Dementyeva P, Freudenberg RA, Baier T, et al. A novel, robust and mating-competent Chlamydomonas reinhardtii strain with an enhanced transgene expression capacity for algal biotechnology. Biotechnology Reports. 2021: e00644.In the future, algae biotechnology could play an important role in sustainable development, especially with regard to the production of valuable chemicals. Among the established laboratory strains with efficient transgene expression, there are none that have demonstrated the required robustness for industrial applications, which generally require growth at larger scale. Here, we created a robust and mating-competent cell line of the green microalga Chlamydomonas reinhardtii, which also possesses a high transgene expressi...
Abstract Background Microalgal strain development through genetic engineering has received much atte...
Transgenic microalgae have the potential to impact many diverse biotechnological industries includin...
International audienceMicroalgae are regarded as promising organisms to develop innovative concepts ...
In the future, algae biotechnology could play an important role in sustainable development, especial...
The initial surge of industrial interest in green algae for the production of renewable fuel has giv...
Green algae present a unique platform for bioengineering and biomanufacturing; they grow rapidly, ph...
Human need for food and fuel has disturbed the balance of the biosphere thus triggering a catastroph...
Microalgae constitute a diverse group of eukaryotic unicellular organisms that are of interest for p...
Microalgae constitute a diverse group of eukaryotic unicellular organisms that are of interest for p...
Perozeni F, Baier T. Current Nuclear Engineering Strategies in the Green Microalga Chlamydomonas rei...
Freudenberg R, Baier T, Einhaus A, Wobbe L, Kruse O. High cell density cultivation enables efficient...
Microalgae have emerged as potentially powerful platforms for the production of recombinant proteins...
Advances in genetic engineering have enabled scientists to manipulate all three domains of life, and...
<div><p>Transgenic microalgae have the potential to impact many diverse biotechnological industries ...
Recombinant proteins are used for many industrial purposes including food processing, pharmaceutical...
Abstract Background Microalgal strain development through genetic engineering has received much atte...
Transgenic microalgae have the potential to impact many diverse biotechnological industries includin...
International audienceMicroalgae are regarded as promising organisms to develop innovative concepts ...
In the future, algae biotechnology could play an important role in sustainable development, especial...
The initial surge of industrial interest in green algae for the production of renewable fuel has giv...
Green algae present a unique platform for bioengineering and biomanufacturing; they grow rapidly, ph...
Human need for food and fuel has disturbed the balance of the biosphere thus triggering a catastroph...
Microalgae constitute a diverse group of eukaryotic unicellular organisms that are of interest for p...
Microalgae constitute a diverse group of eukaryotic unicellular organisms that are of interest for p...
Perozeni F, Baier T. Current Nuclear Engineering Strategies in the Green Microalga Chlamydomonas rei...
Freudenberg R, Baier T, Einhaus A, Wobbe L, Kruse O. High cell density cultivation enables efficient...
Microalgae have emerged as potentially powerful platforms for the production of recombinant proteins...
Advances in genetic engineering have enabled scientists to manipulate all three domains of life, and...
<div><p>Transgenic microalgae have the potential to impact many diverse biotechnological industries ...
Recombinant proteins are used for many industrial purposes including food processing, pharmaceutical...
Abstract Background Microalgal strain development through genetic engineering has received much atte...
Transgenic microalgae have the potential to impact many diverse biotechnological industries includin...
International audienceMicroalgae are regarded as promising organisms to develop innovative concepts ...