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Tae-Kwang Oh

Publications and source records attributed to Tae-Kwang Oh.

At least 73 records · Page 4Linked to original sources

Gaetbulibacter saemankumensis gen. nov., sp. nov., a novel member of the family Flavobacteriaceae isolated from a tidal flat sediment in Korea.

Three Gram-negative, yellow-pigmented, rod-shaped bacterial strains, SMK-12(T), SMK-36 and SMK-45, were isolated from a tidal flat sediment of the Yellow Sea in Korea, and their taxonomic positions were investigated by a polyphasic approach. The three strains grew optimally at 25-30 degrees C and in the presence of 2-3% (w/v) NaCl. They contained MK-6 as the predominant menaquinone. The major cellular fatty acids were iso-C(15:0), iso-C(17:0) 3-OH, iso-C(15:1), anteiso-C(15:0), iso-C(15:0) 3-OH and C(16:1)omega7c and/or iso-C(15:0) 2-OH. The DNA G+C contents of the three strains were 34.7-34.9 mol%. The phylogenetic tree based on 16S rRNA gene sequences revealed that the three strains form one distinct evolutionary lineage supported by a bootstrap value of 100 % within the family Flavobacteriaceae. The three strains exhibited 16S rRNA gene sequence similarity levels of 93.8-94.9% to the nearest phylogenetic neighbours, the genera Algibacter, Bizionia and Formosa. On the basis of differences in phenotypic characteristics and phylogenetic distinctiveness, strains SMK-12(T), SMK-36 and SMK-45 were classified in a novel genus and species, for which the name Gaetbulibacter saemankumensis gen. nov., sp. nov. is proposed. The type strain for the novel species is SMK-12(T) (=KCTC 12379(T)=DSM 17032(T)).

Bacterial Typing Techniques↗

Nocardioides dubius sp. nov., isolated from an alkaline soil.

A Gram-positive, rod- or coccus-shaped bacterial strain, KSL-104(T), was isolated from an alkaline soil from Korea and its taxonomic position was investigated by a polyphasic approach. Strain KSL-104(T) grew optimally at pH 7.0-8.0 and 30 degrees C. It was characterized chemotaxonomically as having a cell-wall peptidoglycan type based on ll-2,6-diaminopimelic acid with MK-8(H(4)) as the predominant menaquinone. The major fatty acid was iso-C(16:0) and the major polar lipids were diphosphatidylglycerol, phosphatidylglycerol, phosphatidylethanolamine and phosphatidylinositol. The DNA G+C content was 70.6 mol%. A neighbour-joining phylogenetic tree based on 16S rRNA gene sequences revealed that strain KSL-104(T) joined the cluster comprising Nocardioides jensenii and Marmoricola aurantiacus. The cellular fatty acid profile of strain KSL-104(T) was different from that of M. aurantiacus. Strain KSL-104(T) and the type strain of N. jensenii exhibited a 16S rRNA gene sequence similarity value of 97.1% and a mean DNA-DNA relatedness value of 13%. Levels of 16S rRNA gene sequence similarity between strain KSL-104(T) and the type strains of other Nocardioides species were in the range 94.0-96.5%. On the basis of phenotypic, phylogenetic and genetic data, strain KSL-104(T) (=KCTC 9992(T)=JCM 13008(T)) represents a novel species of the genus Nocardioides, for which the name Nocardioides dubius sp. nov. is proposed.

Actinomycetales↗

Paenibacillus alkaliterrae sp. nov., isolated from an alkaline soil in Korea.

