Traditional approaches for the assessment of physiological responses of microbes in the environment rely on bulk filtration techniques that obscure differences among populations as well as among individual cells. Here, were report on the development on a novel micro-scale sampling device, referred to as the “Single-probe,” which allows direct extraction of metabolites from living, individual phytoplankton cells for mass spectrometry (MS) analysis. The Single-probe is composed of dual-bore quartz tubing which is pulled using a laser pipette puller and fused to a silica capillary and a nano-ESI. For this study, we applied Single-probe MS technology to the marine dinoflagellate Scrippsiella trochoidea, assaying cells grown under different illu...
Microalgae and plankton can be a rich source of bioactivity. However, induction of secondary metabol...
A modified cell pressure probe and an online Orbitrap mass spectrometer were used to sample in situ ...
<div><p>Diatoms are very efficient in their use of available nutrients. Changes in nutrient availabi...
<p>Traditional approaches for the assessment of physiological responses of microbes in the environme...
Traditional approaches for the assessment of physiological responses of microbes in the environment ...
Unicellular phototrophic algae can form massive blooms with up to millions of individual cells per m...
Metabolomics studies typically perform measurements on populations of whole cells which provide the ...
Single‐cell investigations of the diatoms Coscinodsicus granii and Thalassiosira pseudonana were per...
We report a method that enables untargeted, high throughput, and quantitative mass spectrometric ana...
As part of an ongoing research program aiming at monitoring molecular changes in the tissues and met...
Bloom-forming phytoplankton are key players in aquatic ecosystems, fixing carbon dioxide and forming...
Phytoplankton exudates play an important role in pelagic ecology and biogeochemical cycles of elemen...
Abstract The green eukaryote alga Chlamydomonas reinhardtii is a unicellular model to study control ...
In phytoplankton a high species diversity of microalgae co-exists at a given time. But diversity is ...
The green eukaryote alga Chlamydomonas reinhardtii is a unicellular model to study control of metabo...
Microalgae and plankton can be a rich source of bioactivity. However, induction of secondary metabol...
A modified cell pressure probe and an online Orbitrap mass spectrometer were used to sample in situ ...
<div><p>Diatoms are very efficient in their use of available nutrients. Changes in nutrient availabi...
<p>Traditional approaches for the assessment of physiological responses of microbes in the environme...
Traditional approaches for the assessment of physiological responses of microbes in the environment ...
Unicellular phototrophic algae can form massive blooms with up to millions of individual cells per m...
Metabolomics studies typically perform measurements on populations of whole cells which provide the ...
Single‐cell investigations of the diatoms Coscinodsicus granii and Thalassiosira pseudonana were per...
We report a method that enables untargeted, high throughput, and quantitative mass spectrometric ana...
As part of an ongoing research program aiming at monitoring molecular changes in the tissues and met...
Bloom-forming phytoplankton are key players in aquatic ecosystems, fixing carbon dioxide and forming...
Phytoplankton exudates play an important role in pelagic ecology and biogeochemical cycles of elemen...
Abstract The green eukaryote alga Chlamydomonas reinhardtii is a unicellular model to study control ...
In phytoplankton a high species diversity of microalgae co-exists at a given time. But diversity is ...
The green eukaryote alga Chlamydomonas reinhardtii is a unicellular model to study control of metabo...
Microalgae and plankton can be a rich source of bioactivity. However, induction of secondary metabol...
A modified cell pressure probe and an online Orbitrap mass spectrometer were used to sample in situ ...
<div><p>Diatoms are very efficient in their use of available nutrients. Changes in nutrient availabi...