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王明钰主要从事病原微生物方向,特别是细菌的抗生素耐药性的研究工作。具体地,王明钰的研究工作包括了以下四个方面:
1)新型耐药基因的发现与耐药机制;
2)耐药元件及基因水平转移的调控机制;
3)微生物组重构及微生物组中耐药性分布和传播的特征;
4)面向细菌感染的现代生物技术
- . An integrated microfluidic chip for rapid and multiple antimicrobial susceptibility testing. Analyst, 1398, 2025.
- . A self-priming digital microfluidic chip for multiple antibiotic susceptibility testing in single-cell level. Microchemical Journal, 112685, 2025.
- 梁艳萍. Molecular Basis of Thioredoxin-Dependent Arsenic Transformation in Methanogenic Archaea. Environmental Science & Technology, 2025.
- . Diverse new plasmid structures and antimicrobial resistance in strains isolated from perianal abscess patients. Frontiers in Microbiology, 2025.
- . Observation of two novel mcr-10.1-carrying plasmids in clinical Escherichia coli strains. Infectious Microbes & Diseases?, 206, 2025.
- . Development of a portable multi-step microfluidic device for point-of-care nucleic acid diagnostics. ANALYTICA CHIMICA ACTA, 2025.
- 朱佳铭. The A226D mutation of OmpC leads to increased susceptibility to β-lactam antibiotics in Escherichia coli. BIOLOGY-BASEL, 2025.
- 苏文亚. The mechanisms of tigecycline resistance in Gram-negative bacteria: A narrative review. Engineering Microbiology, 2025.
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2分钟微生物
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体验、互动、探究:高校创新生物学通识课程建设与示范
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Biorefinery of lignocellulosics for biofuels and biochemicals
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Biorefinery of lignocellulosics for biofuels and biochemicals
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泰山学堂助力山大生命拔尖学子小天下
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Biorefinery of lignocellulosics for biofuels and biochemicals
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Biorefinery of lignocellulosics for biofuels and biochemicals
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Biorefinery of lignocellulosics for biofuels and biochemicals
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