A Gram-positive, rod-shaped, motile and endospore-forming bacterial strain, KSL-134T, was isolated from an alkaline soil in Korea, and its taxonomic position was investigated by a polyphasic study. Strain KSL-134T grew optimally at pH 7 x 5 and 30 degrees C. Its cell wall peptidoglycan contained meso-diaminopimelic acid. Strain KSL-134T was characterized as having MK-7 as the predominant menaquinone and anteiso-C15 : 0 as the major fatty acid. The DNA G+C content was 49 x 4 mol%. Phylogenetic analyses based on 16S rRNA gene sequences showed that strain KSL-134T formed a distinct lineage within the evolutionary radiation encompassed by the genus Paenibacillus. Similarity levels between the 16S rRNA gene sequence of strain KSL-134T and those of the type strains of recognized Paenibacillus species ranged from 90 x 4 to 96 x 5 %. DNA-DNA relatedness levels and some differential phenotypic properties were enough to distinguish strain KSL-134T from several phylogenetically related Paenibacillus species. On the basis of phenotypic and phylogenetic data, strain KSL-134T (=KCTC 3956T=DSM 17040T) was classified in the genus Paenibacillus as a member of a novel species, for which the name Paenibacillus alkaliterrae sp. nov. is proposed.

DNA, Bacterial↗

Maribacter dokdonensis sp. nov., isolated from sea water off a Korean island, Dokdo.

Two Gram-negative, non-spore-forming, slightly halophilic gliding bacterial strains, DSW-8(T) and DSW-9, were isolated from sea water off a Korean island, Dokdo, of the East Sea, Korea, and their taxonomic position was investigated by a polyphasic study. The two strains grew optimally at 30 degrees C and in the presence of 2-3% (w/v) NaCl. Strains DSW-8(T) and DSW-9 were characterized chemotaxonomically as containing MK-6 as the predominant menaquinone and iso-C(17:0) 3-OH, iso-C(15:0) and iso-C(15:1) as the major fatty acids. Major polar lipids were phosphatidylethanolamine, two unidentified phospholipids, an unidentified glycolipid and an amino group-containing lipid that was ninhydrin-positive. Their DNA G+C contents were 36.1 and 35.9 mol%. Phylogenetic analyses based on 16S rRNA gene sequences showed that strains DSW-8(T) and DSW-9 fell within the genus Maribacter of the family Flavobacteriaceae. Strains DSW-8(T) and DSW-9 exhibited no difference in their 16S rRNA gene sequences and possessed a mean DNA-DNA relatedness level of 89%. Strains DSW-8(T) and DSW-9 exhibited 16S rRNA gene sequence similarity levels of 96.9-98.0% to the type strains of the four recognized Maribacter species, but their low level of DNA-DNA relatedness with these species demonstrated that they constitute a distinct Maribacter species. On the basis of phenotypic and phylogenetic data and genetic distinctiveness, strains DSW-8(T) (=KCTC 12393(T)=DSM 17201(T)) and DSW-9 were classified in the genus Maribacter as members of a novel species, for which the name Maribacter dokdonensis sp. nov. is proposed.

Bacterial Typing Techniques↗

Halobacillus yeomjeoni sp. nov., isolated from a marine solar saltern in Korea.

A Gram-positive or Gram-variable, motile, endospore-forming, halophilic bacterial strain, MSS-402T, was isolated from a marine solar saltern in Korea, and subjected to a polyphasic taxonomic study. Some cells of strain MSS-402T were long filamentous rods. The isolate grew optimally at 37 degrees C and in the presence of 3-5 % (w/v) NaCl. Strain MSS-402T had cell-wall peptidoglycan based on l-orn-d-Asp, MK-7 as the predominant menaquinone and anteiso-C(15 : 0), anteiso-C(17 : 0) and iso-C(16 : 0) as major fatty acids. The DNA G+C content was 42.9 mol%. Phylogenetic analyses based on 16S rRNA gene sequences showed that strain MSS-402T falls within the evolutionary radiation of species of the genus Halobacillus. Levels of 16S rRNA gene sequence similarity between strain MSS-402T and the type strains of recognized Halobacillus species ranged from 98.0 % (with Halobacillus halophilus) to 99.2 % (with Halobacillus litoralis and Halobacillus trueperi). Levels of DNA-DNA binding indicated that strain MSS-402T represents a genomic species that is distinct from recognized Halobacillus species. Strain MSS-402T was differentiated from Halobacillus species by means of several phenotypic characteristics. On the basis of its phenotypic properties and phylogenetic and genetic distinctiveness, strain MSS-402T (=KCTC 3957T=DSM 17110T) should be classified as the type strain of a novel Halobacillus species, for which the name Halobacillus yeomjeoni sp. nov. is proposed.

