Scientists devised a way to ensure genetically modified organisms (GMOs) can be safely confined in the environment, overcoming a major obstacle to widespread use of GMOs in agriculture, energy production, waste management, and medicine.
The Yale researchers rewrote the DNA of a strain of bacteria so that it requires the presence of a special synthetic amino acid that does not exist in nature to activate genes essential for growth. Amino acids are the building blocks of proteins, which carry out life's functions. This new method of bio-containment, reported online on Jan. 21 in the journal Nature, solves a longstanding problem in biotechnology.
"This is a significant improvement over existing biocontainment approaches for genetically modified organisms," said Farren Isaacs, assistant professor in the Department of Molecular, Cellular, and Developmental Biology and the Systems Biology Institute at West Campus, and senior author of the paper. "This work establishes important safeguards for organisms in agricultural settings, and more broadly, for their use in environmental bioremediation and even in medical therapies."
Isaacs, Jesse Rinehart, Alexis Rovner, and fellow synthetic biologists at Yale call these new bacteria genomically recoded organisms (GROs) because they have a new genetic code devised by the team of researchers. The new code allowed the team to link growth of the bacteria to synthetic amino acids not found in nature, establishing an important safeguard that limits the spread and survival of organisms in natural environments.
In a second study, Isaacs, Ryan Gallagher, and Jaymin Patel at Yale devised a strategy to layer multiple safeguards that also limit growth of GMOs to environments that contain a different set of synthetic molecules. Published Jan. 21 in the journal Nucleic Acids Research, this study describes a complementary set of distinct and portable safeguards capable of securing a wide range of organisms.
These safe GMOs will improve efficiency of such engineered organisms, which are now being used in closed systems, such as the production of pharmaceuticals, fuels, and new chemicals. Concerns about use of GMOs in open environments, however, has limited their adoption in other areas.
The authors also say that the new code paired with artificial amino acids will allow scientists to create safer GMOs for use in open systems, which include improved food production, designer probiotics to combat a host of diseases, and specialized microorganisms that clean up oil spills and landfills.
"As synthetic biology leads to the emergence of more sophisticated GMOs to address these grand challenges, we must assume a proactive role in establishing safe and efficacious solutions for biotechnology, similar to those who worked to secure the Internet in the 1990s." Isaacs said.
GMT 17:15 2017 Thursday ,16 November
30 research papers for Shaikh Nasser AwardGMT 17:09 2017 Thursday ,16 November
Hormone shows promise for treating neurodegenerative conditionsGMT 20:44 2017 Tuesday ,07 November
Here's how UAE teachers can get a free trip to USGMT 00:37 2017 Monday ,30 October
Minister receives researcherGMT 00:34 2017 Monday ,30 October
Research, science, innovation to contribute challenges in EgyptGMT 08:08 2017 Monday ,03 July
MBRSG launches "Academy of International Business"GMT 11:49 2017 Wednesday ,21 June
TRA Innovation Camp's registrationGMT 21:22 2017 Wednesday ,24 May
Jordanian scientists to access researchMaintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2021 ©
Maintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2021 ©
Send your comments
Your comment as a visitor