李瑞娟

-
长聘副研究员
硕士生导师
- 性别:女
- 学历:研究生(博士后)
- 学位:博士
- 所在单位:微生物技术研究院(微生物改造技术全国重点实验室)
- 入职时间: 2018-03
- 所属院系:
微生物技术研究院
- 联系方式:2824b5f689e0a40b6ed535b82d58d6481b88660939837387ebaf603905010142e1ca90daa47d72f2355a3c1da64657aeaa367d566ee00b5ab2bd1c429a5885c0441efbbb863f897cf19c751d36031f295dd954615dab1913e9d5f79f0967eba7fcc945ce028fd3636cdc9b3dcd03c6f8e91698d8daa1fe5fd6bcecf1618c8656
访问量:
-
[1]
.
Efficient genome engineering in Agrobacterium tumefaciens C58 using recombineering assisted by CRISPR/Cas9.
Journal of biotechnology,
406,
99,
2025.
-
[2]
.
Heterologous expression of the nitrogen-fixing gene cluster from Paenibacillus polymyxa in Bacillus subtilis.
Microorganisms,
13,
1320,
2025.
-
[3]
王秀玲.
A highly efficient heterologous expression platform to facilitate the production of microbial natural products in Streptomyces.
Microbial Cell factories,
24,
105,
2025.
-
[4]
雍道敬.
Mechanisms of biocontrol of gray mold in postharvest pear fruits using the termite symbiont Streptomyces griseus H3950.
Plant Physiology and Biochemistry,
224,
109892,
2025.
-
[5]
王秀玲.
Genomics-Driven Discovery of Plantariitin A, a New Lipopeptide in Burkholderia plantarii DSM9509.
Molecules,
30,
868,
2025.
-
[6]
.
Precise genome engineering in Pseudomonas using phage-encoded homologous recombination and Cascade-Cas3 system.
NATURE PROTOCOLS,
18,
2642,
2023.
-
[7]
.
A recombineering system for Bacillus subtilis based on the native phage recombinase pair YqaJ/YqaK.
Engineering Microbiology,
3,
100099,
2023.
-
[8]
李瑞娟.
The emerging role of recombineering in microbiology.
Engineering Microbiology,
3,
100097,
2023.
-
[9]
.
Single-Stranded DNA-Binding Protein and Exogenous RecBCD Inhibitors Enhance Phage-Derived Homologous Recombination in Pseudomonas.
14,
1,
2019.
-
[10]
Khorshed Alam.
Isolation, complete genome sequencing and in silico genome mining of Burkholderia for secondary metabolites.
BMC MICROBIOLOGY,
22,
323,
2022.
-
[11]
李瑞娟.
噬菌体重组酶介导的DNA 同源重组工程.
微生物学通报,
2021.
-
[12]
宫恺.
High-yield production of FK228 and new derivatives in a Burkholderia chassis.
Metabolic engineering,
75,
131,
2022.
-
[13]
Khorshed Alam.
Complete genome sequencing and in-silico genome mining reveals the promising metabolic potential in streptomyces species in CS-7.
Frontiers in Microbiology,
939919,
2022.
-
[14]
雍道敬.
Biocontrol of strawberry gray mold caused by Botrytis cinerea with the termite associated Streptomyces sp. sdu1201 and actinomycin D..
Frontiers in Microbiology,
2022.
-
[15]
郑文韬.
Cascade-Cas3 facilitates high-accuracy genome engineering in Pseudomonas using phage-encoded homologous recombination.
Engineering Microbiology,
2,
2022.
-
[16]
宫恺.
Diterpenoids from Streptomyces: Structures, Biosyntheses and Bioactivities..
Chembiochem,
2022.
-
[17]
霍刘杰.
Biochemical characterization of a polyethylene terephthalate hydrolase and design of high-throughput screening for its directed evolution.
Engineering Microbiology,
2022.
-
[18]
Alam, Khorshed.
Genome Mining of Pseudomonas Species: Diversity and Evolution of Metabolic and Biosynthetic Potential.
Molecules,
26,
2021.
-
[19]
李爱英.
In silico genome mining of potential novel biosynthetic gene clusters for drug discovery from Burkholderia bacteria.
Computers in Biology and Medicine,
140,
105046,
2022.
-
[20]
边志龙.
Development of a New Recombineering System for Agrobacterium Species.
Applied and Envrionmental Microbiology,
88,
2022.