Scientists ratchet up key amino acid in corn
Experimental lines of field corn developed by a team of Agricultural Research Service (ARS) and university scientists will usher in new commercial hybrids offering high-methionine grain.
Experimental lines of field corn developed by a team of Agricultural Research Service (ARS) and university scientists will usher in new commercial hybrids offering high-methionine grain.
Biotechnology
Sep 28, 2023
0
20
A new comprehensive review published in Industrial Biotechnology examines how industrial biotechnology and biopharmaceutical manufacturing utilize the same framework for efficient biochemical production, which can be leveraged ...
Cell & Microbiology
Sep 27, 2023
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7
Nitrogen is an essential nutrient for plant growth, but the overuse of synthetic nitrogen fertilizers in agriculture is not sustainable.
Cell & Microbiology
Sep 26, 2023
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92
A research team led by University of California, Irvine scientists has developed an innovative method for quickly and efficiently creating vast collections of chemical compounds used in drug discovery by harnessing the power ...
Biochemistry
Aug 23, 2023
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78
Microorganisms use the CRISPR-Cas system to fight viral attacks. In genetic engineering, the microbial immune system is used for the targeted modification of the genetic make-up. A research team has now discovered another ...
Cell & Microbiology
Jul 28, 2023
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51
Investigators led by Shana Kelley, Ph.D., the Neena B. Schwartz Professor of Chemistry, Biomedical Engineering, and of Biochemistry and Molecular Genetics, have developed a novel approach for identifying sequences of artificial ...
Biochemistry
Jul 27, 2023
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39
When bacteria are attacked by a virus, they can defend themselves with a mechanism that fends off the genetic material introduced by the intruder. The key is CRISPR-Cas protein complexes. It is only in the last decade that ...
Biotechnology
Jul 13, 2023
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59
Scientists at The University of Texas at Dallas are using machine learning to study proteins—the molecules that carry out essential life functions—in a way that could impact protein engineering, human health and the evolutionary ...
Molecular & Computational biology
Jul 10, 2023
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5
Many at-risk forest tree species will probably need biotechnology along with traditional tree-breeding approaches to survive, according to insights published in the July issue of the journal New Forests.
Plants & Animals
Jul 5, 2023
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1
A research group at the Graduate School of Science, Nagoya University in Japan has used artificial intelligence to determine that piezo, a channel that receives mechanical stimuli, plays a role in controlling the mating posture ...
Plants & Animals
Jun 27, 2023
0
14
Genetic engineering, recombinant DNA technology, genetic modification/manipulation (GM) and gene splicing are terms that apply to the direct manipulation of an organism's genes. Genetic engineering is different from traditional breeding, where the organism's genes are manipulated indirectly. Genetic engineering uses the techniques of molecular cloning and transformation to alter the structure and characteristics of genes directly. Genetic engineering techniques have found some successes in numerous applications. Some examples are in improving crop technology, the manufacture of synthetic human insulin through the use of modified bacteria, the manufacture of erythropoietin in hamster ovary cells, and the production of new types of experimental mice such as the oncomouse (cancer mouse) for research.
The term "genetic engineering" was coined in Jack Williamson's science fiction novel Dragon's Island, published in 1951, two years before James Watson and Francis Crick showed that DNA could be the medium of transmission of genetic information.
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