Erwinia aeris sp. nov., A Novel Bacterium Isolated from the Surface of an Ore in Hubei Province, China
文献类型: 外文期刊
作者: He Bao Guo;Hong Tu Zhu;Yi Fan Zhang;Fu Yang;Xiao Tong Ma;Shi Gui Li;Hai Lei Wei;Xiao Xia Zhang
作者机构:
关键词: Erwinia aeris sp. nov.
期刊名称: Current microbiology
ISSN: 1432-0991
年卷期: 2025 年 82 卷 3 期
页码:
收录情况: SCIE(2025版)
摘要: A novel Gram-stain-negative, phosphate-solubilizing and siderophore producing bacterium, which we designated as strain ACCC 02193T, was separated from ore, collected in Zhongxiang, Hubei of China. Phylogenetic analysis based on 16S rRNA gene sequences showed strain ACCC 02193T is in the genus Erwinia and had highest similarities to Erwinia tasmaniensis DSM 17950T (99.32%) and Erwinia billingiae DSM 17872T (98.77%). However, phylogenomic analyses clearly showed that the strain ACCC 02193T was most closely related to Erwinia phyllosphaerae CMYE1T. The strain grew at 28 °C–30 °C optimally, with 0–6% (w/v) NaCl (optimum 5%), and in the range of pH 4.0–10.0 (optimum pH 8.0). Menaquinone was identified as Q-8. The predominant fatty acids (> 10.0%) were C16:0, C17:0 cyclo, summed feature 3 (C16:1ω7c and/or C16:1ω6c) and summed feature 8 (C18:1ω7c and/or C18:1ω6c). Genome comparisons showed that the strain shared ≤ 82.8% average nucleotide identity (ANI) and ≤ 27.2% in silico DNA–DNA hybridization (DDH) values with closely related type strains, respectively, which supported our conclusion that ACCC 02193T represented a novel species in the genus Erwinia. The DNA G+C content of the strain was 55.7%. Based on the results of physiological and biochemical characteristics, genotypic data, as well as genome comparisons, we demonstrated that type strain ACCC 02193T (= GDMCC 1.4563T = JCM 37069T) is a novel species in the genus Erwinia, and we propose the name Erwinia aeris sp. nov.
分类号:
- 相关文献
作者其他论文 更多>>
-
Cauispirillum nitrogeniifigens gen. nov., sp. nov., a new member of the family Rhodospirillaceae isolated from oil sludge
作者:Jiang Wei Fu;Du Xiang Zheng;Dao Feng Zhang;Yu Meng Wang;Xiao Xia Zhang;Lei Wang
关键词:Cauispirillum nitrogeniifigens;oil sludge;Rhodospirillaceae
-
Bradyrhizobium tunisiense sp. nov., a novel rhizobial species isolated from Acacia saligna nodules
作者:Jihed Hsouna;Houda Zouagui;Takwa Gritli;Houda Ilahi;Jia Cheng Han;Muhammad Sulman;Walid Ellouze;Xiao Xia Zhang;Maroua Mansouri;Mustapha Missbah El Idrissi;Soufiane Alami;Pierre Emmanuel Courty;Daniel Wipf;Abdelkader Bekki;James T. Tambong;Bacem Mnasri
关键词:Acacia saligna;Bradyrhizobium;phylogenomics;rhizobia;whole genomes
-
Pseudomonas syringae lytic transglycosylase HrpH interacts with host ubiquitin ligase ATL2 to modulate plant immunity
作者:Jun Zhou Li;Yi Lin Gu;Wei Zhang;Shen Cong;Ruo Na Wang;Yi Nan Ma;Ya Jin;Hai Lei Wei
关键词:ATL2;CP: Microbiology;CP: Plants;E3 ubiquitin ligase;HrpH;lytic transglycosylase;Pseudomonas syringae;type III secretion system
-
Pseudomonas cold shock proteins suppress bacterial effector translocation in Nicotiana benthamiana
作者:Shen Cong;Jun Zhou Li;Mei Ran Zhang;Hai Lei Wei;Wei Zhang
关键词:bacterial effector translocation;cold shock proteins;Nicotiana benthamiana;plant immunity;Pseudomonas
-
Pseudomonas hefeiensis sp. nov., isolated from the rhizosphere of multiple cash crops in China
作者:Kaiji Liao;Qiang Li;Jun Zhou Li;Hai Lei Wei
关键词:crops rhizosphere;plant growth-promoting rhizobacteria;polyphasic taxonomy;Pseudomonas
-
Rhizobium aouanii sp. nov., efficient nodulating rhizobia isolatefrom Acacia saligna roots in Tunisia
作者:Jihed Hsouna;Takwa Gritli;Houda Ilahi;Jia Cheng Han;Walid Ellouze;Xiao Xia Zhang;Maroua Mansouri;Praveen Rahi;Mustapha Missbah El Idrissi;Mouad Lamrabet;Pierre Emmanuel Courty;Daniel Wipf;Abdelkader Bekki;James T. Tambong;Bacem Mnasri
关键词:Acacia saligna;nodules;rhizobia;Rhizobium aouanii;Rhizobium leguminosarum complex
-
Phenotypic and Genomic Characterization of Pseudomonas wuhanensis sp. nov., a Novel Species with Promising Features as a Potential Plant Growth-Promoting and Biocontrol Agent
作者:Jiawei Hou;Kaiji Liao;Yong Jie Zhang;Jun Zhou Li;Hai Lei Wei
关键词:biological control;novel species;plant growth-promoting rhizobacteria;Pseudomonas wuhanensissp. nov;taxonomy