Cool and Shady: Ecophysiological Preferences of Chrysophytes. [PDF]
Bock C +7 more
europepmc +1 more source
A database of nutritional strategies of nanoplankton genera present in North American lake surface waters. [PDF]
Le Noac'h P, Beisner BE.
europepmc +1 more source
Plastoquinone redox status influences carboxysome integrity via a RpaA- and reactive oxygen species-dependent regulatory network. [PDF]
Santos-Merino M +4 more
europepmc +1 more source
Synergistic Enhancement of Paramylon Production in Edible Microalga <i>Euglena gracilis</i> via Ethanol-Guaiacol Co-Regulation. [PDF]
Yan X +6 more
europepmc +1 more source
Mixotrophic Cultivation of Arthrospira platensis (Spirulina) under Salt Stress: Effect on Biomass Composition, FAME Profile and Phycocyanin Content. [PDF]
Russo NP +11 more
europepmc +1 more source
Pilot-Scale Oxygen-Balanced Mixotrophic Cultivation of Galdieria sulphuraria. [PDF]
Moñino Fernández P +5 more
europepmc +1 more source
Diverse assimilation pathways drive carbon fixation in the global ocean
Baltar F, González J.
europepmc +1 more source
Mixotrophy in planktonic protists: an overview
1. An overview is provided of the role of mixotrophic protists in plankton communities. Consideration of the importance of phagotrophy in the evolution of photosynthetic eucaryotes suggests that mixotrophy as a nutritional strategy can arise rather readily. 2. Mixotrophic protists actually present a spectrum of nutritional strategies.
Roger Jones
exaly +7 more sources
Biosynthesis Based on One-Carbon Mixotrophy
Recent advances in biosynthesis using one-carbon (C1) compounds (e.g., CO2 and syngas) have led to first process examples of industrial demonstration for producing C1-based chemicals. In these processes, several bottlenecks such as mass-transfer limitations of substrates, limited supply of energy (ATP), and reducing equivalents and thus low cell growth
Hong, Yaeseong, Zeng, An-Ping
core +4 more sources
Mixotrophy in Land Plants: Why To Stay Green?
Mixotrophic plants combine photosynthesis and heterotrophic nutrition. Recent research suggests mechanisms explaining why mixotrophy is so common in terrestrial ecosystems. First, mixotrophy overcomes nutrient limitation and/or seedling establishment constraints.
Jakub Těšitel +3 more
openaire +3 more sources

