scholarly journals Phytoactinopolyspora endophytica gen. nov., sp. nov., a halotolerant filamentous actinomycete isolated from the roots of Glycyrrhiza uralensis F.

2015 ◽  
Vol 65 (Pt_8) ◽  
pp. 2671-2677 ◽  
Author(s):  
Li Li ◽  
Jin-Biao Ma ◽  
Osama Abdalla Mohamad ◽  
Shan-Hui Li ◽  
Ghenijan Osman ◽  
...  

A novel endophytic actinomycete, designated strain EGI 60009T, was isolated from the roots of Glycyrrhiza uralensis F. collected from Xinjiang Province, north-west China. The isolate was able to grow in the presence of 0–9 % (w/v) NaCl. Strain EGI 60009T had particular morphological properties: the substrate mycelia fragmented into rod-like elements and aerial mycelia differentiated into short spore chains. ll-2, 6-Diaminopimelic acid was the cell-wall diamino acid and rhamnose, galactose and glucose were the cell-wall sugars. MK-9(H4) was the predominant menaquinone. The major fatty acids of strain EGI 60009T were iso-C15 : 0, anteiso-C15 : 0, anteiso-C17 : 0, iso-C17 : 0, iso-C17 : 1 and I/anteiso-C17 : 0 B. Mycolic acids were absent. The DNA G+C content of strain EGI 60009T was 70.4 mol%. Phylogenetic analysis based on the 16S rRNA gene sequence indicated that strain EGI 60009T belongs to the family Jiangellaceae and formed a distinct clade in the phylogenetic tree. 16S rRNA gene sequence similarities between strain EGI 60009T and other members of the genera Jiangella and Haloactinopolyspora were 96.1–96.4 and 95.7–96.0 %, respectively. Based on these results and supported by morphological, physiological and chemotaxonomic data and numerous phenotypic differences, a novel species of a new genus, Phytoactinopolyspora endophytica gen. nov., sp. nov., is proposed. The type strain of Phytoactinopolyspora endophytica is EGI 60009T ( = KCTC 29657T = CPCC204078T).

Author(s):  
Shuhei Yabe ◽  
Yoshifumi Aiba ◽  
Yasuteru Sakai ◽  
Masaru Hazaka ◽  
Akira Yokota

A thermophilic, Gram-positive bacterium that formed a branched vegetative mycelium was isolated from compost. The strain, designated I3T, grew at temperatures between 35 and 62 °C, with optimum growth at 50–55 °C. No growth was observed below 29 °C or above 65 °C. The pH range for growth was 5.7–10.0, the pH for optimum growth was 7.0 and no growth was observed below pH 5.6 or above pH 10.8. The DNA G+C content of strain I3T was 69.2 mol%. The major fatty acids found were C15 : 0 iso (14.2 %), C15 : 0 anteiso (12.1 %), C17 : 0 iso (16.3 %) and C17 : 0 anteiso (21.7 %). The major menaquinones were MK-9(H4), MK-10(H4) and MK-11(H4). The cell wall contained glutamic acid, glycine, alanine and ll-diaminopimelic acid in a molar ratio of 1.0 : 3.9 : 0.6 : 0.5. The polar lipids consisted of ninhydrin-positive phosphoglycolipids, phosphatidylglycerol, diphosphatidylglycerol and an unknown glycolipid. The cell-wall sugars were rhamnose and arabinose. 16S rRNA gene sequence analysis assigned this actinomycete to the family Nocardioidaceae, but its 16S rRNA gene sequence shared no more than 95.5 % similarity with those of other members of the family. The chemotaxonomic and phenotypic characteristics of strain I3T differed in some respects from those of members of the genus Actinopolymorpha, the most closely related genus. Therefore, strain I3T represents a novel species in a new genus of the family Nocardioidaceae, for which the name Thermasporomyces composti gen. nov., sp. nov. is proposed. The type strain of the type species is I3T (=JCM 16421T=DSM 22891T).


