林璐

-
教授
博士生导师
硕士生导师
- 性别:女
- 毕业院校:中科院青岛生物能源过过程研究所
- 学历:研究生(博士)毕业
- 学位:博士
- 在职信息:在职
- 所在单位:海洋研究院
- 入职时间: 2019-07-01
- 所属院系:
海洋研究院
- 学科:微生物学
生物化学与分子生物学
海洋生物学
- 办公地点:海洋研究院K3楼304
- 电子邮箱:14531d3380ae63bb5b4ae15ce3afba21b6d0c119df610bdb924a9e941fe839fc967a348d55ffbbb6147bb8dd1b3b1df61a0cb29228f096b3e42e3b2f0c2fe2024a9f754143ead6bdb0ff7db0217c8180a0bb068085dbc7725e63d7b366290abd8470dd7e6a2adc6bd38ce189a5e2ef44c55a9fa7a8be1e6758437e9ebb100ea4
访问量:
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[1]
Qiannan Peng and Lu Lin.
Comparative metagenomics reveals the metabolic flexibility of coastal prokaryotic microbiomes contributing to lignin degradation.
BIOTECHNOLOGY FOR BIOFUELS AND BIOPRODUCTS,
18,
2025.
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[2]
Congying Liang , Lu Lin , Tao Xu , Guoqiang Kang , Zhi-Hua Liu and Bing-Zhi Li.
The Pseudomonas ligninolytic catalytic network reveals the importance of auxiliary enzymes in lignin biocatalysts.
Proceedings of the National Academy of Sciences of the United States of America,
122,
2025.
-
[3]
Qiannan Peng , Cheng Zhao , Xiaopeng Wang , Kelin Cheng , Congcong Wang , Xihui Xu and Lu Lin.
Modeling bacterial interactions uncovers the importance of outliers in the coastal lignin-degrading consortium.
自然通讯,
16,
2025.
-
[4]
Jiyu Chen , Lu Lin , Qichao Tu , Qiannan Peng , Xiaopeng Wang , Congying Liang , Jiayin Zhou and Xiaoli Yu.
Metagenomic-based discovery and comparison of the lignin degrading potential of microbiomes in aquatic and terrestrial ecosystems via the LCdb database.
MOLECULAR ECOLOGY RESOURCES,
2024.
-
[5]
Wenwen Ma , Lu Lin and Qiannan Peng.
Origin, selection and succession of coastal intertidal zone-derived bacterial communities associated with the degradation of various lignocellulose substrates.
Microb Ecol.,
2023.
-
[6]
Qiannan Peng , Lu Lin , Qichao Tu , Xiaopeng Wang , Yueyue Zhou , Jiyu Chen , Nianzhi Jiao and Jizhong Zhou.
Unraveling the roles of coastal bacterial consortia in degradation of various lignocellulosic substrates.
MSYSTEMS,
2023.
-
[7]
Lu Lin and Lu Lin.
Bottom-up synthetic ecology study of microbial consortia to enhance lignocellulose bioconversion.
BIOTECHNOLOGY FOR BIOFUELS AND BIOPRODUCTS,
15,
2022.
-
[8]
Cao, Lanfang , Lu Lin , Haiyan Sui , Heng Wang , Zhichao Zhang , Nianzhi Jiao and Jizhong Zhou.
Efficient extracellular laccase secretion via bio-designed secretory apparatuses to enhance bacterial utilization of recalcitrant lignin.
GREEN CHEMISTRY,
23,
2079,
2021.
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[9]
Xiaopeng Wang , Lu Lin and Jizhong Zhou.
Links among extracellular enzymes, lignin degradation and cell growth establish the models to identify marine lignin-utilizing bacteria.
ENVIRONMENTAL MICROBIOLOGY,
2021.
-
[10]
梁丛颖 and 林璐.
环境微生物介导的木质素代谢及其资源化利用研究进展.
《微生物学通报》,
3380,
2020.
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[11]
彭倩楠 and 林璐.
木质素在海洋中的生物转化及其对海洋碳循环的影响.
微生物学报,
1959,
2020.
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[12]
Zhou, Yueyue , Lu Lin , Heng Wang , Zhichao Zhang , Jizhong Zhou and Nianzhi Jiao.
Development of a CRISPR/Cas9n-based tool for metabolic engineering of Pseudomonas putida for ferulic acid-to-polyhydroxyalkanoate bioconversion.
COMMUNICATIONS BIOLOGY,
3,
2020.
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[13]
Lu Lin , Xiaopeng Wang , Lanfang Cao and Meiying Xu.
Lignin catabolic pathways reveal unique characteristics of dye-decolorizing peroxidases in Pseudomonas putida.
Environmental Microbiology,
1847,
2019.
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[14]
Qichao Tu , Lu Lin , Qichao Tu , Lei Cheng , Ye Deng and Zhili He.
NCycDB: a curated integrative database for fast and accurate metagenomic profiling of nitrogen cycling genes.
Bioinformatics,
35,
1040,
2019.
-
[15]
Xiaopeng Wang , Lu Lin , Junde Dong , Juan Ling , Wanpeng Wang , Hongling Wang , Zhichao Zhang and Xinwei Yu.
Simultaneous Improvements of Pseudomonas Cell Growth and Polyhydroxyalkanoate Production from a Lignin Derivative for Lignin-Consolidated Bioprocessing.
Applied and Environmental Microbiology,
2018.