Bacillaceae↗

Dokdonia donghaensis gen. nov., sp. nov., isolated from sea water.

Two Gram-negative, non-motile, non-spore-forming, slightly halophilic bacterial strains, DSW-1T and DSW-21, were isolated from sea water and subjected to a polyphasic taxonomic study. They grew optimally at 30 degrees C and in the presence of 2 % (w/v) NaCl. Strains DSW-1T and DSW-21 were characterized chemotaxonomically as containing MK-6 as the predominant menaquinone and iso-C15 : 0, iso-C17 : 0 3-OH and iso-C15 : 1 as the major fatty acids. Their DNA G+C content was 38 mol%. Strains DSW-1T and DSW-21 exhibited four nucleotide differences in their 16S rRNA gene sequences and possessed a mean DNA-DNA relatedness level of 78 %. Phylogenetic analyses based on 16S rRNA gene sequences revealed that strains DSW-1T and DSW-21 formed a distinct lineage within the family Flavobacteriaceae. The 16S rRNA gene sequences of strains DSW-1T and DSW-21 had similarity levels of less than 92 x 2 % to the sequences of other members of the family Flavobacteriaceae. There were some differences in phenotypic properties between the two strains and Cellulophaga species, the nearest phylogenetic neighbours. On the basis of phenotypic, phylogenetic and genetic data, strains DSW-1T (=KCTC 12391T=DSM 17200T) and DSW-21 were classified in a novel genus and species, Dokdonia donghaensis gen. nov., sp. nov.

DNA, Bacterial↗

Marinomonas dokdonensis sp. nov., isolated from sea water.

Two Gram-negative, motile, non-spore-forming, slightly halophilic bacteria (strains DSW10-10T and DSW10-19) were isolated from sea water and subjected to a polyphasic taxonomic study. They grew optimally at 30 degrees C and in the presence of 2-3 % (w/v) NaCl. Strains DSW10-10T and DSW10-19 were characterized chemotaxonomically as containing Q-8 as the predominant ubiquinone and C18 : 17c, C16 : 0 and C16 : 17c and/or iso-C15 : 0 2-OH as the major fatty acids. Their DNA G+C contents were 45 x 3-45 x 7 mol%. Strains DSW10-10T and DSW10-19 exhibited a 16S rRNA gene sequence similarity value of 100 % and possessed a mean DNA-DNA relatedness level of 85 %. Phylogenetic analyses based on 16S rRNA gene sequences showed that strains DSW10-10T and DSW10-19 fell within the radiation of the cluster encompassed by the genus Marinomonas. Strains DSW10-10T and DSW10-19 had 16S rRNA gene sequence similarity levels of 95 x 7-97 x 7 % with respect to the type strains of Marinomonas species with validly published names. Levels of DNA-DNA relatedness were low enough to indicate that the two strains constitute a distinct Marinomonas species. On the basis of phenotypic data and phylogenetic and genetic distinctiveness, strains DSW10-10T (=KCTC 12394T=DSM 17202T) and DSW10-19 were placed in the genus Marinomonas as members of a novel species, Marinomonas dokdonensis sp. nov.

Base Composition↗

Sequence-based approach to finding functional lipases from microbial genome databases.

A sequence-based approach was used to retrieve functional lipases from microbial genome databases. Many novel genes assigned as putative lipases were tested using the criteria of the typical lipase sequence rule, based on a consensus sequence of a catalytic triad (Ser, Asp, His) and oxyanion hole sequence (HG). To obtain the lipase genes satisfying the sequence rule, PCR cloning was performed, while the lipase activities were tested using a tributyrin/tricaprylin plate and p-nitrophenyl caproate. Among nine putative lipases from four strains, five functional lipolytic proteins were obtained from Archaeoglobus fulgidus, Deinococcus radiodurans, and Agrobacterium tumefaciens. All five lipases exhibited a relatively low sequence similarity (less than 26.7%) with known lipases and turned out to belong to different lipase families. Accordingly, the current results indicate that the proposed strategic approach based on the microbial genome is an efficient and rapid method for finding novel and functional lipases.