2014 ◽  
Vol 64 (Pt_10) ◽  
pp. 3335-3340 ◽  
Author(s):  
KyungHwa Won ◽  
MooChang Kook ◽  
Tae-Hoo Yi

A Gram-staining-positive, non-spore-forming, rod-shaped, non-motile and aerobic bacterium, strain THG-e54T, was isolated from soil of a flowerbed in Bucheon, South Korea. The taxonomic position of this bacterium was determined in an investigation based on a polyphasic approach. 16S rRNA gene sequence analysis revealed a clear affiliation of strain THG-e54T with the genus Terrabacter . Strain THG-e54T showed the closest phylogenetic relationship with Terrabacter tumescens DSM 20308T with a 16S rRNA gene sequence similarity of 98.6 %. The G+C content of the genomic DNA was 71.0 mol%. The major cellular fatty acids of strain THG-e54T were iso-C15 : 0 and iso-C16 : 0, and the predominant menaquinone was menaquinone MK-8(H4). The major polar lipids were diphosphatidylglycerol, phosphatidylethanolamine, phosphatidylglycerol, phosphatidylinositol, an unidentified amino-containing phosphoglycolipid, unidentified phospholipids, an unidentified aminolipid and an unidentified aminophospholipid. The cell-wall peptidoglycan type was ll-diaminopimelic acid and the cell-wall sugars were glucose and ribose. DNA–DNA hybridization experiments revealed a low level of DNA–DNA relatedness (less than 35.2 %) between strain THG-e54T and its five closest relatives. The combined phenotypic, chemotaxonomic and phylogenetic data showed that strain THG-e54T could be clearly distinguished from closely related recognized members of the genus Terrabacter . Therefore the results of this study indicated the existence of a novel species of the genus Terrabacter , for which we propose the name Terrabacter koreensis sp. nov., with strain THG-e54T ( = KACC 17589T = JCM 19342T) as the type strain.


2006 ◽  
Vol 56 (11) ◽  
pp. 2579-2582 ◽  
Author(s):  
Jee-Min Lim ◽  
Che Ok Jeon ◽  
Dong-Jin Park ◽  
Li-Hua Xu ◽  
Cheng-Lin Jiang ◽  
...  

Strain B538T is a Gram-positive, motile, rod-shaped bacterium, which was isolated from Xinjiang province in China. This organism grew optimally at 30–35 °C and pH 8.0–8.5. Phylogenetic analysis based on 16S rRNA gene sequences showed that strain B538T belonged to the genus Paenibacillus and chemotaxonomic data (DNA G+C content, 47.0 mol%; major isoprenoid quinone, MK-7; cell wall type, A1γ meso-diaminopimelic acid; major fatty acids, anteiso-C15 : 0 and C16 : 0) supported affiliation of the isolate with the genus Paenibacillus. Comparative 16S rRNA gene sequence analyses showed that the isolate was most closely related to Paenibacillus glycanilyticus DS-1T, with 16S rRNA gene sequence similarity of 98.1 %; sequence similarities to other members of the genus Paenibacillus used in the phylogenetic tree were less than 96.5 %. The DNA–DNA relatedness between strain B538T and P. glycanilyticus DS-1T was about 8.0 %. On the basis of physiological and molecular properties, strain B538T (=KCTC 3952T=DSM 16970T) is proposed as the type strain of a novel species within the genus Paenibacillus, for which the name Paenibacillus xinjiangensis sp. nov. is proposed.


2011 ◽  
Vol 61 (8) ◽  
pp. 1954-1961 ◽  
Author(s):  
An Coorevits ◽  
Niall A. Logan ◽  
Anna E. Dinsdale ◽  
Gillian Halket ◽  
Patsy Scheldeman ◽  
...  

