Description of Qipengyuania profunda sp. nov., isolated from deep seawater of the Amundsen Sea (Antarctica), and reclassification of Qipengyuania aerophila Liu et al. 2022 as a later heterotypic synonym of Qipengyuania pacifica Tareen et al. 2022
Cited 0 time in
Cited 0 time in
-
Title
-
Description of Qipengyuania profunda sp. nov., isolated from deep seawater of the Amundsen Sea (Antarctica), and reclassification of Qipengyuania aerophila Liu et al. 2022 as a later heterotypic synonym of Qipengyuania pacifica Tareen et al. 2022
-
Other Titles
-
서남극 아문젠해 심해수에서 분리된 신종 미생물에 관한 보고
-
Authors
-
Lee Bo Min
Choi Jy Young
Lee Su Yeon
Rho Ami
Yun, Sukyoung
Lee, Won Sang
Cho Byung Cheol
Hwang Chung Yeon
-
Keywords
-
Amundsen Sea; Deep seawater; Qipengyuania profunda sp. nov.
-
Issue Date
-
2025-02
-
Citation
-
Lee Bo Min, et al. 2025. "Description of Qipengyuania profunda sp. nov., isolated from deep seawater of the Amundsen Sea (Antarctica), and reclassification of Qipengyuania aerophila Liu et al. 2022 as a later heterotypic synonym of Qipengyuania pacifica Tareen et al. 2022". INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, 75(3): 0-0.
-
Abstract
-
Gram-stain-negative, aerobic, rod-shaped bacterial strains, designated HL-TH1T and HL-TH5, were isolated from deep seawater (1127 m depth) of the Amundsen Sea, Antarctica. Phylogenetic analyses based on the 16S rRNA gene sequence revealed that strains HL-TH1T and HL-TH5 were members of the genus Qipengyuania with close relatives Qipengyuania aerophila GH25T (99.3%), Qipengyuania pacifica NZ-96T (99.3%), Qipengyuania profundimaris G39T (99.1%) and Qipengyuania citrea RE35F/1T (98.8%). The complete genome sequences of strains HL-TH1T and HL-TH5 comprised a chromosome of 3.2 Mbp and a plasmid of 0.1 Mbp, with DNA G+C content of 64.1%. The whole genome-based comparisons using the average nt identity and digital DNA-DNA hybridization values revealed that both strains belonged to the same genomic species but were clearly discriminated (79.4-85.8% and 21.9-29.3%, respectively) from their close relatives in the genus Qipengyuania. Both strains showed optimal growth at 30 degrees C, pH 6.5-7.0 and 1.5-2.5% sea salts. The major fatty acids of both strains were C18:1 omega 6c and/or C18:1 omega 7c (37.8-38.4%), C17:1 omega 6c (18.1-19.7%) and C16:1 omega 6c and/or C16:1 omega 7c (12.3-16.7%). The major isoprenoid quinone was ubiquinone10. The polar lipids consisted of diphosphatidylglycerol, phosphatidylglycerol, phosphatidylethanolamine, phosphatidylcholine and two unidentified lipids. Hence, we propose that strains HL-TH1T and HL-TH5 are assigned to a novel species belonging to the genus Qipengyuania, for which the name Qipengyuania profunda sp. nov. is proposed. The type strain is HL-TH1T (=KCCM 90517T=JCM 36585T). In addition, Q. aerophila GH25T and Q. pacifica NZ-96T were found to be the same species based on a poly-phasic approach. Therefore, we propose the reclassification of Q. aerophila as a later heterotypic synonym of Q. pacifica.
-
URI
-
https://repository.kopri.re.kr/handle/201206/16502
-
DOI
-
http://dx.doi.org/10.1099/ijsem.0.006713
-
Type
-
Article
-
Station
-
Araon
-
Indexed
-
SCIE
- Appears in Collections
- 2025-2025, 급격한 남극 빙상 용융에 따른 근미래 전지구 해수면 상승 예측기술 개발 (25-25) / 이원상 (PM25020)
- Files in This Item
- There are no files associated with this item.
Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.