Agrobacterium tumefaciens↗

Nocardioides aquiterrae sp. nov., isolated from groundwater in Korea.

A bacterial strain, GW-9T, which was isolated from groundwater in Korea, was subjected to a polyphasic taxonomic study using phenotypic characterization and phylogenetic and genetic methods. Phylogenetic analysis based on 16S rDNA sequences showed that strain GW-9T forms an evolutionary lineage within the radiation enclosing Nocardioides species and, in particular, a coherent cluster with Nocardioides pyridinolyticus. The cell-wall peptidoglycan type of strain GW-9T was based on LL-diaminopimelic acid as the diamino acid, indicating wall chemotype I. The predominant menaquinone was MK-8(H4). Strain GW-9T had a cellular fatty acid profile containing straight-chain, branched, unsaturated and 10-methyl fatty acids. The major fatty acid was iso-C(16:0). The DNA G+C content of strain GW-9T was 73 mol%. The 16S rDNA of strain GW-9T was 99.2% similar to that of the type strain of Nocardioides pyridinolyticus and 94.9-96.0% similar to sequences of the type strains of other Nocardioides species. Differences in phenotypic characteristics and genetic distinctiveness indicate that strain GW-9T is separate from previously described Nocardioides species. Therefore, on the basis of the data presented, a novel species of the genus Nocardioides, Nocardioides aquiterrae sp. nov., is proposed. The type strain is strain GW-9T (=KCCM 41647T=JCM 11813T).

DNA, Ribosomal↗

Bacillus hwajinpoensis sp. nov. and an unnamed Bacillus genomospecies, novel members of Bacillus rRNA group 6 isolated from sea water of the East Sea and the Yellow Sea in Korea.

Two Gram-positive or -variable, endospore-forming, slightly halophilic strains (SW-72(T) and SW-93) were isolated from sea water of the East Sea and the Yellow Sea in Korea, respectively, and subjected to polyphasic taxonomic study. Both strains had cell-wall peptidoglycan that was based on meso-diaminopimelic acid and MK-7 as the predominant menaquinone. The two strains contained large amounts of saturated and branched fatty acids, with anteiso-C(15 : 0) as the major fatty acid. The DNA G+C contents of strains SW-72(T) and SW-93 were 40.9 and 41.0 mol%, respectively. Phylogenetic analysis based on 16S rDNA sequences showed that strains SW-72(T) and SW-93 fall within the radiation of the cluster that comprises members of the genus Bacillus, particularly Bacillus rRNA group 6. There were five nucleotide differences between the 16S rDNA sequences of strains SW-72(T) and SW-93. The mean level of DNA-DNA relatedness between strains SW-72(T) and SW-93 was 21.5 %. Strains SW-72(T) and SW-93 showed 93.1-95.2 % 16S rDNA sequence similarity to the type strains of Bacillus species that are assigned to rRNA group 6. Strains SW-72(T) and SW-93 could not be differentiated clearly by using their phenotypic properties. On the basis of phenotypic properties, phylogeny and genomic data, it is proposed that strain SW-72(T) (=KCCM 41641(T)=JCM 11807(T)) should be placed in the genus Bacillus as the type strain of a novel species, Bacillus hwajinpoensis sp. nov., and that strain SW-93 (=KCCM 41640=JCM 11806) should be placed in the genus Bacillus as an unnamed Bacillus genomospecies.

Bacillus↗

Shewanella gaetbuli sp. nov., a slight halophile isolated from a tidal flat in Korea.