A polyphasic taxonomic study was performed on 22 thermotolerant, aerobic, endospore-forming bacteria from dairy environments. Seventeen isolates were retrieved from raw milk, one from a filter cloth and four from grass, straw or milking equipment. These latter four isolates (R-6546, R-7499, R-7764 and R-7440) were identified as Bacillus thermoamylovorans based on DNA–DNA hybridizations (values above 70 % with Bacillus thermoamylovorans LMG 18084T) but showed discrepancies in characteristics with the original species description, so an emended description of this species is given. According to 16S rRNA gene sequence analysis and DNA–DNA hybridization experiments, the remaining 18 isolates (R-6488T, R-28193, R-6491, R-6492, R-7336, R-33367, R-6486, R-6770, R-31288, R-28160, R-26358, R-7632, R-26955, R-26950, R-33520, R-6484, R-26954 and R-7165) represented one single species, most closely related to Bacillus thermoamylovorans (93.9 % 16S rRNA gene sequence similarity), for which the name Bacillus thermolactis is proposed. Cells were Gram-stain-positive, facultatively anaerobic, endospore-forming rods that grew optimally at 40–50 °C. The cell wall peptidoglycan type of strain R-6488T, the proposed type strain, was A1γ based on meso-diaminopimelic acid. Major fatty acids of the strains were C16 : 0 (28.0 %), iso-C16 : 0 (12.1 %) and iso-C15 : 0 (12.0 %). MK-7 was the predominant menaquinone, and major polar lipids were diphosphatidylglycerol, phosphatidylglycerol and some unidentified phospholipids. DNA G+C content was 35.0 mol%. Phenotypic properties allowed discrimination from other thermotolerant species of the genus Bacillus and supported the description of the novel species Bacillus thermolactis, with strain R-6488T ( = LMG 25569T  = DSM 23332T) as the proposed type strain.


2014 ◽  
Vol 64 (Pt_5) ◽  
pp. 1495-1500 ◽  
Author(s):  
Min Wu ◽  
Guiqin Yang ◽  
Zhen Yu ◽  
Li Zhuang ◽  
Yingqiang Jin ◽  
...  

Two Gram-stain-positive, rod-shaped and endospore-forming bacteria, designated WM-1T and WM-4, were isolated from a paddy soil and a forest soil, respectively, in South China. Comparative 16S rRNA gene sequence analyses showed that both strains were members of the genus Oceanobacillus and most closely related to Oceanobacillus chironomi LMG 23627T with pairwise sequence similarity of 96.0 %. The isolates contained menaquinone-7 (MK-7) as the respiratory quinone and anteiso-C15 : 0, anteiso-C17 : 0 and iso-C15 : 0 as the major fatty acids (>10 %). Polar lipids consisted of a predominance of diphosphatidylglycerol and moderate to minor amounts of phosphatidylglycerol and phosphatidylinositol. The cell-wall peptidoglycan contained meso-diaminopimelic acid. The DNA G+C content was 38.6–39.2 mol%. The 16S rRNA gene sequence of strain WM-1T displayed 99.7 % similarity to that of strain WM-4, and DNA–DNA hybridization between the two strains showed a relatedness value of 91 %. Based on the results of this polyphasic study, strains WM-1T and WM-4 represent a novel species in the genus Oceanobacillus , for which the name Oceanobacillus luteolus sp. nov. is proposed. The type strain is WM-1T ( = KCTC 33119T = CGMCC 1.12406T).


2012 ◽  
Vol 62 (Pt_3) ◽  
pp. 693-697 ◽  
Author(s):  
Peter Kämpfer ◽  
Nicole Lodders ◽  
Iris Grün-Wollny ◽  
Karin Martin ◽  
Hans-Jürgen Busse

