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Biosynthesis Based on One-Carbon Mixotrophy

2022
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
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Mixotrophy in microorganisms: Ecological and cytophysiological aspects

Journal of Evolutionary Biochemistry and Physiology, 2013
Mixotrophy is the ability to combine autotrophic and heterotrophic modes of nutrition. It is widely spread in various microorganisms, particularly in such important plankton groups as dinoflagellates and cyanobacteria. Mixotrophy has a significant impact on our comprehension of the matter and energy flows in marine ecosystems, and therefore, it is an ...
Sergei Skarlato
exaly   +3 more sources

Mixotrophy in haptophytes

1994
Abstract Mixotrophy, the uptake of particulate and dissolved organic carbon by photosynthetic algae, is widespread in haptophyte flagellates, in particular in the genus Chrysochromulina. Some species of Chrysochromulina have been shown to discriminate between particles on the basis of particle size and composition.
Harriet L J Jones   +2 more
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Mixotrophy in planktonic protists: an overview

Freshwater Biology, 2000
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   +2 more sources

Mixotrophy among Dinoflagellates1

Journal of Eukaryotic Microbiology, 1999
Mixotrophy, used herein for the combination of phototrophy and phagotrophy, is widespread among dinoflagellates. It occurs among most, perhaps all, of the extant orders, including the Prorocentrales, Dinophysiales. Gymnodiniales, Noctilucales, Gonyaulacales, Peridiniales, Blastodiniales. Phytodiniales, and Dinamoebales.
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Mixotrophy in Freshwater Foodwebs

2016
Environmental heterogeneity in both space and time has significant repercussions for community structure and ecosystem processes. Dimictic lakes provide examples of vertically structured ecosystems that oscillate between stable and mixed thermal layers on a seasonal basis.
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Mixotrophy in Land Plants: Why To Stay Green?

Trends in Plant Science, 2018
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
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Nanoplankton mixotrophy in the eastern equatorial Pacific

Deep Sea Research Part II: Topical Studies in Oceanography, 2011
Heterotrophic bacteria, cyanobacteria, and picoeukaryotic algae dominate the plankton community of high nutrient-low chlorophyll (HNLC) areas of the eastern equatorial Pacific (EEP). While grazing on these picoplankton is often attributed to aplastidic zooflagellates, mixotrophic nanoflagellates (phagotrophic phototrophs) may also exert a large grazing
Michael R. Stukel   +2 more
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The Role of Mixotrophy in Pelagic Environments

1995
This paper reviews the occurrence and ecological importance of mixotrophic flagellates and ciliates in pelagic environments, particularly in marine ecosystems. Mixotrophy is here defined as the combination of photoautotrophic and heterotrophic nutrition in a single individual, often used in the restricted sense of combining photosynthesis and ...
Bo Riemann   +3 more
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