A Gram-negative, motile, non-spore-forming, rod-shaped strain, TF-27(T) (=KCCM 41648(T)=JCM 11814(T)), was isolated from a tidal flat in Korea. This organism grew well at 25-35 degrees C, with optimum growth at 30 degrees C. Strain TF-27(T) grew optimally in the presence of 2 % NaCl; it did not grow without NaCl or in the presence of >8 % NaCl. Strain TF-27(T) simultaneously contained both menaquinones and ubiquinones as isoprenoid quinones. The predominant menaquinone was MK-7 and the predominant ubiquinones were Q-7 and Q-8. The major fatty acids in strain TF-27(T) were iso-C(15 : 0) (20.6 %) and iso-C(15 : 0) 2-OH and/or C(16 : 1)omega7c (21.1 %). The DNA G+C content of strain TF-27(T) was 42 mol%. Phylogenetic analyses based on 16S rDNA sequences showed that strain TF-27(T) falls within the radiation of the cluster that is encompassed by the genus Shewanella. Levels of 16S rDNA sequence similarity between strain TF-27(T) and the type strains of Shewanella species were 93.2-96.8 %. On the basis of phenotypic properties and phylogenetic data, strain TF-27(T) should be placed in the genus Shewanella as a novel species, for which the name Shewanella gaetbuli sp. nov. is proposed.

Biomass↗

Marinibacillus campisalis sp. nov., a moderate halophile isolated from a marine solar saltern in Korea, with emended description of the genus Marinibacillus.

A Gram-positive, motile, round to ellipsoidal, endospore-forming, rod-shaped bacterial strain, SF-57T, was isolated from a marine solar saltern in Korea. This organism grew between 4 and 39 degrees C, with optimum growth at 30 degrees C. Strain SF-57T grew in the presence of 0.5-15.0% NaCl, with optimum growth at 2-3% NaCl. The peptidoglycan type of strain SF-57T was A1alpha linked directly through l-Lys. In strain SF-57TT, menaquinone-7 (MK-7) was the predominant isoprenoid quinone and anteiso-C(15 : 0) was the major fatty acid. The DNA G+C content was 41.8 mol%. Phylogenetic analyses based on 16S rRNA gene sequences showed that strain SF-57T formed a coherent cluster with Marinibacillus marinus, with a bootstrap resampling value of 100%. The level of 16S rRNA gene sequence similarity between strain SF-57T and M. marinus DSM 1297T was 98.9%. The mean DNA-DNA relatedness level between strain SF-57T and the type strain of M. marinus was 20.6%. Based on phenotypic properties, phylogenetic analyses and genomic data, strain SF-57T merits placement in the genus Marinibacillus as a representative of a novel species, for which the name Marinibacillus campisalis sp. nov. is proposed. The type strain is SF-57T (=KCCM 41644T=JCM 11810T).

Bacillaceae↗

Microbulbifer maritimus sp. nov., isolated from an intertidal sediment from the Yellow Sea, Korea.

A Gram-negative, rod-shaped, non-spore-forming, slightly halophilic bacterium (strain TF-17T) was isolated from an intertidal sediment from the Yellow Sea, Korea. Pigment of strain TF-17T was similar to that of Microbulbifer elongatus, but different from those of Microbulbifer hydrolyticus and Microbulbifer salipaludis. Strain TF-17T was distinguishable from M. elongatus by some phenotypic properties, including motility, optimal growth temperature and others. Phylogenetic analysis based on 16S rDNA sequences showed that strain TF-17TT clustered with the type strains of the three Microbulbifer species with validly published names. Strain TF-17T exhibited 16S rDNA sequence similarity levels of 95.1-95.7% to the type strains of the three Microbulbifer species. The predominant respiratory lipoquinone found in strain TF-17T was ubiquinone-8. The major fatty acid was iso-C(15 : 0) and significant amounts of iso-C(11 : 0) 3-OH and iso-C(17 : 1)omega9c were also present. The DNA G+C content of strain TF-17T was 59.9 mol%. Levels of DNA-DNA relatedness between strain TF-17T and the type strains of the three Microbulbifer species were in the range 10.0-13.0%. On the basis of phenotypic and phylogenetic data and genotypic distinctiveness, strain TF-17T (=KCCM 41774T=JCM 12187T) is proposed as the type strain of a novel species of the genus Microbulbifer, Microbulbifer maritimus sp. nov.

Alteromonadaceae↗

Alteromonas litorea sp. nov., a slightly halophilic bacterium isolated from an intertidal sediment of the Yellow Sea in Korea.

