Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus Carboxylicivirga

A Gram-stain-negative, facultatively aerobic, beige and slender bacterium, designed N1Y132T, was isolated from a sediment sample taken from coastal zone of Weihai, China (37°34′31.44″ N, 122°9′15″ E). Growth occurred at 15-33°C (optimal 25–28°C), at pH 6.5–8.5 (optimal pH 7.5), in 0–9% (w/v) NaCl (o...

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Main Authors: Tian-Shu Zhang, Ya-Ning Zhang, De-Chen Lu, Ya Gong, Zong-Jun Du
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-08-01
Series:Frontiers in Marine Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmars.2021.731212/full
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spelling doaj-c18bb1d014ca4b34bfeff4fc09f7b42e2021-08-26T05:30:07ZengFrontiers Media S.A.Frontiers in Marine Science2296-77452021-08-01810.3389/fmars.2021.731212731212Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus CarboxylicivirgaTian-Shu Zhang0Ya-Ning Zhang1De-Chen Lu2Ya Gong3Ya Gong4Zong-Jun Du5Zong-Jun Du6Marine College, Shandong University, Weihai, ChinaMarine College, Shandong University, Weihai, ChinaMarine College, Shandong University, Weihai, ChinaMarine College, Shandong University, Weihai, ChinaState Key Laboratory of Microbial Technology, Shandong University, Qingdao, ChinaMarine College, Shandong University, Weihai, ChinaState Key Laboratory of Microbial Technology, Shandong University, Qingdao, ChinaA Gram-stain-negative, facultatively aerobic, beige and slender bacterium, designed N1Y132T, was isolated from a sediment sample taken from coastal zone of Weihai, China (37°34′31.44″ N, 122°9′15″ E). Growth occurred at 15-33°C (optimal 25–28°C), at pH 6.5–8.5 (optimal pH 7.5), in 0–9% (w/v) NaCl (optimal 2.0–2.5%). According to the phylogenetic analysis based on the 16S rRNA gene sequences, strain N1Y132T showed the highest sequence similarity (97.9%) with Carboxylicivirga taeanensis JCM 19490T, followed by C. sediminis JR1T (97.4%), C. mesophila JCM 18290T (96.4%) and C. linearis FB218T (95.1%). Thus, strain N1Y132T was a member of the genus Carboxylicivirga. The average nucleotide identity (ANI) values between strain N1Y132T and C. sediminis JR1T, C. linearis FB218T and C. mesophila JCM 18290T were 74.8%, 71.1%, and 74.9%, respectively. Chemotaxonomic analysis showed that the sole respiratory quinone was MK-7 and the major fatty acids (> 5.0%) included iso-C15:0, anteiso-C15:0, iso-C13:0, iso-C14:0, iso-C15:0 3-OH, and C15:1ω6c. The polar lipids were consisted of a phosphatidylethanolamine, two phosphoaminolipids and six unidentified lipids. The DNA G + C content was 38.1 mol%. Based on the evidence presented in this study, strain N1Y132T represents a novel species of the genus Carboxylicivirga, for which the name Carboxylicivirga marinus sp. nov. is proposed. The type strain is N1Y132T (= KCTC 72934T = MCCC 1H00431T).https://www.frontiersin.org/articles/10.3389/fmars.2021.731212/fullCarboxylicivirga16S rRNA genepolyphasic taxonomydraft genome sequencinggenome analysis
collection DOAJ
language English
format Article
sources DOAJ
author Tian-Shu Zhang
Ya-Ning Zhang
De-Chen Lu
Ya Gong
Ya Gong
Zong-Jun Du
Zong-Jun Du
spellingShingle Tian-Shu Zhang
Ya-Ning Zhang
De-Chen Lu
Ya Gong
Ya Gong
Zong-Jun Du
Zong-Jun Du
Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus Carboxylicivirga
Frontiers in Marine Science
Carboxylicivirga
16S rRNA gene
polyphasic taxonomy
draft genome sequencing
genome analysis
author_facet Tian-Shu Zhang
Ya-Ning Zhang
De-Chen Lu
Ya Gong
Ya Gong
Zong-Jun Du
Zong-Jun Du
author_sort Tian-Shu Zhang
title Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus Carboxylicivirga
title_short Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus Carboxylicivirga
title_full Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus Carboxylicivirga
title_fullStr Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus Carboxylicivirga
title_full_unstemmed Carboxylicivirga marinus sp. nov., Isolated From Marine Sediment, and Genome Insight of the Genus Carboxylicivirga
title_sort carboxylicivirga marinus sp. nov., isolated from marine sediment, and genome insight of the genus carboxylicivirga
publisher Frontiers Media S.A.
series Frontiers in Marine Science
issn 2296-7745
publishDate 2021-08-01
description A Gram-stain-negative, facultatively aerobic, beige and slender bacterium, designed N1Y132T, was isolated from a sediment sample taken from coastal zone of Weihai, China (37°34′31.44″ N, 122°9′15″ E). Growth occurred at 15-33°C (optimal 25–28°C), at pH 6.5–8.5 (optimal pH 7.5), in 0–9% (w/v) NaCl (optimal 2.0–2.5%). According to the phylogenetic analysis based on the 16S rRNA gene sequences, strain N1Y132T showed the highest sequence similarity (97.9%) with Carboxylicivirga taeanensis JCM 19490T, followed by C. sediminis JR1T (97.4%), C. mesophila JCM 18290T (96.4%) and C. linearis FB218T (95.1%). Thus, strain N1Y132T was a member of the genus Carboxylicivirga. The average nucleotide identity (ANI) values between strain N1Y132T and C. sediminis JR1T, C. linearis FB218T and C. mesophila JCM 18290T were 74.8%, 71.1%, and 74.9%, respectively. Chemotaxonomic analysis showed that the sole respiratory quinone was MK-7 and the major fatty acids (> 5.0%) included iso-C15:0, anteiso-C15:0, iso-C13:0, iso-C14:0, iso-C15:0 3-OH, and C15:1ω6c. The polar lipids were consisted of a phosphatidylethanolamine, two phosphoaminolipids and six unidentified lipids. The DNA G + C content was 38.1 mol%. Based on the evidence presented in this study, strain N1Y132T represents a novel species of the genus Carboxylicivirga, for which the name Carboxylicivirga marinus sp. nov. is proposed. The type strain is N1Y132T (= KCTC 72934T = MCCC 1H00431T).
topic Carboxylicivirga
16S rRNA gene
polyphasic taxonomy
draft genome sequencing
genome analysis
url https://www.frontiersin.org/articles/10.3389/fmars.2021.731212/full
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