A Gram-stain-positive, non-spore-forming bacterium (GW5-5797T) was isolated on soil extract agar from sand collected at a depth of 5 m in the Caribbean Sea near Grenada. 16S rRNA gene sequence analysis and similarity studies showed that strain GW5-5797T belongs to the genus Nocardia, and is most closely related to Nocardia speluncae N2-11T (99.2 % similarity) and Nocardia jinanensis 04-5195T (99.2 %) and more distantly related to Nocardia rhamnosiphila 202GMOT (98.6 %) and other Nocardia species. Strain GW5-5797T could be distinguished from all other recognized Nocardia species by sequence similarity values less than 98.5 %. The peptidoglycan diamino acid was meso-diaminopimelic acid. Strain GW5-5797T exhibited a quinone system with the predominant compounds MK-8(H4ω-cyclo) and MK-8(H2). The polar lipid profile of GW5-5797T consisted of the major compounds diphosphatidylglycerol, phosphatidylethanolamine and an unidentified glycolipid, moderate amounts of phosphatidylinositol and a phosphatidylinositol mannoside and minor amounts of several lipids including a second phosphatidylinositol mannoside. The polyamine pattern contained the major compound spermine and moderate amounts of spermidine. The major fatty acids were C16 : 0, C18 : 1ω9c and 10-methyl C18 : 0. These chemotaxonomic traits are in excellent agreement with those of other Nocardia species. The results of DNA–DNA hybridizations and physiological and biochemical tests allowed genotypic and phenotypic differentiation of strain GW5-5797T from the most closely related species, showing 16S rRNA gene sequence similarities >98.5 %. Strain GW5-5797T therefore merits separate species status, and we propose the name Nocardia grenadensis sp. nov., with the type strain GW5-5797T ( = CCUG 60970T  = CIP 110294T).


2011 ◽  
Vol 61 (5) ◽  
pp. 1073-1077 ◽  
Author(s):  
Azusa Shibazaki ◽  
Yuta Omoto ◽  
Takuji Kudo ◽  
Takashi Yaguchi ◽  
Akihiro Saito ◽  
...  

A Gram-staining-positive bacterium, designated AS-0823T, which formed spiral spore chains on the aerial mycelium, was isolated from the intestinal tract of Armadillidium vulgare, a small terrestrial crustacean commonly found on the ground around houses in Japan. 16S rRNA gene sequence analysis showed that the isolate belonged to the genus Streptomyces and was most closely related to Streptomyces longisporus ISP 5166T (98.6 % 16S rRNA gene sequence similarity), Streptomyces curacoi NBRC 12761T (98.4 %) and Streptomyces griseoruber NBRC 12873T (98.4 %). The affiliation of strain AS-0823T to the genus Streptomyces was supported by chemotaxonomic data: iso-C16 : 0, anteiso-C15 : 0, C16 : 0, iso-C15 : 0 and anteiso-C17 : 0 as the major cellular fatty acids, ll-diaminopimelic acid as the characteristic diamino acid in the peptidoglycan and the absence of mycolic acids. DNA–DNA hybridization and physiological and biochemical analysis supported the differentiation of strain AS-0823T from S. longisporus JCM 4395T. Therefore, strain AS-0823T represents a novel species, for which the name Streptomyces coacervatus sp. nov. is proposed. The type strain is AS-0823T ( = IFM 11055T  = DSM 41983T  = JCM 17138T).


Author(s):  
Ho-Won Chang ◽  
Young-Do Nam ◽  
Hyuk-Yong Kwon ◽  
Ja Ryeong Park ◽  
Jung-Sook Lee ◽  
...  

A moderately halophilic, aerobic, Gram-negative bacterium was isolated from a tidal flat area of Dae-Chun, Chung-Nam, Korea. The strain, designated mano11T, comprised rod-shaped cells that were motile by means of polar flagella. It grew with 3–12 % NaCl and at 4–37 °C and pH 5.3–9.3. The predominant menaquinone present in this strain was MK-7 and diaminopimelic acid was not found in the cell-wall peptidoglycan. A phylogenetic analysis based on 16S rRNA gene sequences showed that strain mano11T belongs to the genus Marinobacterium. Strain mano11T exhibited 92.8–98.3 % 16S rRNA gene sequence similarity when compared with the type strains of three other species of the genus Marinobacterium. DNA–DNA hybridization between strain mano11T and Marinobacterium georgiense DSM 11526T, its closest relative in terms of 16S rRNA gene sequence similarity, was 13 %. On the basis of the phenotypic, genetic and phylogenetic data, strain mano11T represents a novel species of the genus Marinobacterium, for which the name Marinobacterium halophilum sp. nov. is proposed. The type strain is mano11T (=KCTC 12240T=DSM 17586T).