A Gram-negative, motile, non-spore-forming, rod-shaped bacterium, designated strain TF-22T, was isolated from an intertidal sediment in Korea. This organism grew optimally at 30-37 degrees C and in the presence of 2-5% (w/v) NaCl. It did not grow without NaCl or in the presence of more than 14% (w/v) NaCl. Strain TF-22T was characterized chemotaxonomically as having ubiquinone-8 as the predominant respiratory lipoquinone and C(16 : 0), C(16 : 1) omega7c and/or iso-C(15 : 0) 2-OH and C(18 : 1) omega7c as the major fatty acids. The DNA G+C content of strain TF-22T was 46.0 mol%. Phylogenetic analyses based on 16S rDNA sequences showed that strain TF-22T falls within the gamma-subclass of the Proteobacteria and forms a coherent cluster with Alteromonas macleodii and Alteromonas marina. Levels of 16S rDNA similarity between strain TF-22T and the type strains of two Alteromonas species were in the range 98.1-98.6%. The level of DNA-DNA relatedness between strain TF-22T and the type strains of two Alteromonas species was 15.7-18.5%. Therefore, on the basis of phenotypic properties, phylogeny and genomic distinctiveness, strain TF-22T should be placed in the genus Alteromonas as a novel species, for which the name Alteromonas litorea sp. nov. is proposed. The type strain is TF-22TT (=KCCM 41775T=JCM 12188T).

Alteromonas↗

Erythrobacter aquimaris sp. nov., isolated from sea water of a tidal flat of the Yellow Sea in Korea.

Three Gram-negative, non-motile, non-spore-forming, slightly halophilic rods (strains SW-110(T), SW-116 and SW-140) were isolated from sea water of a tidal flat of the Yellow Sea in Korea and subjected to a polyphasic taxonomic study. The three isolates did not produce bacteriochlorophyll a and were characterized chemotaxonomically by having ubiquinone-10 as the predominant respiratory lipoquinone and C(18 : 1)omega7c and C(17 : 1)omega6c as the major fatty acids. The DNA G+C content of the three isolates was between 62.2 and 62.9 mol%. Strains SW-110(T), SW-116 and SW-140 showed no difference in their 16S rRNA gene sequences, and their mean level of DNA-DNA relatedness was 94.8 %. Phylogenetic analyses based on 16S rRNA gene sequences showed that the three strains form a distinct phylogenetic lineage within the cluster comprising Erythrobacter species. Similarities between the 16S rRNA gene sequences of strains SW-110(T), SW-116 and SW-140 and the type strains of Erythrobacter species ranged from 98.4 % (with Erythrobacter longus) to 97.7 % (with Erythrobacter flavus). Levels of DNA-DNA relatedness between strains SW-110(T), SW-116 and SW-140 and the type strains of all recognized Erythrobacter species were in the range 5.3-12.7 %. On the basis of polyphasic taxonomic data, strains SW-110(T), SW-116 and SW-140 were classified as a novel Erythrobacter species, for which the name Erythrobacter aquimaris sp. nov. is proposed. The type strain is SW-110(T) (=KCCM 41818(T)=JCM 12189(T)).

Bacterial Typing Techniques↗

Marinobacter flavimaris sp. nov. and Marinobacter daepoensis sp. nov., slightly halophilic organisms isolated from sea water of the Yellow Sea in Korea.

