Xue-Wei Xu
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Explore the profile of Xue-Wei Xu including associated specialties, affiliations and a list of published articles.
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Articles
162
Citations
1909
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Recent Articles
1.
Rong Z, Xu X, Wu Y
Ecotoxicol Environ Saf
. 2024 May;
278:116445.
PMID: 38733804
Low-density polyethylene (LDPE) conduces massive environmental accumulation due to its high production and recalcitrance to environment. In this study, We successfully enriched and isolated two strains, Nitratireductor sp. Z-1 and...
2.
Xu L, Yue X, Li H, Jian S, Shu W, Cui L, et al.
Environ Sci Technol
. 2024 Apr;
58(16):7087-7098.
PMID: 38651173
Aerobic anoxygenic phototrophic bacteria (AAPB) contribute profoundly to the global carbon cycle. However, most AAPB in marine environments are uncultured and at low abundance, hampering the recognition of their functions...
3.
Wang M, Fu G, Xu X
Int J Syst Evol Microbiol
. 2024 Apr;
74(4).
PMID: 38568198
Two Gram-negative, non-spore-forming, non-motile, non-flagellated bacteria, designated strains D6 and DH64, were isolated from surface water of the Pacific Ocean. For strain D6, growth occurred at 10-40 °C, pH 5.5-9.0...
4.
Wang Y, You H, Bu Y, Zhou P, Xu L, Fu G, et al.
Int J Syst Evol Microbiol
. 2024 Mar;
74(3).
PMID: 38546450
Two Gram-stain-negative, rod-shaped and non-motile strains, designated as DY56-A-20 and G39, were isolated from deep-sea sediment of the Pacific Ocean and deep-sea seawater of the Indian Ocean, respectively. Strain DY56-A-20...
5.
Liu Q, Chen Y, Xu X
Front Microbiol
. 2023 Dec;
14:1273211.
PMID: 38156017
Ammonia-oxidizing archaea (AOA) and bacteria (AOB), nitrite-oxidizing bacteria (NOB), and complete ammonia oxidizers (comammox) are responsible for nitrification in nature; however, some groups have been reported to utilize labile-dissolved organic...
6.
Rong Z, Ding Z, Wu Y, Xu X
Sci Total Environ
. 2023 Oct;
907:167993.
PMID: 37866604
Low-density polyethylene (LDPE), which accounts for 20% of the global plastic production, is discharged in great quantities into the ocean, threatening marine life and ecosystems. Marine microorganisms have previously been...
7.
Wei B, Hu G, Zhou Z, Yu W, Du A, Yang C, et al.
Microbiome
. 2023 Jun;
11(1):144.
PMID: 37370187
Background: Marine prokaryotes are a rich source of novel bioactive secondary metabolites for drug discovery. Recent genome mining studies have revealed their great potential to bio-synthesize novel secondary metabolites. However,...
8.
Yue X, Xu L, Cui L, Fu G, Xu X
Mar Genomics
. 2023 May;
70:101045.
PMID: 37245381
Carbon fixation by chemoautotrophic microorganisms in the dark ocean makes a large contribution to oceanic primary production and the global carbon cycle. In contrast to the Calvin cycle-dominated carbon-fixing pathway...
9.
Fu Y, Wu Z, Kong Y, Xu X, Sun C, Wu Y
Int J Syst Evol Microbiol
. 2023 Apr;
73(4).
PMID: 37074312
Three strains, TT30, TT37 and L3, were isolated from tidal flat samples. Cells were Gram-stain-negative, non-motile and rod shaped. Cells of strains TT30 and TT37 were able to grow in...
10.
Guo L, Yi L, Wang M, Qian Y, Xu X, Fu G
Int J Syst Evol Microbiol
. 2023 Mar;
73(3).
PMID: 37000637
A Gram-stain-negative, non-motile, rod-shaped bacterial strain, designated C281, was isolated from seawater sampled at the Marshallese seamount chain. Results of 16S rRNA gene analysis revealed that strain C281 was most...