Wu Yue-Hong, Cheng Hong, Xu Lin, Jin Xiong-Bin, Wang Chun-Sheng, Xu Xue-Wei
Key Laboratory of Marine Ecosystem and Biogeochemistry, Second Institute of Oceanography, State Oceanic Administration, Hangzhou, P. R. China.
PLoS One. 2017 Jun 22;12(6):e0179997. doi: 10.1371/journal.pone.0179997. eCollection 2017.
Strains JW1T and JW3, isolated from surface seawater of the Arabian Sea, were subjected to polyphasic taxonomic analysis. Cells of both strains were Gram-stain-negative, aerobic, and rod-shaped. They formed violet pigment and produced violacein. On the basis of 16S rRNA gene sequence analysis, strains JW1T and JW3 showed high 16S rRNA gene sequence similarity with Pseudoalteromonas byunsanensis JCM12483T (98.2%), P. shioyasakiensis SE3T (97.8%), P. arabiensis JCM 17292T (97.3%), and P. gelatinilytica NH153T (97.1%). The 16S rRNA gene sequence similarity between JW1T and JW3 was 100%. Phylogenetic analyses revealed that both strains fell within the cluster of the genus Pseudoalteromonas and represented an independent lineage. The average nucleotide identity and in silico DNA-DNA hybridization values between JW1T and type strains of the closely related Pseudoalteromonas species were 70.9-83.3% and 20.0-26.4%, respectively. The sole respiratory quinone in both strains is ubiquinone 8 (Q-8). The principal fatty acids are summed feature 3 (C16:1ω7c and/or iso-C15:0 2OH), C18:1ω7c, and C16:0. The major polar lipids are phosphatidylethanolamine, phosphatidylglycerol, one unidentified glycolipid, one unidentified aminolipid, and one unidentified phospholipid. The DNA G+C content was 43.3 mol%. Differential phylogenetic distinctiveness, chemotaxonomic differences, and phenotypic properties indicated that strains JW1T and JW3 could be differentiated from the Pseudoalteromonas species with validly published names. Therefore, it is proposed that strains JW1T and JW3 represent a novel species of the genus Pseudoalteromonas, for which the name Pseudoalteromonas amylolytica sp. nov. (type strain, JW1T = CGMCC 1.15681T = KCTC 52406T = MCCC 1K02162T) is proposed.
从阿拉伯海表层海水中分离出的JW1T和JW3菌株进行了多相分类分析。两株菌的细胞均为革兰氏阴性、需氧且呈杆状。它们形成紫色色素并产生紫菌素。基于16S rRNA基因序列分析,JW1T和JW3菌株与不산假交替单胞菌JCM12483T(98.2%)、盐崎假交替单胞菌SE3T(97.8%)、阿拉伯假交替单胞菌JCM 17292T(97.3%)和明胶分解假交替单胞菌NH153T(97.1%)显示出较高的16S rRNA基因序列相似性。JW1T和JW3之间的16S rRNA基因序列相似性为100%。系统发育分析表明,两株菌均属于假交替单胞菌属的聚类,并代表一个独立的谱系。JW1T与密切相关的假交替单胞菌属模式菌株之间的平均核苷酸同一性和电子DNA-DNA杂交值分别为70.9-83.3%和20.0-26.4%。两株菌唯一的呼吸醌是泛醌8(Q-8)。主要脂肪酸为总和特征3(C16:1ω7c和/或异-C15:0 2OH)、C18:1ω7c和C16:0。主要极性脂类为磷脂酰乙醇胺、磷脂酰甘油、一种未鉴定的糖脂、一种未鉴定的氨基脂和一种未鉴定的磷脂。DNA G+C含量为43.3 mol%。系统发育差异、化学分类差异和表型特性表明,JW1T和JW3菌株可与已有效发表名称的假交替单胞菌属物种区分开来。因此,建议将JW1T和JW3菌株代表假交替单胞菌属的一个新物种,命名为解淀粉假交替单胞菌(Pseudoalteromonas amylolytica sp. nov.)(模式菌株,JW1T = CGMCC 1.15681T = KCTC 52406T = MCCC 1K02162T)。