Two Gram-negative, motile, non-spore-forming and slightly halophilic rods (strains SW-145T and SW-156T) were isolated from sea water of the Yellow Sea in Korea. Strains SW-145T and SW-156T grew optimally at 37 and 30-37 degrees C, respectively, and in the presence of 2-6 % (w/v) NaCl. Strains SW-145T and SW-156T were chemotaxonomically characterized as having ubiquinone-9 as the predominant respiratory lipoquinone and C(16 : 0), C(18 : 1)omega9c, C(16 : 1)omega9c and C(12 : 0) 3-OH as the major fatty acids. The DNA G + C contents of strains SW-145T and SW-156T were 58 and 57 mol%, respectively. Phylogenetic analyses based on 16S rRNA gene sequences showed that strains SW-145T and SW-156T fell within the evolutionary radiation enclosed by the genus Marinobacter. The 16S rRNA gene sequences of strains SW-145T and SW-156T were 94.8 % similar. Strains SW-145T and SW-156T exhibited 16S rRNA gene sequence similarity levels of 94.3-98.1 and 95.4-97.7 %, respectively, with respect to the type strains of all Marinobacter species. Levels of DNA-DNA relatedness, together with 16S rRNA gene sequence similarity values, indicated that strains SW-145T and SW-156T are members of two species that are distinct from seven Marinobacter species with validly published names. On the basis of phenotypic properties and phylogenetic and genotypic distinctiveness, strains SW-145T (= KCTC 12185T = DSM 16070T) and SW-156T (= KCTC 12184T = DSM 16072T) should be placed in the genus Marinobacter as the type strains of two distinct novel species, for which the names Marinobacter flavimaris sp. nov. and Marinobacter daepoensis sp. nov. are proposed.

Alteromonadaceae↗

Kangiella koreensis gen. nov., sp. nov. and Kangiella aquimarina sp. nov., isolated from a tidal flat of the Yellow Sea in Korea.

Two Gram-negative, non-motile, non-spore-forming, rod-shaped organisms, strains SW-125T and SW-154T, were isolated from tidal flat sediment of the Yellow Sea in Korea, and subjected to a polyphasic taxonomic study. Strains SW-125T and SW-154T grew optimally at 30-37 degrees C and in the presence of 2-3 % (w/v) NaCl. They contained ubiquinone-8 (Q-8) as the predominant respiratory lipoquinone and iso-C(15 : 0) as the major fatty acid. The DNA G + C contents of strains SW-125T and SW-154T were 44 mol%. Phylogenetic trees based on 16S rRNA gene sequences revealed that the two strains form deep evolutionary lineages of descent within the gamma-Proteobacteria. Strains SW-125T and SW-154T exhibited 16S rRNA gene sequence similarity levels of less than 90 % to members of the gamma-Proteobacteria used in this analysis. Strains SW-125T and SW-154T showed a 16S rRNA gene sequence similarity level of 98.5 % and a mean DNA-DNA relatedness level of 9.4 %. Therefore, on the basis of phenotypic, phylogenetic and genomic data, a new genus, Kangiella gen. nov., is proposed to accommodate the novel strains, comprising two novel species, Kangiella koreensis sp. nov. (type strain, SW-125T = KCTC 12182T = DSM 16069T) and Kangiella aquimarina sp. nov. (type strain, SW-154T = KCTC 12183T = DSM 16071T).

Bacterial Typing Techniques↗

Hongiella marincola sp. nov., isolated from sea water of the East Sea in Korea.

Two Gram-negative, non-motile, non-spore-forming, rod-shaped strains, SW-2T and SW-26, were isolated from sea water of the East Sea in Korea. These organisms grew optimally at 37 degrees C and in the presence of 2-3 % (w/v) NaCl. They did not grow without NaCl or in the presence of >9 % (w/v) NaCl. Strains SW-2T and SW-26 were characterized chemotaxonomically as having MK-7 as the predominant isoprenoid quinone and iso-C(15 : 0) as the major fatty acid. The DNA G + C content of strains SW-2T and SW-26 was 43 mol%. A neighbour-joining tree based on 16S rRNA gene sequences showed that strains SW-2T and SW-26 fell within the Cytophaga-Flavobacterium-Bacteroides group and formed a coherent cluster with Hongiella species. Strains SW-2T and SW-26 showed a 16S rRNA gene sequence similarity value of 99.9 % and a mean DNA-DNA relatedness level of 87 % to each other. Levels of 16S rRNA gene sequence similarity between strains SW-2T and SW-26 and the type strains of two Hongiella species ranged from 94.2 to 96.6 %. On the basis of phenotypic and chemotaxonomic properties and phylogenetic distinctiveness, strains SW-2T and SW-26 should be placed in the genus Hongiella as members of a novel species, for which the name Hongiella marincola sp. nov. is proposed. The type strain is SW-2T (= KCTC 12180T = DSM 16067T).

Bacterial Typing Techniques↗