2011 ◽  
Vol 61 (6) ◽  
pp. 1350-1355 ◽  
Author(s):  
Hao-Jie Jin ◽  
Yu-Guang Zhou ◽  
Hong-Can Liu ◽  
San-Feng Chen

A nitrogen-fixing bacterium, designated strain Be17T, was isolated from rhizosphere soil of Begonia semperflorens planted in Beijing Botanical Garden, PR China. Phylogenetic analyses based on a segment of the nifH gene sequence and a full-length 16S rRNA gene sequence revealed that strain Be17T was a member of the genus Paenibacillus. High levels of 16S rRNA gene sequence similarity were found between strain Be17T and Paenibacillus graminis RSA19T (97.9 %), Paenibacillus sonchi LMG 24727T (97.8 %), Paenibacillus riograndensis CECT 7330T (96.2 %) and Paenibacillus borealis DSM 13188T (96.1 %), respectively. Levels of 16S rRNA gene sequence similarity between strain Be17T and the type strains of other recognized members of the genus Paenibacillus were below 96.0 %. However, the DNA–DNA hybridization values between strain Be17T and P. graminis RSA19T, P. sonchi LMG 24727T and P. riograndensis CECT 7330T were 47.9 %, 38.7 % and 37.5 %, respectively. The DNA G+C content of strain Be17T was 52.9 mol%. The major fatty acid component of strain Be17T was anteiso-branched C15 : 0 (30.92 %). The major isoprenoid quinone was MK-7. The cell-wall peptidoglycan contained meso-diaminopimelic acid as the diagnostic diamino acid. On the basis of its phenotypic characteristics, 16S rRNA gene sequences, DNA G+C content, DNA–DNA relatedness, chemotaxonomic properties and nifH gene sequence, strain Be17T represents a nitrogen-fixing strain of a novel species of the genus Paenibacillus, for which the name Paenibacillus jilunlii sp. nov. is proposed. The type strain is Be17T ( = CGMCC 1.10239T = DSM 23019T).


2015 ◽  
Vol 65 (Pt_3) ◽  
pp. 879-884 ◽  
Author(s):  
Peter Kämpfer ◽  
Stefanie P. Glaeser ◽  
Hans-Jürgen Busse ◽  
Usama Ramadan Abdelmohsen ◽  
Safwat Ahmed ◽  
...  

A Gram-staining-positive, aerobic organism, isolated from the Red Sea sponge Spheciospongia vagabunda was investigated to determine its taxonomic position. On the basis of results of 16S rRNA gene sequence analysis strain EG49T was most closely related to Actinokineospora cibodasensis and Actinokineospora baliensis (both 97.3 % similarity) and Actinokineospora diospyrosa and Actinokineospora auranticolor (both 97.0 % similarity). The 16S rRNA gene sequence similarity to all other species of the genus Actinokineospora was <97.0 %. The quinone system of strain EG49T contained the menaquinones MK-9(H4) (47 %), MK-9(H6) (27 %) and MK-9(H2) (15 %) in major amounts. Minor amounts of MK-7(H4) (2 %), MK-9(H0) (1 %), MK-9(H8) (3 %) and MK-10(H4) (3 %) were detected as well in addition to MK-8(H4), MK-8(H6), MK-10(H2) and MK-10(H6) (all <1 %). The diagnostic diamino acid of the peptidoglycan was meso-diaminopimelic acid. In the polar lipid profile, diphosphatidylglycerol, phosphatidylethanolamine and hydroxyphosphatidylethanolamine were predominant. Phosphatidylinositol-mannoside, two unidentified phospholipids and two glycoglipids as well as one aminoglycolipid, one aminolipid and one unidentified lipid were found in addition. The fatty acid profile was composed of mainly iso-branched fatty acids: iso-C16 : 0, iso-C14 : 0, iso-C15 : 0 and iso-C16 : 1H. All these findings clearly supported the classification of the strain as representing a member of the genus Actinokineospora . In addition, the results of physiological and biochemical tests also allowed phenotypic differentiation of strain EG49T from the most closely related species of the genus Actinokineospora . Strain EG49T represents a novel species of the genus Actinokineospora , for which we propose the name Actinokineospora spheciospongiae sp. nov., with strain EG49T ( = DSM 45935T = CCM 8480T = LMG 27700T) as the type strain.


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