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Fluence Bioengineering, Inc.: Fluence Expands Footprint in Burgeoning Israeli Cannabis Industry, Supports Multiple Cultivators Through REMY Partnership


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Fluence s innovative LED lighting solutions ensure Springs Valley Cannabis and UNIVO Pharmaceuticals achieve optimal growing conditions along the cultivation value chain in one of the world s leading medical cannabis markets
Fluence by OSRAM (Fluence), a leading global provider of energy-efficient LED lighting solutions for commercial cannabis and food production, announced today its implementations with two major cannabis cultivators in Israel, Springs Valley Cannabis LTD and UNIVO Pharmaceuticals (UNIVO), through Fluence s ongoing partnership with REMY LTD (REMY), a leading, Israel-based horticultural lighting provider to the country s growing agriculture industry.
This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20210609005120/en/ ....

United States , Elad Toby , Kostenloser Wertpapierhandel , Yair Shaked , Silvia Nagyova , Timo Bongartz , Golan Bitton , Wageningen University Research , Valley Cannabis , Fluence Bioengineering Inc , Springs Valley Cannabis , Middle East , Northern Israel , Springs Valley , North America , ஒன்றுபட்டது மாநிலங்களில் , கோலன் பிட்டன் , பள்ளத்தாக்கு கஞ்சா , சரளமாக உயிர் பொறியியல் இன்க் , நடுத்தர கிழக்கு , வடக்கு இஸ்ரேல் , நீரூற்றுகள் பள்ளத்தாக்கு , வடக்கு அமெரிக்கா ,

Self-excising designer proteins report isoform expression


Helmholtz Zentrum München - German Research Center for Environmental Health
Proteins are the key players in our cellular processes. Their generation follows principles called transcription and translation. First, DNA copies its genetic information to messenger RNA (mRNA), which then determines the sequence in a chain of amino acids, which finally fold into a protein. The reality, however, is more complex: More than 90 per cent of our genes do not result in only one mRNA and then one protein, but a process called alternative splicing produces several mRNA variants, only some of which are then translated into a specific protein isoform in a specific cell at a given time. Conventional techniques to detect alternative splicing are mostly single time-point measurements that are work-intense and cannot reliably monitor over time which protein isoforms are actually translated in the cell. ....

Dong Jiunn Jeffery Truong , Gil Gregor Westmeyer , Technical University Of Munich , Technical University , Dong Jiunn Jeffery , Gil Gregor , University Of Munich , தொழில்நுட்ப பல்கலைக்கழகம் ஆஃப் முனிச் , தொழில்நுட்ப பல்கலைக்கழகம் ,