, Ko, So-Ra
, Ahn, Chi-Yong
in
Acidovorax anthurii
/ Acidovorax avenae
/ Acidovorax konjaci
/ Bacteria
/ Base Composition
/ Biomedical and Life Sciences
/ Cell culture
/ Comamonadaceae - chemistry
/ Comamonadaceae - classification
/ Comamonadaceae - genetics
/ Comamonadaceae - physiology
/ Deoxyribonucleic acid
/ DNA
/ Enzymes - analysis
/ Eutrophic lakes
/ Eutrophication
/ fatty acids
/ Forming
/ Gene sequencing
/ Korean Peninsula
/ Lakes
/ Lakes - microbiology
/ Life Sciences
/ Medical Microbiology
/ Microbiology
/ Microcystis
/ Microcystis - chemistry
/ Microcystis - classification
/ Microcystis - genetics
/ Microcystis - physiology
/ New species
/ nucleotide sequences
/ Original Paper
/ pH effects
/ Phylogeny
/ Plant Sciences
/ Republic of Korea
/ ribosomal RNA
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Sodium chloride
/ Soil Science & Conservation
/ Species Specificity
2017
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Acidovorax lacteus sp. nov., isolated from a culture of a bloom-forming cyanobacterium (Microcystis sp.)
by
Srivastava, Ankita
, Chun, Seong-Jun
, Cui, Yingshun
, Lee, Hyung-Gwan
, Oh, Hee-Mock
, Ko, So-Ra
, Ahn, Chi-Yong
in
Acidovorax anthurii
/ Acidovorax avenae
/ Acidovorax konjaci
/ Bacteria
/ Base Composition
/ Biomedical and Life Sciences
/ Cell culture
/ Comamonadaceae - chemistry
/ Comamonadaceae - classification
/ Comamonadaceae - genetics
/ Comamonadaceae - physiology
/ Deoxyribonucleic acid
/ DNA
/ Enzymes - analysis
/ Eutrophic lakes
/ Eutrophication
/ fatty acids
/ Forming
/ Gene sequencing
/ Korean Peninsula
/ Lakes
/ Lakes - microbiology
/ Life Sciences
/ Medical Microbiology
/ Microbiology
/ Microcystis
/ Microcystis - chemistry
/ Microcystis - classification
/ Microcystis - genetics
/ Microcystis - physiology
/ New species
/ nucleotide sequences
/ Original Paper
/ pH effects
/ Phylogeny
/ Plant Sciences
/ Republic of Korea
/ ribosomal RNA
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Sodium chloride
/ Soil Science & Conservation
/ Species Specificity
2017
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Acidovorax lacteus sp. nov., isolated from a culture of a bloom-forming cyanobacterium (Microcystis sp.)
by
Srivastava, Ankita
, Chun, Seong-Jun
, Cui, Yingshun
, Lee, Hyung-Gwan
, Oh, Hee-Mock
, Ko, So-Ra
, Ahn, Chi-Yong
in
Acidovorax anthurii
/ Acidovorax avenae
/ Acidovorax konjaci
/ Bacteria
/ Base Composition
/ Biomedical and Life Sciences
/ Cell culture
/ Comamonadaceae - chemistry
/ Comamonadaceae - classification
/ Comamonadaceae - genetics
/ Comamonadaceae - physiology
/ Deoxyribonucleic acid
/ DNA
/ Enzymes - analysis
/ Eutrophic lakes
/ Eutrophication
/ fatty acids
/ Forming
/ Gene sequencing
/ Korean Peninsula
/ Lakes
/ Lakes - microbiology
/ Life Sciences
/ Medical Microbiology
/ Microbiology
/ Microcystis
/ Microcystis - chemistry
/ Microcystis - classification
/ Microcystis - genetics
/ Microcystis - physiology
/ New species
/ nucleotide sequences
/ Original Paper
/ pH effects
/ Phylogeny
/ Plant Sciences
/ Republic of Korea
/ ribosomal RNA
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Sodium chloride
/ Soil Science & Conservation
/ Species Specificity
2017
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Acidovorax lacteus sp. nov., isolated from a culture of a bloom-forming cyanobacterium (Microcystis sp.)
Journal Article
Acidovorax lacteus sp. nov., isolated from a culture of a bloom-forming cyanobacterium (Microcystis sp.)
2017
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Overview
A novel Gram-negative, rod-shaped and motile bacterial strain, designated strain M36
T
, was isolated from a culture of a bloom-forming cyanobacterium,
Microcystis
sp., collected from a eutrophic lake in Korea. Its taxonomic position was investigated by using a polyphasic taxonomic approach. The isolate was found to grow aerobically at 15–42 °C (optimum 25 °C), pH 7.0–11.0 (optimum pH 8.0) and in the presence of 0–1.0% (w/v) NaCl (optimum 0% NaCl) on R2A medium. The phylogenetic analysis based on 16S rRNA gene sequences revealed that the strain M36
T
is closely related to
Acidovorax anthurii
DSM 16745
T
(98.1%),
Acidovorax konjaci
DSM 7481
T
(97.7%) and
Acidovorax avenae
DSM 7227
T
(97.0%) and also formed a clear phylogenetic lineage with other
Acidovorax
species. DNA–DNA relatedness between strain M36
T
and the closely related species of the genus
Acidovorax
was <30%. The major fatty acid components identified included summed feature 3 (C
16:1
ω
7
c
and/or C
16:1
ω
6
c
), C
16:0
and summed feature 8 (C
18:0
ω
7
c
and/or C
18:0
ω
6
c
). The DNA G+C content of strain M36
T
was determined to be 66.8 mol%. Based on above polyphasic evidence, strain M36
T
is concluded to represent a new species of genus
Acidovorax
, for which the name
Acidovorax lacteus
sp. nov. is proposed. The type strain is M36
T
(=KCTC 52220
T
= JCM 31890
T
).
Publisher
Springer International Publishing,Springer Nature B.V
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