日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

A multi-omic survey of black cottonwood tissues highlights coordinated transcriptomic and metabolomic mechanisms for plant adaptation to phosphorus deficiency

对黑杨组织进行多组学分析,揭示了植物适应磷缺乏的转录组和代谢组协同机制

Kangi, Emel; Brzostek, Edward R; Bills, Robert J; Callister, Stephen J; Zink, Erika M; Kim, Young-Mo; Larsen, Peter E; Cumming, Jonathan R

Modeling interaction networks between host, diet, and bacteria predicts obesogenesis in a mouse model

构建宿主、饮食和细菌之间的相互作用网络模型可以预测小鼠模型中的肥胖发生。

Larsen, Peter E; Dai, Yang

Pseudomonas fluorescens increases mycorrhization and modulates expression of antifungal defense response genes in roots of aspen seedlings

荧光假单胞菌可促进白杨幼苗根系的菌根化,并调节其抗真菌防御反应基因的表达。

Shinde, Shalaka; Zerbs, Sarah; Collart, Frank R; Cumming, Jonathan R; Noirot, Philippe; Larsen, Peter E

CRISPR interference to interrogate genes that control biofilm formation in Pseudomonas fluorescens

利用CRISPR干扰技术研究荧光假单胞菌生物膜形成调控基因

Noirot-Gros, Marie-Francoise; Forrester, Sara; Malato, Grace; Larsen, Peter E; Noirot, Philippe

Dynamics of Aspen Roots Colonization by Pseudomonads Reveals Strain-Specific and Mycorrhizal-Specific Patterns of Biofilm Formation

假单胞菌对白杨根系定殖的动态变化揭示了菌株特异性和菌根特异性的生物膜形成模式

Noirot-Gros, Marie-Francoise; Shinde, Shalaka; Larsen, Peter E; Zerbs, Sarah; Korajczyk, Peter J; Kemner, Kenneth M; Noirot, Philippe H

Pseudomonas fluorescens Transportome Is Linked to Strain-Specific Plant Growth Promotion in Aspen Seedlings under Nutrient Stress

荧光假单胞菌转运组与营养胁迫下白杨幼苗的菌株特异性植物生长促进作用相关

Shinde, Shalaka; Cumming, Jonathan R; Collart, Frank R; Noirot, Philippe H; Larsen, Peter E

Nanomechanical Pyrolytic Carbon Resonators: Novel Fabrication Method and Characterization of Mechanical Properties

纳米机械热解碳谐振器:新型制备方法及力学性能表征

Kurek, Maksymilian; Larsen, Frederik K; Larsen, Peter E; Schmid, Silvan; Boisen, Anja; Keller, Stephan S

More of an Art than a Science: Using Microbial DNA Sequences to Compose Music

与其说是科学,不如说是艺术:利用微生物DNA序列创作音乐

Larsen, Peter E

Satellite remote sensing data can be used to model marine microbial metabolite turnover

卫星遥感数据可用于模拟海洋微生物代谢物的周转。

Larsen, Peter E; Scott, Nicole; Post, Anton F; Field, Dawn; Knight, Rob; Hamada, Yuki; Gilbert, Jack A

Multi-Omics Approach Identifies Molecular Mechanisms of Plant-Fungus Mycorrhizal Interaction

多组学方法揭示植物-真菌菌根相互作用的分子机制

Larsen, Peter E; Sreedasyam, Avinash; Trivedi, Geetika; Desai, Shalaka; Dai, Yang; Cseke, Leland J; Collart, Frank R